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1.
OBJECTIVE: To determine prevalence of thyroid hormone autoantibodies (THAA) in serum of dogs with clinical signs of hypothyroidism. DESIGN: Cohort study. SAMPLE POPULATION: 287,948 serum samples from dogs with clinical signs consistent with hypothyroidism. PROCEDURE: Serum THAA were detected by use of a radiometric assay. Correlation and chi2 analyses were used to determine whether prevalence varied with breed, age, sex, or body weight. Only breeds for which > or = 50 samples had been submitted were used for analysis of breed prevalence. RESULTS: Thyroid hormone autoantibodies were detected in 18,135 (6.3%) samples. The 10 breeds with the highest prevalence of THAA were the Pointer, English Setter, English Pointer, Skye Terrier, German Wirehaired Pointer, Old English Sheepdog, Boxer, Maltese, Kuvasz, and Petit Basset Griffon Vendeen. Prevalence was significantly correlated with body weight and was highest in dogs between 2 and 4 years old. Females were significantly more likely to have THAA than were males. CONCLUSIONS AND CLINICAL RELEVANCE: Thyroid hormone autoantibodies may falsely increase measured triiodothyronine (T3) and thyroxine (T4) concentrations in dogs; results suggest that T3 concentration may be falsely increased in approximately 57 of 1,000 dogs with hypothyroidism and that T4 concentration may be falsely increased in approximately 17 of 1,000 dogs with hypothyroidism. Results also suggested that dogs of certain breeds were significantly more or less likely to have THAA than were dogs in general.  相似文献   

2.
A definitive diagnosis of hypothyroidism can be difficult because of the many clinical abnormalities associated with thyroid hormone deficiency, and the lack of readily available diagnostic tests with high sensitivity and specificity. Thyroid function tests should be performed only in dogs with clinical findings consistent with hypothyroidism. Measurement of serum total thyroxine (T4) concentration is a useful initial screening test since most hypothyroid dogs have values below the reference range. Serum free T4 concentration measured by equilibrium dialysis is a more sensitive and specific test of thyroid function than total T4 and is particularly useful in dogs with non-thyroidal illness or atypical clinical signs. Measurement of serum endogenous thyroid-stimulating hormone concentration is also helpful, but many hypothyroid dogs have normal results. The gold standard for diagnosis of hypothyroidism remains the thyroid-stimulating hormone response test. It should be used to confirm hypothyroidism when other tests do not agree with the clinical impression or if atypical signs or non-thyroidal illness exist or there has been administration of drugs known to alter thyroid function tests. Ultimately, a positive response to treatment is expected in hypothyroid dogs treated appropriately with levothyroxine.  相似文献   

3.
Circulating antibody titers (1:20 to 1:2560) against thyroglobulin were demonstrated in 48% of pet dogs with hypothyroidism by the chromic chloride passive hemagglutination test. Four of six dogs with acanthosis nigricans (1:20) and one of six male dogs with hyperestrogenism (1:40) had low titers of antibody against thyroglobulin whereas clinically normal pet dogs and dogs with other selected endocrinopathies (hypoadrenocorticism, cortisol-excess, diabetes mellitus) or obesity were consistently negative. Circulating immune complexes evaluated by the mastocytoma cell-assay were present in the sera of 20% of pet dogs with hypothyroidism but were absent in clinically normal dogs. Although variations in dose significantly altered the quantitative response of the thyroid gland to thyrotropin the qualitative pattern of response was similar for T3 but not T4 in clinically normal laboratory beagles. The peak increases for serum triiodothyronine and thyroxine were observed either at eight (0.1 and 0.2 I.U bTSH/5 lbs) or 12 (1.0 I.U. bTYSH/5 lbs) hours postthyrotropin. Dogs with naturally occurring hypothyroidism had a decreased serum T3 and T4 at baseline and eight hours postthyrotropin (1.0 I.U. bTSH/5 lbs) compared to clinically normal pet dogs, laboratory beagles and dogs with other clinical endocrinopathies. The consistent lack of a significant increase of serum T3 and T4 in response to thyrotropin was necessary for the separation of certain hypothyroid from euthyroid pet dogs in which the baseline level of thyroid hormones were equivocal.  相似文献   

4.
Free thyroxine (FT4) and cholesterol were measured in 400 dogs with either suspected hypothyroidism or dermatological signs such that hypothyroidism needed to be ruled out. Hypothyroidism was diagnosed in 68 dogs from the history, physical examination and stated lower reference limit (<7 pmol/L) for FT4 in euthryoid dogs. Dogs with FT4 concentrations in the range 6–9 pmol/L were finally categorized as hypo- or euthyroid either on the basis of retesting after 2 months or on their clinical response to thyroid replacement therapy over at least 2 months.The enzyme immunoassay evaluated in this paper is considered to be of clinical value and offers many advantages compared with radioimmunoassays.Abbreviations FT4 free thyroxine fraction - MEIA microparticle enzyme immunoassay - RIA radioimmunoassays - T4 thyroxine - TBG thyroxine-binding globulin  相似文献   

5.
In human patients with hypoadrenocorticism, a secondary dilated cardiomyopathy is noted that has been reported to resolve with replacement steroid therapy. A similar secondary dilated cardiomyopathy in dogs with hypoadrenocorticism has not been previously described. We present three dogs concurrently diagnosed with hypoadrenocorticism and ventricular dilation with systolic dysfunction. Two dogs were presented with clinical signs consistent with biventricular congestive heart failure and a third dog was presented with signs of acute hypoadrenocorticism without congestive heart failure. All dogs recovered to normal cardiac size and function with therapy. Hypoadrenocorticism should be considered as a differential diagnosis in dogs that present with ventricular dilation and systolic dysfunction if there are other indicators in the clinical and laboratory testing. Additionally, a thorough cardiac evaluation should be recommended for dogs that are found to have a heart murmur at the time of diagnosis of hypoadrenocorticism.  相似文献   

6.
Atypical hypoadrenocorticism in three dogs   总被引:1,自引:0,他引:1  
Three dogs with hypoadrenocorticism did not have characteristically abnormal serum concentrations of sodium, potassium, and chloride and had not been treated with glucocorticoids. Diagnosis was based on lack of adrenocortical response to exogenous adrenocorticotropic hormone. Clinical signs included lethargy, weakness, anorexia, vomiting, and weight loss. The case demonstrated that the diagnosis of canine hypoadrenocorticism should not be excluded on the basis of normal serum electrolyte values.  相似文献   

7.
Hypoadrenocorticism in a family of Standard poodles   总被引:2,自引:0,他引:2  
Thirty-one ancestors of a Standard Poodle with hypoadrenocorticism were located. Hypoadrenocorticism had been confirmed in 8 of 32 dogs (25%) by use of ACTH response testing or necropsy. In 2 additional dogs, hypoadrenocorticism was diagnosed on the basis of characteristic clinical signs and serum electrolyte abnormalities consistent with adrenocortical insufficiency. Although an obvious pattern of inheritance was not evident, the high prevalence of hypoadrenocorticism suggested that heredity may have been a factor in the development of idiopathic adrenal insufficiency in dogs of this family.  相似文献   

8.
Sixteen dogs with confirmed hypothyroidism were reviewed. The diagnosis was based on subnormal plasma thyroxine concentration and poor response following TSH administration. Common clinical signs were alopecia (12 dogs), lethargy (11) and obesity (11). Plasma cholesterol concentrations were abnormally high in 10 of 14 cases tested, five of 12 were anaemic and three of five had increased creatine phosphokinase activity. Skin changes compatible with endocrinopathy were present in all five cases biopsied. Spontaneous muscle activity was found on electromyography in four cases so examined. All dogs were treated with sodium levothyroxine, and 10 of 13 for which information was available responded satisfactorily.  相似文献   

9.
OBJECTIVE: To compare dogs with glucocorticoid-deficient hypoadrenocorticism (GDH) with those with mineralocorticoid- and glucocorticoid-deficient hypoadrenocorticism (MGDH) and determine prevalence, historical and clinicopathologic markers, and outcome of dogs with GDH. DESIGN: Retrospective case series. ANIMALS: 46 dogs with hypoadrenocorticism. PROCEDURES: Records in the veterinary medical database at Purdue University were searched for dogs in which hypoadrenocorticism had been diagnosed at the Veterinary Teaching Hospital from 1985 to 2005. Data pertaining to signalment, history, a minimum clinicopathologic database, treatment, and outcome were collected. Dogs with hypoadrenocorticism were classified as having MGDH if hyponatremia, hyperkalemia, or both were detected and as having GDH if hyponatremia and hyperkalemia were absent. Dogs were excluded if they had ever been treated with mitotane or had been treated with > 1 dose of corticosteroids within a month prior to the ACTH-stimulation test. RESULTS: 35 dogs with MGDH and 11 dogs with GDH met the inclusion criteria. Dogs with GDH were older at the time of diagnosis and had a longer duration of clinical signs prior to diagnosis than those with MGDH. Dogs with GDH were more likely to be anemic, hypoalbuminemic, and hypocholesterolemic than dogs with MGDH. CONCLUSIONS AND CLINICAL RELEVANCE: GDH was more common than reported in a referral hospital population of dogs with primary hypoadrenocorticism. Definitive diagnosis of GDH remains a clinical challenge. Absence of a stress leukogram in dogs with signs of illness (especially relating to the gastrointestinal tract) warrants further investigation. Most dogs with primary cortisol deficiency do not develop mineralocorticoid deficiency.  相似文献   

10.
Canine thyroid-stimulating hormone (cTSH) was measured in a variety of clinical cases (n= 72). The cases were classified as euthyroid, sick euthyroid, hypothyroid or hypothyroid on non-thyroidal therapy on the basis of their history, clinical signs, laboratory results (including total thyroxine concentrations and, where indicated, thyroid-releasing hormone [TRH] stimulation tests) and response to appropriate therapy. Additional samples were taken during some of the TRH stimulation tests to measure the response of cTSH concentrations following TRH administration. A reference range (0 to 0–41 ng/ml) was calculated from the basal concentrations of cTSH in a group of 41 euthyroid dogs. Six of nine cases of confirmed hypothyroidism had basal cTSH concentrations above the reference range, whereas the remainder were within the normal range. One of these three remaining cases was a pituitary dwarf and did not show a rise in cTSH concentration following TRH stimulation. In contrast, only one of a group of six hypothyroid dogs that had been on non-thyroidal treatment within the previous four weeks had increased concentrations of basal cTSH. This study also found that five of a group of 16 dogs with sick euthyroid syndrome had increased cTSH concentrations. It was concluded that cTSH measurements are a useful additional diagnostic test in cases of suspected hypothyroidism in dogs but that dynamic testing is still required to confirm the diagnosis of hypothyroidism.  相似文献   

11.
A cross-sectional study was performed in order to examine the association between canine aggression to familiar people and serum concentrations of total thyroxine (TT4), free thyroxine (fT4), thyroxine autoantibodies (T4AA), total triiodothyronine (TT3), free triiodothyronine (fT3), triiodothyronine autoantibodies (T3AA), thyroid stimulating hormone (TSH), and thyroglobulin autoantibodies (TgAA). The subjects were 31 dogs historically aggressive to familiar people and 31 dogs with no history of aggression. Behavioral evaluation and physical examination were completed for each dog in addition to a complete blood count, serum chemistry panel, TT4, fT4 by equilibrium dialysis, TT3, fT3, TgAA, T3AA, and T4AA. Significant differences were found between the two groups with respect to only T4AA, which was increased in the aggressive group, but the concentrations for both groups were within the normal reference range. There were no differences between the two groups in the thyroid analytes most commonly measured by veterinary practitioners evaluating thyroid function in dogs. The results of this study revealed no significant difference between aggressive and non-aggressive dogs in the thyroid concentrations most commonly used to diagnose canine hypothyroidism.  相似文献   

12.
To determine whether measurement of canine thyrotropin (cTSH) would aid in the diagnosis of hypothyroidism, serum samples of 65 dogs with clinical signs suggestive of hypothyroidism were evaluated. Diagnosis was confirmed in 26 dogs and excluded in 39 dogs based on TSH-stimulation testing. Total thyroxine (T4) was significantly lower and cTSH significantly higher in hypothyroid dogs compared to euthyroid dogs. Canine TSH was above (> 0.6 ng/ml) in 15 (57.7%) and below the upper limit of the reference range in 11 (42.3%) of the hypothyroid dogs. All of the euthyroid dogs had a cTSH < 0.6 ng/ml. In all dogs with a cTSH above the upper limit of the reference range hypothyroidism could be confirmed. Therefore, our results show that measurement of cTSH has an excellent specificity (100%) and is a valuable tool in confirming canine hypothyroidism. However, due to the low sensitivity of cTSH assays (60%), it can not be recommended to exclude the disease.  相似文献   

13.
14.

Background

Thyrotropin (TSH) can be increased in humans with primary hypoadrenocorticism (HA) before glucocorticoid treatment. Increase in TSH is a typical finding of primary hypothyroidism and both diseases can occur concurrently (Schmidt's syndrome); therefore, care must be taken in assessing thyroid function in untreated human patients with HA.

Objective

Evaluate whether alterations in cTSH can be observed in dogs with HA in absence of primary hypothyroidism.

Animals

Thirty dogs with newly diagnosed HA, and 30 dogs in which HA was suspected but excluded based on a normal ACTH stimulation test (controls) were prospectively enrolled.

Methods

cTSH and T4 concentrations were determined in all dogs and at selected time points during treatment (prednisolone, fludrocortisone, or DOCP) in dogs with HA.

Results

cTSH concentrations ranged from 0.01 to 2.6 ng/mL (median 0.29) and were increased in 11/30 dogs with HA; values in controls were all within the reference interval (range: 0.01–0.2 ng/dL; median 0.06). There was no difference in T4 between dogs with increased cTSH (T4 range 1.0‐2.1; median 1.3 μg/dL) compared to those with normal cTSH (T4 range 0.5‐3.4, median 1.4 μg/dL; P=0.69) and controls (T4 range 0.3‐3.8, median 1.8 μg/dL; P=0.35). After starting treatment, cTSH normalized after 2–4 weeks in 9 dogs and after 3 and 4 months in 2 without thyroxine supplementation.

Conclusions and Clinical Relevance

Evaluation of thyroid function in untreated dogs with HA can lead to misdiagnosis of hypothyroidism; treatment with glucocorticoids for up to 4 months can be necessary to normalize cTSH.  相似文献   

15.
A 12‐year‐old male neutered Miniature Poodle with confirmed pituitary‐dependent hyperadrenocorticism was treated with trilostane. After three doses, it developed clinical and laboratory changes suggestive of isolated hypocortisolism (‘atypical hypoadrenocorticism’), which persisted and progressed for more than 3 months despite immediate withdrawal of the trilostane. The clinical signs of hyperadrenocorticism resolved without further trilostane. After 3 months, prednisolone treatment was started and the clinical signs of hypocortisolism resolved. Prednisolone therapy was required for more than 1 year. Ultrasonography initially demonstrated large hypoechoic adrenal cortices, typical of dogs with hyperadrenocorticism, which then became small and heteroechoic, consistent with the development of adrenal necrosis. Persistent isolated hypocortisolism has not been reported previously as a complication of trilostane therapy. The case is also remarkable for the very short duration of trilostane therapy that elicited this complication. Clinicians should be aware that trilostane therapy may result in adrenal necrosis, even in the very earliest stages of therapy, but prompt action can prevent a life‐threatening situation.  相似文献   

16.
Neuromuscular signs in association with hypothyroidism are described in 29 dogs. Eleven dogs had lower motor neuron signs, 9 had peripheral vestibular deficits, 4 had megaesophagus, and 5 had laryngeal paralysis. Primarily older (mean = 9.5 years), large-breed dogs were affected, and there was no sex or breed predisposition. Duration of clinical signs before presentation ranged from 2 to 8 weeks (mean = 5 weeks). The diagnosis was based on (1) results of neurological examination (29 dogs); (2) electromyographic abnormalities (18 dogs), including fibrillation potentials (n = 18), positive sharp waves (n = 15), and complex repetitive discharges (n = 4); (3) high serum cholesterol concentration (10 dogs; mean = 335 mg/dL); (4) low response to thyroid-stimulating hormone (29 dogs; mean T4 prestimulation concentration = 0.8 μg/dL; mean T4 poststimulation = 1.2 μg/dL); and (5) good response to thyroxine supplementation (26 dogs). Dogs with vestibular deficits had abnormal brainstem auditory-evoked responses (BAER), including increased latencies of P1-P6 and decreased amplitude of P4,5-N5. Seven other dogs had similar BAER abnormalities without manifesting clinical signs of vestibular involvement. Three dogs with vestibular signs had fibrillation potentials and positive sharp waves without exhibiting lower motor neuron signs. All dogs were supplemented with levothyroxine (0.02 mg/kg P0 bid). The follow-up period ranged between 6 and 30 months (mean, 14 months). Serum T4 concentrations were measured at least 3 times for each dog every 2 months (mean T4 concentration = 2.6 μg/dL). All but 1 dog with lower motor neuron signs and 1 dog with vestibular signs recovered after 2 months (mean, 57 days). Signs of megaesophagus became progressively less severe over 4 months. Dogs with laryngeal paralysis improved partially after 5 months. We suggest that either vestibular or lower motor neuron signs, megaesophagus, or laryngeal paralysis may be the only clinical signs of an underlying, more generalized polyneuropathy associated with hypothyroidism. Electro-diagnostic abnormalities may be detected before clinical disease develops.  相似文献   

17.
A multicentric prospective study was conducted to monitor the effect of phenobarbital on serum total thyroxine (T4) and thyroid-stimulating hormone (TSH) concentrations in epileptic dogs. Serum T4 concentrations were determined for 22 epileptic dogs prior to initiation of phenobarbital therapy (time 0), and 3 weeks, 6 months, and 12 months after the start of phenobarbital. Median T4 concentration was significantly lower at 3 weeks and 6 months compared to time 0. Thirty-two percent of dogs had T4 concentrations below the reference range at 6 and 12 months. Nineteen of the 22 dogs had serum TSH concentrations determined at all sampling times. A significant upward trend in median TSH concentration was found. No associations were found between T4 concentration, dose of phenobarbital, or serum phenobarbital concentration. No signs of overt hypothyroidism were evident in dogs with low T4, with one exception. TSH stimulation tests were performed on six of seven dogs with low T4 concentrations at 12 months, and all but one had normal responses. In conclusion, phenobarbital therapy decreased serum T4 concentration but did not appear to cause clinical signs of hypothyroidism. Serum TSH concentrations and TSH stimulation tests suggest that the hypothalamic-pituitary-thyroid axis is functioning appropriately.  相似文献   

18.
Hypoadrenocorticism was diagnosed in 42 dogs over a two-and-a-half-year period. The disease occurred more commonly in young to middle-aged dogs, with a female:male ratio of 2:1. Most dogs had chronic intermittent signs (eg, poor appetite, lethargy and vomiting), but more than a third were in acute adrenal crisis at the time of diagnosis. Serum biochemical testing revealed azotaemia, hyperphosphataemia, hyper-kalaemia and hyponatraemia in almost all the dogs. In all dogs, results of adrenocorticotrophic hormone (ACTH) stimulation testing revealed a low to low-normal serum baseline Cortisol concentration that failed to increase after ACTH administration. In two dogs with persistently normal serum electrolytes concentration, one had a markedly high plasma ACTH concentration diagnostic for primary hypoadrenocorticism, whereas the other had a low concentration confirming secondary hypoadrenocorticism. Fludrocortisone acetate was initially used for mineralocorticoid replacement in 33 of the 37 treated dogs withprimary hypoadrenocorticism (final median dosage, 27-0 μg/kg/day), but supplementation was changed to desoxycorticos-terone pivalate (DOCP) in four dogs because of poor response or adverse effects. Seven dogs with primary hypoadrenocorticism were treated with DOCP (final median dosage, 2-02 mg/kg/month). Prednisone, initially administered to 36 dogs, was discontinued in 11 dogs because of side effects. Of the dogs treated with fludrocortisone, the response was considered good to excellent in 26 dogs (78.8 per cent), fair in three, and poor in four. All dogs treated with DOCP responded well.  相似文献   

19.
Forty dogs referred to the University Department of Clinical Veterinary Medicine, Cambridge for medical and oncological conditions between 1985 and 1990 were found to be hypercalcaemia In 18 cases the primary or underlying condition was diagnosed as lymphoproliferative disease with multicentric lymphoma occurring most commonly. Ten dogs were suffering from hypoadrenocorticism (Addison's disease) and two had adenocarcinomas of the apocrine glands of the anal sac. In three dogs a clinical diagnosis of renal dysplasia was made, this diagnosis being confirmed at post mortem examination in one dog. In the remaining cases hypercalcaemia was associated with a primary lung tumour, a thymoma, an osteosarcoma with widespread skeletal metastases, primary hyperparathyroidism due to a parathyroid adenoma, chronic panniculitis, iatrogenic hypoadrenocorticism following mito-tane therapy (one case each] and, in a further case, no diagnosis was reached. The most common clinical signs were inappetence, polyuria/ polydipsia, weakness, vomiting, lethargy and depression. As a group, the dogs with lymphoproliferative disease had a significantly higher mean plasma calcium concentration (4-3 ± 0–7 vs 3–5 ± 0–4 mmol/litre), a significantly lower mean plasma inorganic phosphate concentration (1–5 ± 0–5 vs 2–4 ± 09 mmol/litre) and were significantly older (5-5 ± 2–4 vs 3-3 + 1–8 years) than the dogs with hypoadrenocorticism.  相似文献   

20.
Pseudolymphoma is a drug reaction to anti‐epileptics that is well recognized in humans; it has been reported in one cat but not dogs. In this report, lymphoma‐like clinical signs are suspected to be secondary to phenobarbital administration in a dog. A 2.5‐year‐old male, neutered Shepherd mix presented for a 3‐day history of progressive ataxia, dazed mentation, pyrexia, and lethargy. While hospitalized, the dog developed generalized lymphadenopathy and sustained pyrexia. The dog was receiving levetiracetam and phenobarbital for epilepsy, and serum concentrations of both were within standard therapeutic ranges. Abdominal ultrasound revealed hepatomegaly, splenomegaly, and generalized lymphadenopathy. Cytology of the peripheral lymph nodes was consistent with reactive lymph nodes, and aspirates of the liver and spleen revealed histiocytic‐neutrophilic inflammation. Phenobarbital was discontinued and replaced with zonisamide. Within 24 hours, the dog was normothermic, and other clinical signs resolved within a week. This case highlights a potentially serious yet reversible adverse reaction to phenobarbital in a dog. This idiosyncratic reaction could be mistaken for neoplasia and is an important differential for lymphoma‐like signs in any dog administered phenobarbital.  相似文献   

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