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2013年9月26日星期四

Holistic Treatment for Pancreatitis in Dogs and Cats



 

Holistic treatments for pancreatitis in dogs and cats will help enhance the quality of the pet’s lives and reduce the likelihood of future pancreatitic attacks.  Pancreatitis can occur in both dogs and cats.  It is important to give pets with pancreatitis a reduced fat diet and add natural supplements that can aid with the digestion of fats.    




The Pancreatitis Supplement Kit is an all natural, holistic treatment that is excellent for cats and dogs with:

*Elevated Liver Enzymes
*IBD w/discomfort digesting fats
*Pancreatitis
*Cushing’s Disease
*Diabetes
*Breeds prone to pancreatitis such as Schnauzers and Cocker Spaniels
*Overweight pets
*Fatty liver
*Senior pets


This veterinary-approved Pancreatitis Kit includes 3 holistic formulas that contain powerful enzymes and nutrients that break down fats, enhance digestion and reduce elevated liver enzymes.  Individual formulas such as Lypozyme, (a powerful enzyme that breaks down fats) can be purchased separately but save now by buying all three formulas together.


2013年9月25日星期三

Surgical Treatment of Insulinomas




Surgery is the initial treatment of choice for the long-term management of animals with insulinoma. Exploratory celiotomy is useful in confirming the diagnosis, staging the patient, and removing all identifiable pancreatic nodules (1-4). When possible, these pancreatic masses should be removed by partial pancreatectomy to ensure a more complete resection.


Preoperative Management
The serum glucose concentration should be stabilized before induction of anesthesia and surgery. While it is not necessary for the serum glucose to be in the normal range, the measured levels should be stable and the patient should be seizure-free for a few days prior to surgery.


Frequent feedings, continuous intravenous infusion of dextrose solution (5% dextrose or higher), or both, are the best ways to control symptomatic hypoglycemia (1-4). In some cases, use of prednisone or prednisolone may be helpful to help increase the low blood glucose concentrations. If these methods are unsuccessful, more aggressive medical management should be considered. In dogs, a constant rate infusion of glucagon can be considered to stabilize refractory patients (5). For more information, see my last post on Emergency management of hypoglycemia.


Identifying the Pancreatic Nodule(s)
Careful palpation of the entire pancreas and visualization of the liver and mesenteric lymph nodes is critical (4,6). Insulinomas are typically firmer than the normal parenchyma and may be small and obscured by the normal pancreatic tissue. Therefore, it can be difficult to localize a pancreatic nodule at time of surgery, especially in dogs (4,6-9).


When a nodule cannot be identified intraoperatively, biopsy specimens should be taken from the pancreas, liver, and mesenteric lymph nodes. In dogs, insulinoma develops within the right and left pancreatic lobes with equal frequency, and occult nodules are most common in the body of the pancreas. In addition, multiple nodules are seen in approximately 15% of dogs.  Thus, random removal of an entire pancreatic lobe offers no advantage and is not recommended (1-4,6).


In contrast to dogs, occult insulinoma appears to be rare in the ferret, making the pancreatic nodules less challenging to find. However, as compared to dogs and cats, multiple pancreatic nodules are more common than solitary nodules in ferrets. Full abdominal exploratory celiotomy is strongly recommended in ferrets, since concurrent nonpancreatic neoplasia (e.g., adrenal tumors) are not uncommon in this species (3,10,11).


Surgical Techniques for Partial Pancreatectomy
Surgical technique is similar in both the dog and cat (4,6,9). During surgery, the pancreas should be handled gently, and the surgeon should pay special attention to preserving the blood supply to the pancreas when performing a partial pancreatectomy. Any identifiable pancreatic nodules should be removed by partial pancreatectomy if possible, as this has been reported to result in longer survival times than simple excision of the tumor (12).


Partial pancreatectomy can be performed by the suture-fracture technique, the dissection-ligation technique, or through the use of an electrothermal bipolar vessel-sealing device (4,6,9,13). The bipolar vessel-sealing device (BVSD) denatures collagen and elastin within vessel walls and thus safely seals tissue and vessels while causing less tissue damage than is seen with the higher temperatures used in traditional cautery (13).


Using the BVSD to perform partial pancreatectomy in dogs decreases the incidence of post-operative pancreatitis when compared to dogs undergoing the suture fractionation technique. The BVSD is likely more effective in sealing pancreatic ducts during partial pancreatectomy and minimizes the leakage of pancreatic juices in to the remaining tissue that could cause local or generalized pancreatitis (13).


Whether or not metastatic lesions are visible, biopsy of the liver and mesenteric lymph nodes is recommended for staging (1-4).


Glucose Monitoring During and After Surgery
It is important to monitor the serum glucose concentration throughout and after surgery. Surgical manipulation of insulinoma can enhance the release of insulin from the tumor(s). Anesthesia will mask the signs of neuroglycopenia; thus, the only way of preventing serious hypoglycemia is to monitor the patient carefully and administer dextrose as needed.


While the surgeon is manipulating the pancreas and any metastatic lesions, the serum glucose concentration should be evaluated every 10-20 minutes. After surgery, the glucose concentration should be monitored every 30-60 minutes for the first 4-6 hours, and then every 2-4 hours until the glucose concentration has stabilized and the appropriate concentration of dextrose solution has been selected (1-4). The patient may have hyperglycemia after surgery, and intravenous fluids without dextrose may be appropriate.


Complications of Pancreatectomy
Potential complications include hyperglycemia, persistent hypoglycemia and pancreatitis (1-4,6,9).




  • Hyperglycemia and diabetes mellitus— In some animals, the high concentration of circulating insulin secreted by the tumor suppresses the function of normal beta cells, leading to hyperglycemia once the insulin producing tumor is removed. As function of the beta cells returns, postsurgical hyperglycemia is resolved. If treatment with insulin is required after resection of an insulinoma, the clinician and the owner should be aware that endogenous insulin eventually may be produced either by the normal beta cells or by recurrent tumor cells. The owner should monitor glucose in the urine several times per week, and serum glucose should be checked at least monthly to avoid an iatrogenic hypoglycemic crisis.


  • Persistent hypoglycemia—Persistent or recurrent hypoglycemia detected any time postoperatively should prompt consideration of symptomatic medical management or the use of chemotherapy. In patients who have had a significant hypoglycemia-free period after surgery, a second operation may result in several months of normoglycemia unless gross metastatic disease is present. In these cases medical management is indicated. This will be discussed in my next post.


  • Pancreatitis— In dogs, the most common postoperative complication is pancreatitis. Documented or suspected pancreatitis has been reported in cats and ferrets as well postoperatively.


Relapse of Insulinoma
Although surgery is the most successful treatment we have for controlling hypoglycemia and prolonging survival, surgery will not be able to cure most animals with insulinoma. Almost all will show relapse of hypoglylcemia as the remaining tumor tissue grows and secretes high levels of insulin (1-4).


When a patient that has previously undergone surgery for insulinoma begins to show signs of hypoglycemia, a second surgery may be attempted or medical management instituted (see last post). If all visible tumor can be resected again, animals may remain symptom free for a number of additional months. Alternatively, many of these animals showing relapse can be controlled medically; I’ll be discussing long-term medical management in my next post.

References:



  1. Feldman EC, Nelson RW. Beta-cell neoplasia: Insulinoma In: Feldman EC, Nelson RW, eds. Canine and Feline Endocrinology and Reproduction. Philadelphia: Saunders Elsevier, 2004;616-644.

  2. Kintzer PP. Insulinoma and other gastrointestinal tract tumours In: Mooney CT, Peterson ME, eds. BSAVA Manual of Canine and Feline Endocrinology. Quedgeley, Gloucester: British Small Animal Veterinary Association, 2012;148-155.

  3. Meleo KA, Peterson ME. Treatment of insulinoma in the dog, cat, and ferret In: Bonagura JD, Twedt DC, eds. Kirk’s Current Veterinary Therapy, Volume XV. Philadelphia: Saunders Elsevier, 2013.

  4. Nelson RW, Salisbury SK. Pancreatic beta cell neoplasia In: Birchard SJ, Sherding RJ, eds. Saunders’ Manual of Small Animal Practice. 2nd ed. Philadelphia: WB Saunders, 2000;288–294.

  5. Fischer JR, Smith SA, Harkin KR. Glucagon constant-rate infusion: A novel strategy for the management of hyperinsulinemic-hypoglycemic crisis in the dog. J Am Anim Hosp Assoc 2000;36:27-32. 

  6. Birchard SJ. The pancreas In: Williams M, Niles JD, eds. BSAVA Manual of Canine and Feline Abdominal Surgery. Gloucester: BSAVA Publications, 2005;210–219.

  7. Mehlhaff CJ, Peterson ME, Patnaik AK, et al. Insulin producing islet cell neoplasms: Surgical considerations and general management in 35 dogs. J Am Anim Hosp Assoc 1985;21:607-612.

  8. Leifer CE, Peterson ME, Matus RE. Insulin-secreting tumor: diagnosis and medical and surgical management in 55 dogs. J Am Vet Med Assoc 1986;188:60-64. 

  9. Matthiesen DT, Mullen HS. Problems and complications associated with endocrine surgery in the dog and cat. Prob Vet Med 1990;2:627-667.

  10. Caplan ER, Peterson ME, Mullen HS, et al. Diagnosis and treatment of insulin-secreting pancreatic islet cell tumors in ferrets: 57 cases (1986-1994). J Am Vet Med Assoc 1996;209:1741-1745. 

  11. Chen S. Pancreatic endocrinopathies in ferrets. Vet Clin North Am Exot Anim Pract 2008;11:107-123.

  12. Tobin RL, Nelson RW, Lucroy MD, et al. Outcome of surgical versus medical treatment of dogs with beta cell neoplasia: 39 cases (1990-1997). J Am Vet Med Assoc 1999;215:226-230. 

  13. Wouters EG, Buishand FO, Kik M, et al. Use of a bipolar vessel-sealing device in resection of canine insulinoma. J Small Anim Pract 2011;52:139-145. 


2013年9月21日星期六

Treatment For Pancreatitis In Dogs


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2013年9月14日星期六

Canine Pancreatitis Treatment

Canine Pancreatitis Treatment


Canine pancreatitis treatment generally involves use of fluid therapy, painkillers, and antibiotics (if needed). To know more about treatment for canine pancreatitis, read on…




Canine pancreatitis is a gastrointestinal disorder that causes inflammation of the pancreas (part of a digestive system). In this condition, the pancreas, that release certain enzymes for proper digestion of food, no longer functions normally. As a result, the digestion process is severely hampered. This condition, that is accompanied by abdominal pain and vomiting, is generally seen in obese and overweight dogs. Read more on canine pancreatitis: symptoms of pancreatitis in dogs.




Causes of Canine Pancreatitis




Veterinarians are still unable to identify the exact reason behind the occurrence of canine pancreatitis. There are certain risk factors that can make a dog vulnerable to this condition. For instance, an obese dog that performs very less physical activity is likely to suffer from pancreatitis. Other factors that put the dog in the risk zone of canine pancreatitis are as follows:




Diet rich in fats




Trauma




Diabetes




Ingestion of synthetic drugs (corticosteroids)




Canine Pancreatitis Treatment




Canine pancreatitis treatment is a step by step procedure that aims at relieving the symptoms. Once, the diagnostic methods confirm that the dog is affected with pancreatitis, following steps are taken.




Fluid Therapy: Dogs diagnosed with canine pancreatitis are not allowed to consume food and water for a temporary period. Instead, fluids are administered intravenously to keep the dog well hydrated. Fluid therapy is extremely important as putting food intake on hold gives the inflamed pancreas sufficient time to heal. This type of therapy is continued until the dog’s health significantly improves. In addition to fluid therapy, the following medicines may be prescribed for canines suffering from pancreatitis.




Pain Relievers: In order to reduce the pain associated with canine pancreatitis, the veterinarian may prescribe certain pain relievers. The commonly prescribed pain relievers include Butorphanol and Meperidine. Application of Fentanyl patches on the dog’s skin to deliver the pain medication through the skin can also help to alleviate the discomfort caused by this condition. Fentanyl will be more effective if the area is shaved before applying it. Fentanyl patches are generally attached using an elastic bandage, for a period of 3 days. Read more on painkillers for dogs.




Antibiotics: Dogs plagued with frequent bouts of vomiting are prescribed an antacid along with antibiotics (cephalexin). This form of canine pancreatitis treatment is used when the condition causes high fever or a considerable decrease in white cell count. Antibiotics also aid to prevent the onset of secondary infections.




Canine Pancreatitis Diet




As aforementioned, the dog is given intravenous fluids (for at least 24 hours) and this practice is discontinued only when the dog shows a great deal of improvement. When it comes to restoring food intake, a low fat diet is prescribed. This is because the digestive system is not capable to absorb the fats from the food. Another advantage of a reduced fat diet is that it can help to relieve symptoms of canine pancreatitis. A low fat diet can be easily digested and does not put any stress on the pancreas. Rice and chicken (boiled or cooked) are some of the crucial dog foods that form an integral part of canine pancreatitis treatment. There are some veterinary diets that are specially formulated for dogs with pancreatitis as well. These prescribed diets contain added nutrients that speed up recovery. Those looking for commercial dog food should ensure that it is of high quality (low fat) and contains organic ingredients. Read more on canine pancreatitis diet.




Making the dog food at home is the best option. Homemade dog food can be easily digestible meals such as overcooked rice, skinless chicken along with low fat cottage cheese. These are not only easy for the canine to digest, but are a great source of nourishment as well. Following are the foods that should be included in a canine pancreatitis diet




Cooked vegetables like cabbage, cauliflower, and broccoli




Lean ground beef (low fat)




Egg whites




Barley




Oatmeal




Sweet potatoes




To know more about diseases associated with dogs read:




Dog Health




Dog Illnesses




Dog Health Problems




Instead of giving 2 large meals, feeding the dog in small portions (5-6 meals) will put less burden on the pancreas. Make sure that while giving chicken, the skin and the bones are removed. Recurrence of canine pancreatitis can always be prevented by keeping the dog on a low fat diet. Even a high fiber diet can predispose the dog to recurrent pancreatitis. A moderate fiber diet is often considered the mainstay of canine pancreatitis treatment.


2013年9月13日星期五

Adverse Reactions to Vaccine: Treatment and Management

Jean Dodds, DVMWorld-renowned pet vaccination expert Dr. Jean Dodds has written a wonderful article on managing and treating adverse reactions to vaccination (published here with her permission).  She also clears up common misconceptions about vaccination, titer testing and vaccinating against rabies.


This is an important article. I hope you’ll read it and bookmark or print it for future reference and also send it to your veterinarian and to friends.



CLINICAL APPROACHES TO MANAGING AND TREATING ADVERSE VACCINE REACTIONS


by W. Jean Dodds, DVM


Background
There is no doubt that application of modern vaccine technology has permitted us to protect companion animals effectively against serious infectious diseases.


Viral disease and recent vaccination with single or combination modified live-virus (MLV) vaccines, especially those containing distemper virus, adenovirus 1 or 2, and parvovirus are increasingly recognized contributors, albeit relatively rare,  to immune-mediated blood disease, bone marrow failure, and organ dysfunction.  Potent adjuvanted killed vaccines like those for rabies virus also can trigger immediate and delayed (vaccinosis) adverse vaccine reactions. Genetic predisposition to these disorders in humans has been linked to the leucocyte antigen D-related gene locus of the major histocompatibility complex, and is likely to have parallel associations in domestic animals.


It must be recognized, however, that we have the luxury of asking such questions today only because the risk of disease has been effectively reduced by the widespread use of vaccination programs.


Adverse Events Associated with Vaccination
The clinical signs associated with vaccine reactions typically include fever, stiffness, sore joints and abdominal tenderness, susceptibility to infections, neurological disorders and encephalitis, collapse with autoagglutinated red blood cells and icterus (autoimmune hemolytic anemia, AIHA, also called immune-mediated hemolytic anemia, IMHA), or generalized petechiae and ecchymotic  hemorrhages (immune-mediated thrombocytopenia , ITP).  Hepatic enzymes may be markedly elevated, and liver or kidney failure may occur by itself or accompany bone marrow suppression.


Furthermore, MLV vaccination has been associated with the development of transient seizures in puppies and adult dogs of breeds or cross-breeds susceptible to immune-mediated diseases especially those involving hematologic or endocrine tissues (e.g. AIHA, ITP, autoimmune thyroiditis). Post-vaccinal polyneuropathy is a recognized entity associated occasionally with the use of distemper, parvovirus, rabies and presumably other vaccines.   This can result in various clinical signs including muscular atrophy, inhibition or interruption of neuronal control of tissue and organ function, muscular excitation, incoordination and weakness, as well as seizures.


Certain breeds or families of dogs appear to be more susceptible to adverse vaccine reactions, particularly post-vaccinal seizures, high fevers, and painful episodes of hypertrophic osteodystrophy (HOD).   Therefore, we have the responsibility to advise companion animal breeders and caregivers of the potential for genetically susceptible littermates and relatives to be at increased risk for similar adverse vaccine reactions.  In popular (or rare) inbred and linebred animals, the breed in general can be at increased risk as illustrated in the examples below.


Polyvalent MLV vaccines which multiply in the host elicit a stronger antigenic challenge to the animal and should mount a more effective and sustained immune response.  However, this can overwhelm the immunocompromised or even a healthy host that has ongoing exposure to other environmental stimuli as well as a genetic predisposition that promotes adverse response to viral challenge.  The recently weaned young puppy or kitten being placed in a new environment may be at particular risk.  Furthermore, while the frequency of vaccinations is usually spaced 2-3 weeks apart, some veterinarians have advocated vaccination once a week in stressful situations; a practice makes little sense scientifically or medically.


An augmented immune response to vaccination is seen in dogs with pre-existing inhalant allergies (atopy) to pollens.  Furthermore, the increasing current problems with allergic and immunological diseases have been linked to the introduction of MLV vaccines more than 20 years ago.  While other environmental factors no doubt have a contributing role, the introduction of these vaccine antigens and their environmental shedding may provide the final insult that exceeds the immunological tolerance threshold of some individuals in the pet population.  The accumulated evidence indicates that vaccination protocols should no longer be considered as a “one size fits all” program.


In cats, while adverse vaccine reactions may be less common, aggressive tumors (fibrosarcomas) can occasionally arise at the site of vaccination. A recent study from Italy reported finding similar tumors in dogs at the injection sites of vaccinations (Vascellari et al, 2003). These investigators stated that their “study identified distinct similarities between canine fibrosarcomas from presumed injection sites and feline post-vaccinal fibrosarcomas, suggesting the possibility of the development of post-injection sarcomas not only in cats, but also in dogs”.


Additionally, vaccination of pet and research dogs with polyvalent vaccines containing rabies virus or rabies vaccine alone was shown to induce production of antithyroglobulin autoantibodies, a provocative and important finding with implications for the subsequent development of hypothyroidism (Scott-Moncrieff et al, 2002).


For these special cases, appropriate alternatives to current vaccine practices include:
1) measuring serum antibody titers;
2) avoidance of unnecessary vaccines or over vaccinating;
3) caution in vaccinating sick or febrile individuals; and
4) tailoring a specific minimal vaccination protocol for dogs of breeds or families known to be at increased risk for adverse reactions.
5) considerations include starting the vaccination series later, such as at nine or ten weeks of age when the immune system is more able to handle antigenic challenge;
6) alerting the caregiver to pay particular attention to the puppy’s behavior and overall health after the second or subsequent boosters; and
7) avoiding revaccination of individuals already experiencing a significant adverse event. Littermates of affected puppies should be closely monitored after receiving additional vaccines in a puppy series, as they too are at higher risk.


Serologic Vaccine Titer Testing
Some veterinarians have challenged the validity of using vaccine titer testing to assess the immunologic status of animals against the common, clinically important infectious diseases.


With all due respect, this represents a misunderstanding of what has been called the “fallacy of titer testing”, because research has shown that once an animal’s titer stabilizes it is likely to remain constant for many years.  Properly immunized animals have sterilizing immunity that not only prevents clinical disease but also prevents infection, and only the presence of antibody can prevent infection. As stated by eminent expert Dr. Ronald Schultz in discussing the value of vaccine titer testing, these tests “show that an animal with a positive test has sterilizing immunity and should be protected from infection.  If that animal were vaccinated it would not respond with a significant increase in antibody titer, but may develop a hypersensitivity to vaccine components (e.g. fetal bovine serum). Furthermore, the animal doesn’t need to be revaccinated and should not be revaccinated since the vaccine could cause an adverse reaction (hypersensitivity disorder). You should avoid vaccinating animals that are already protected.  It is often said that the antibody level detected is “only a snapshot in time”. That’s simply not true; it is more a “motion picture that plays for years”.


Furthermore, protection as indicated by a positive titer result is not likely to suddenly drop-off unless an animal develops a medical problem such as cancer or receives high or prolonged doses of immunosuppressive drugs.  Viral vaccines prompt an immune response that lasts much longer than that elicited by classic antigen.  Lack of distinction between the two kinds of responses may be why practitioners think titers can suddenly disappear.


But, not all vaccines produce sterilizing immunity. Those that do include: distemper virus, adenovirus, and parvovirus in the dog, and panleukopenia virus in the cat.  Examples of vaccines that produced non-sterile immunity would be leptospirosis, bordetella, rabies virus, herpesvirus and calicivirus — the latter two being upper respiratory viruses of cats.  While non-sterile immunity may not protect the animal from infection, it should keep the infection from progressing to severe clinical disease.


Therefore, interpreting titers correctly depends upon the disease in question. Some titers must reach a certain level to indicate immunity, but with other agents like those that produce sterile immunity, the presence of any measurable antibody shows protection.  The positive titer test result is fairly straightforward, but a negative titer test result is more difficult to interpret, because a negative titer is not the same thing as a zero titer and it doesn’t necessarily mean that animal is unprotected.  A negative result usually means the titer has failed to reach the threshold of providing sterile immunity. This is an important distinction, because for the clinically important distemper and parvovirus diseases of dogs, and panleukopenia of cats, a negative or zero antibody titer indicates that the animal is not protected against canine parvovirus and may not be protected against canine distemper virus or feline panleukopenia virus.


Finally, what does more than a decade of experience with vaccine titer testing reveal ?  Published studies in refereed journals show that 90-98% of dogs and cats that have been properly vaccinated develop good measurable antibody titers to the infectious agent measured. So, in contrast to the concerns of some practitioners, using vaccine titer testing as a means to assess vaccine-induced protection  will likely result in the animal avoiding needless and unwise booster vaccinations.


Our recent study (Twark and Dodds, 2000), evaluated 1441 dogs for CPV antibody titer and 1379 dogs for CDV antibody titer. Of these, 95.1 % were judged to have adequate CPV titers, and nearly all (97.6 %) had adequate CDV titers. Vaccine histories were available for 444 dogs (CPV) and 433 dogs (CDV). Only 43 dogs had been vaccinated within the previous year, with the majority of dogs (268 or 60%) having received a booster vaccination 1-2 years beforehand. On the basis of our data, we concluded that annual revaccination is unnecessary. Similar findings and conclusions have been published recently for dogs in New Zealand (Kyle et al, 2002), and cats (Scott and Geissinger, 1999; Lappin et al, 2002).  Comprehensive studies of the duration of serologic response to five viral vaccine antigens in dogs and three viral vaccine antigens in cats were recently published by researchers at Pfizer Animal Health (Mouzin et al, 2004).


When an adequate immune memory has already been established, there is little reason to introduce unnecessary antigen, adjuvant, and preservatives by administering booster vaccines.  By titering triennially or more often, if needed, one can assess whether a given animal’s humoral immune response has fallen below levels of adequate immune memory. In that event, an appropriate vaccine booster can be administered.


Other Issues with Over Vaccination
Other issues arise from over vaccination, as the increased cost in time and dollars spent needs to be considered, despite the well-intentioned solicitation of clients to encourage annual booster vaccinations so that pets also can receive a wellness examination.  Giving annual boosters when they are not necessary has the client paying for a service which is likely to be of little benefit to the pet’s existing level of protection against these infectious diseases.  It also increases the risk of adverse reactions from the repeated exposure to foreign substances.


Compliance or Resistence to Current Vaccine Guidelines?
For more than a decade, the issues discussed above on overvaccination and vaccine safety for companion animals have been raised by vaccinologists and veterinary clinicians.  But, how has this still controversial knowledge impacted the veterinary profession and pet owner today? Have veterinarians really embraced the national policies on vaccination guidelines?  Does the public trust veterinarians to be up-to-date on these issues or are they unsure? Do they believe veterinarians have a conflict of interest if they seek the income from annual booster vaccinations? Given media information regarding autism and measles vaccination, the public is more aware and worried about vaccine safety.


Some veterinarians today still tell their clients there is no scientific evidence linking vaccinations with adverse effects and serious illness. This is ignorance, and confuses an impressionable client. On the other hand, vaccine zealots abound with hysteria and misinformation. None of these polarized views is helpful.


Veterinarians are still routinely vaccinating ill dogs and those with chronic diseases or prior adverse vaccine reactions. This is especially problematic for rabies boosters, as many colleagues believe they have no legal alternative, even though the product label states it’s intended for healthy animals.   See the Rabies Challenge Fund.


New Breakthroughs
Failure to standardize the legal mandate for rabies vaccinations nationwide is medically and scientifically unwarranted. The fact that individual states, counties and cities elect to mandate annual rabies boosters despite federally licensed three-year rabies vaccines is misguided.


Now that Arkansas and Alabama have adopted a 3-year rabies vaccination protocol for dogs and cats, there are no more states requiring pets to be vaccinated annually against rabies. However, some individual cities and counties still require annual rabies booster vaccination.  For Cheyenne, WY and Wichita, KS, pressure from the public and the local veterinary associations effected a recent change to every three years.


Despite these recent changes, the practice of rabies booster vaccination in these states and local areas has been left as optional at the discretion of the client’s veterinarian. So this is a Catch-22 situation, because if the veterinarian still believes the rabies booster should be given annually instead of as licensed, they usually can talk their client into doing so.


Rabies Vaccines and the USDA/CVB
Rabies vaccines are the most common group of biological products identified in adverse event reports received by the USDA’s Center for Veterinary Biologics (CVB).  Currently, 14 rabies vaccines are labeled for use in dogs. These vaccines must meet the standard requirements established in the Title 9 Code of Federal Regulations. This requires that the vaccine provide a protected fraction of ≥ 83% when comparing vaccinated animals versus control animals. Also, all rabies vaccines are evaluated for safety prior to licensure, which includes performance of a field safety trial. Additionally, each serial of rabies vaccine is tested for potency by use of the National Institutes of Health potency test or another test approved by the CVB, and is tested for safety in the host and laboratory animals.


Safety Review
Before licensure, a product must be shown to be safe through a combination of safety evaluations. The field safety trial is the most comprehensive evaluation and has the objective of assessing the safety of the product in its target population under the conditions of its intended use. However, safety studies before licensure may not detect all safety concerns for a number of reasons, as follows: insufficient number of animals for low frequency events, insufficient duration of observation, sensitivities of subpopulations (eg, breed, reproductive status, and unintended species), or interactions with concomitantly administered products.


State and Local Authority for Rabies Control Programs
Although the CVB licenses veterinary biological products for use in the prevention of rabies, it is the state and local authorities govern and administer their respective rabies animal control programs. Some of these programs allow exemptions to the vaccination requirements, if medical concerns exist related to potential adverse events, but more commonly, others do not allow exemptions, regardless of the justification.


Reporting Adverse Vaccine Reaction to Manufacturer and the Government
There is no mandatory reporting of adverse reactions in veterinary medicine.  The 2007 World Small Animal Veterinary Association (WSAVA) Vaccine Guidelines states that there is:  “gross under-reporting of vaccine-associated adverse events which impedes knowledge of the ongoing safety of these products.” WSAVA 2007 Vaccine Guidelines.


Even in humans, where mandatory reporting of adverse vaccine reactions is required, Dr. David Kessler, former head of the Food & Drug Administration, reported that “only about 1% of serious events are reported to the FDA”.  [JAMA .269:.2785, 1993]. This problem of under-reporting has persisted for many years.


Despite the serious under-reporting of vaccinal adverse reactions, the 2008 Report from the USDA’s CVB [JAVMA 232:1000-1002, 2008], states that between April 1, 2004 and March 31, 2007, they “requested manufacturers of rabies vaccines to provide adverse event report summaries for their products.  During this period, nearly 10,000 adverse event reports (all animal species) were received by manufacturers of rabies vaccines.  Approximately 65% of the manufacturer’s reports involved dogs.”


The USDA/CVB 2008 Report further states that “Rabies vaccines are the most common group of biological products identified in adverse event reports received by the CVB.”   During the 3-year period covered in this report, the CVB received 246 adverse event reports for dogs in which a rabies vaccine was identified as one of the products administered. Reports were assessed for causality, and of these, 217 reports were considered possibly related to ≥ 1 of the vaccines given, 7 were considered unlikely, and 22 were assessed as unknown. Of reports with age information (n = 206), 21.4% of the dogs were ≤ 6 months old, 33.5% were > 6 months old but  ≤ 2 years old, and 45.1% were > 2 years old. Of reports with sex information (n = 209), 54.5% of the dogs were female.


The following clinical terms were listed “to describe possibly related adverse events in dogs vaccinated against rabies “ and reported to the USDA/CVB between April 1, 2004-March 31, 2007. For 217 adverse event reports – the clinical term is followed by the % of dogs affected: Vomiting-28.1%; facial swelling-26.3%; injection site swelling or lump-19.4%; lethargy-12%; urticaria-10.1%; circulatory shock-8.3%; injection site pain-7.4%; pruritus-7.4%; injection site alopecia or hair loss-6.9%; death-5.5%; lack of consciousness-5.5; diarrhea-4.6%; hypersensitivity (not specified)-4.6%; fever-4.1%;, anaphylaxis-2.8%; ataxia-2.8%; lameness-2.8%; general signs of pain-2.3%; hyperactivity-2.3%; injection site scab or crust-2.3%;, muscle tremor-2.3%; tachycardia-2.3%; and thrombocytopenia-2.3%.


The overall adverse report rate for rabies vaccines was determined to be 8.3 reports/100,000 doses sold.  Adverse events considered possibly related to vaccination included acute hypersensitivity (59%); local reactions (27%); systemic reactions, which refers to short-term lethargy, fever, general pain, anorexia, or behavioral changes, with or without gastrointestinal disturbances starting within 3 days after vaccination (9%); autoimmune disorders (3%); and other (2%). In nearly 72% of the dogs of these reports, other vaccine or medicinal products were administered in conjunction with the rabies vaccine. In those instances, it was generally not possible to determine which product or products might be most closely linked to the adverse event.  Additionally, in some instances, dogs had > 1 clinical sign, resulting in the coding of several clinical signs in a single report.


But, IF one applied the only 1% estimated reporting figure of “serious” events from the former head of the FDA to the 10,000 adverse events reported for animal rabies vaccines, 65% of which were in dogs, then the actual number of dogs that had adverse reactions to the vaccine could be as high as 650,000 in that 3 year period with 3,575 (5.5%) of the dogs dying from their adverse reaction.


Treatment of Vaccinosis
The diagnosis of vaccinosis is an exclusionary one — i.e. nothing will be found upon other testing to explain the symptoms.  The animal is given the oral homeopathics, Thuja (for all vaccines other than rabies), and Lyssin to detox the rabies “miasm”.  IF there are no holistic veterinarians in the area, these homeopathics can be obtained from NaturalRearing.com.


Our therapy typically uses steroids in tapering doses over 4-6 weeks to stop the inflammatory process and clinical symptoms.  Therapy  begins with an injection of dexamethasone phosphate first, and if the animal improves right away, is continued with prednisone  at 0.5 mg per pound twice daily for 5-7 days, then tapered gradually over the next month to every other day. The use of steroids will cause an increase in water intake and urination, but the animal should be able to handle the drug at these tapering doses for a few weeks.  IF a holistic veterinarian wants to try an alternative therapy to steroids, this approach can also work.  Try it for several days to see if it will work.


We advise that these patients receive no further vaccine boosters, except for rabies, where exemption can be sought on a case-by-case basis but may not be granted in the specific locale.


W. Jean Dodds, DVM
HEMOPET
11561 Salinaz Avenue
Garden Grove, CA 92843
tel #: 714-891-2022
fax #: 714-891-2123
Hemopet.org


Note from Jan Rasmusen:  Dr. Dodds is a Founder of the Rabies Challenge Fund, a nonprofit organization working to increase the period between rabies shots from 3 years to 5, then 7.  (Blood tests show 7 or more years of immunity.) She donates her services. Please support the Fund.  Even a small donation of $ 5 – $ 10, less than the cost of a rabies shot, will help fund this important research study. Donate here.


References


●  Dodds WJ. More bumps on the vaccine road.  Adv Vet Med  41:715-732, 1999.
●  Dodds WJ.  Vaccination protocols for dogs predisposed to vaccine reactions. J Am An Hosp Assoc 38: 1-4, 2001.
●  Hogenesch H, Azcona-Olivera J, Scott-Moncreiff C, et al.  Vaccine-induced autoimmunity in the dog. Adv Vet Med  41: 733-744, 1999.
●  Hustead  DR, Carpenter T, Sawyer DC, et al. Vaccination issues of concern to practitioners. J Am Vet Med Assoc  214: 1000-1002, 1999.
●  Kyle AHM, Squires RA, Davies PR. Serologic status and response to vaccination against canine distemper (CDV) and canine parvovirus (CPV) of dogs vaccinated at different intervals. J Sm An Pract, June 2002.
● Lappin MR, Andrews J, Simpson D, et al. Use of serologic tests to predict resistance to feline herpesvirus 1, feline calicivirus, and feline parvovirus infection in cats. J Am Vet Med Assoc 220: 38-42, 2002.
● McGaw DL, Thompson M, Tate, D, et al. Serum distemper virus and parvovirus antibody titers among dogs brought to a veterinary hospital for revaccination. J Am Vet Med Assoc 213: 72-75, 1998.
● Moore  GE, Glickman LT. A perspective on vaccine guidelines and titer tests for dogs. J Am Vet Med Assoc 224: 200-203. 2004.
● Moore et al, Adverse events diagnosed within three days of vaccine administration in dogs.  J  Am Vet Med Assoc 227:1102–1108, 2005.
●  Mouzin DE, Lorenzen M J, Haworth, et al. Duration of serologic response to five viral antigens in dogs. J Am Vet Med Assoc 224: 55-60, 2004.
●  Mouzin DE, Lorenzen M J, Haworth, et al. Duration of serologic response to three viral antigens in cats. J Am Vet Med Assoc 224: 61-66, 2004.
● Paul MA.Credibility in the face of controversy. Am An Hosp Assoc Trends Magazine XIV(2):19-21,1998.
● Paul MA (chair) et al. Report of the AAHA Canine Vaccine Task Force: 2003 canine vaccine guidelines, recommendations, and supporting literature. AAHA, April 2003, 28 pp.
●  Schultz RD.  Current and future canine and feline vaccination programs.  Vet Med 93:233-254, 1998.
● Schultz RD, Ford RB, Olsen J, Scott F.  Titer testing and vaccination: a new look at traditional practices. Vet Med, 97: 1-13, 2002 (insert).
● Scott FW, Geissinger CM. Long-term immunity in cats vaccinated with an inactivated trivalent vaccine. Am J Vet Res 60: 652-658, 1999.
●  Scott-Moncrieff JC, Azcona-Olivera J, Glickman NW, et al.  Evaluation of antithyroglobulin antibodies after routine vaccination in pet and research dogs. J Am Vet Med Assoc 221: 515-521, 2002.
● Smith CA.  Are we vaccinating too much?  J Am Vet Med Assoc  207:421-425, 1995.
● Tizard  I, Ni Y.  Use of serologic testing to assess immune status of companion animals. J Am Vet Med Assoc 213: 54-60, 1998.
● Twark L, Dodds WJ. Clinical application of serum parvovirus and distemper virus antibody titers for determining revaccination strategies in healthy dogs. J Am Vet Med Assoc 217:1021-1024, 2000.
● Vascellari M, Melchiotti E, Bozza MA et al. Fibrosarcomas at presumed sites of injection in dogs: characteristics and comparison with non-vaccination site fibrosarcomas and feline post-vaccinal firosarcomas.  J Vet Med 50 (6): 286-291, 2003.


CANINE VACCINE ADVERSE EVENTS  *
• retrospective cohort study; 1.25 million dogs vaccinated at 360 veterinary hospitals
• 38 adverse events per 10,000 dogs vaccinated
• inversely related to dog weight
• vaccines prescribed on a 1-dose-fits-all basis, rather than by body weight.
• increased for dogs up to 2 yr of age, then declined
• greater for neutered versus sexually intact dogs
• increased as number of vaccines given together increased
• increased after the 3 rd or 4 th vaccination
• genetic predisposition to adverse events documented
_____________________________________________________________
*   from Moore et al, JAVMA 227:1102–1108, 2005


VACCINE CONCLUSIONS FOR CANINES  *
Factors that increase risk of adverse events 3 days after vaccination:


• young adult age
• small-breed size
•  neutering
• multiple vaccines given per visit
These risks should be communicated to clients
_______________________________________________________
*   from Moore et al, JAVMA 227:1102–1108, 2005
FELINE VACCINE ADVERSE EVENTS  *
• retrospective cohort study; 0.5 million cats vaccinated at 329 veterinary hospitals
• 51.6  adverse events per 10,000 cats vaccinated
• inversely related to cat weight
• increased for cats about 1 yr of age
• greater for neutered versus sexually intact cats
• increased as number of vaccines given together increased
• Lethargy with or without fever was most common sign
_________________________________________________
*   from Moore et al, JAVMA 231:94-100, 2007


VACCINE CONCLUSIONS FOR FELINES  *
Factors that increase risk of adverse events 30 days after vaccination:
• young adult age
•  neutering
• multiple vaccines given per visit
These risks should be communicated to clients, and the number
of vaccines administered concurrently limited
_______________________________________________________
*  from Moore et al, JAVMA 231:94-100, 2007


2013年9月11日星期三

Aug 14, Pancreatitis In Dogs -- Causes, Symptoms and Treatment

Pancreatitis in dogs can be a life-threatening condition, but early recognition and treatment can improve chances of recovery.


Pancreatitis is simply an inflammation of the pancreas.


So what’s a pancreas?


It’s a little gland located near the stomach.


The pancreas has two main jobs.


Its first job is to produce enzymes that help digest food.


Its other job is to produce insulin, which regulates the blood sugar level.


Pancreatitis in dogs is usually divided into chronic and acute cases.


Golden RetrieverSymptoms of chronic pancreatitis are milder and are often mistaken for other illnesses.


While chronic pancreatitis is the milder form of the two, it’s a continuing inflammatory disease that’s often accompanied by slow, irreversible damage.


Acute pancreatitis is usually more severe, but when it’s over, there’s no remaining damage to organs.


So basically, pancreatitis can be acute and only occur once in a dog’s lifetime or it can become chronic and keep returning over and over again. It can be a rapidly life threatening illness or a mild attack of pain that resolves in a few hours or a day or so.


There’s another very severe form of this condition called necrotizing pancreatitis, in which the damage is so severe that portions of the pancreas are actually destroyed. Some authors refer to this as hemorrhagic pancreatitis.


This form of pancreatitis can be fatal and requires early intervention and aggressive treatment.


In a large number of cases, the cause of pancreatitis remains unclear.


However, there are certain things that we know are associated with the disease.


The most important factor is what your Golden Retriever eats.


Dogs with diets high in fat, and dogs who have recently gotten into the trash or have been fed greasy table scraps, seem to have a higher incidence of the disease.


A single high fat meal can cause pancreatitis in a dog whose normal diet is moderate or low in fat. That’s why there’s a rash of pancreatitis cases at vet clinics around Thanksgiving, Christmas and Easter every year. People just can’t resist sharing their high fat leftovers with the family dog.


Some other factors contributing to the development of pancreatitis in dogs include: Golden RetrieverObesity Lack of exercise Certain medications Long-term use of corticosteroids Cushing’s disease High calcium levels in the blood High triglyceride and/or cholesterol levels in the blood Blood clotting disorders Liver disease Chronic kidney disease Trauma Recent abdominal surgery
As with most diseases or conditions, certain dog breeds are more susceptible to pancreatitis than others. Miniature Schnauzers have a genetic susceptibility to the disease.


Other dogs that seem to be more predisposed to this condition are Yorkshire and Silky Terriers, Dachshunds, Miniature Poodles, and Cocker Spaniels.


The disease occurs usually in middle aged to older dogs, and overweight dogs are at a higher risk. It seems to affect females a little more frequently than males. Dogs with diabetes are also more at risk than others.


The most common symptoms of pancreatitis are fever, lack of appetite, depression, vomiting, and signs of abdominal pain–such as standing with front legs down on the ground as in a bowing position.


Other pancreatitis symptoms include: Golden RetrieverDehydration (sunken eyes, dry mouth, dry skin) Diarrhea or yellow, greasy stool Lethargy Depression Weakness Irritability Rapid heart rate Rapid breathing Difficulty breathing Redness of the gums Signs of shock
Pancreatitis in dogs mimics several other conditions, making diagnosis difficult. Some of these most common “look alike” conditions are: Acute gastroenteritis Inflammatory bowel disease Intestinal obstruction


While there is no definitive test for pancreatitis, your veterinarian will try to make a diagnosis through information obtained from: Medical history (especially what your dog eats) Physical exam Laboratory tests Radiographs (X-rays) Abdominal ultrasound CAT scan Biopsy (occasionally)
The treatment your veterinarian selects will depend on the severity and duration of the illness. Dogs with a mild case of chronic pancreatitis may be treated at home, while those with a severe case of acute pancreatitis will require hospitalization and intensive care.


Golden RetrieverResting the pancreas and gastrointestinal system is the most important key to your dog’s recovery.


That means no food or water by mouth for at least 24 hours to 48 hours.


The second major part of the treatment is the administration of large amounts of intravenous fluids.


Most dogs with pancreatitis are dehydrated from recurrent vomiting and diarrhea.


Other treatment measures include drugs to control vomiting, pain medications, and sometimes antibiotics to control or prevent bacterial infection.


Once the patient seems to feel better, he’s allowed to drink a bit of water. If he doesn’t vomit in the next 12 to 24 hours, he can graduate to solid food. He’ll probably be given small meals of a bland, easily digestible, low-fat food.


Over the course of a week or more, the amount of food can be gradually increased. Most dogs can go home once they’re able to eat and drink again.


Dogs with severe pancreatitis can recover, but may also develop fatal complications, including: Shock Abnormal bleeding and clotting Heart arrhythmias Liver or kidney damage Abdominal inflammation and fluid accumulation Sepsis (internal infection from bacteria and toxins) Breathing difficulties
Pancreatitis can be a very unpredictable disease. In most cases, if the attack was mild and the dog only had one episode, chances of recovery are good. Simply avoiding high fat foods may be all that’s needed to prevent another attack and/or complications.


Golden RetrieverMost vets generally prescribe a low-fat, high-fiber diet for pancreatitis in dogs, to help speed recovery and to prevent future episodes.


Depending on your dog’s situation, the diet recommendations may be for life or he may be able to gradually return to his former food, if it’s low enough in fat.


Although most dogs can eat an occasional high-fat meal without a problem, once a dog develops pancreatitis, a high-fat meal will often cause another episode.


High-fat treats should be avoided. Keeping your dog away from the table during holiday meals can be very helpful, too. And make sure he can’t get into the garbage!


In addition to eating low-fat dog food, your Chunky Charlie needs to get on a serious weight loss program and join you on the jogging trail. Keeping him slim and trim will ward off future pancreatitis problems–and make him feel better, too!


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Home Treatment for Pancreatitis in Dogs

Home Treatment for Pancreatitis in Dogs


Pancreatitis is an inflammation of the pancreas, which is a gland that secretes enzymes for digestion and insulin to help process blood glucose. Home treatment is an option for chronic pancreatitis in dogs. It can also be an option for acute pancreatitis, if it is not too severe.


Chronic Pancreatitis



    Diet is key in controlling chronic pancreatitis. If you feed your dog commercial dog food, feed him low-fat dog food. The dog can also have cooked white rice, potatoes, cooked chicken breast and boiled hamburger. Feed her half carbohydrates and half protein.



Acute Attacks



    If the pancreatitis becomes acute, the dog must not have any food or water until he stops vomiting.



Water



    Once the vomiting stops, give your dog small amounts of water—a few laps of water or ice cubes once an hour.



Food



    If water stays down, give your dog frequent small amounts of soupy, low-fat food that is high in carbohydrates. If she keeps the food down, slowly increase the amount.



Vet Care



    If the dog is dehydrated or unable to eat after 48 hours, take him to a veterinarian for treatment. Also, if she shows signs of being in pain, get pain medication from your vet.