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向健康犬、甲状腺功能减退犬以及患有并发疾病的甲状腺功能正常犬注射促甲状腺激素释放激素后血清促甲状腺激素浓度的变化。

Change in serum thyroid-stimulating hormone concentration in response to administration of thyrotropin-releasing hormone to healthy dogs, hypothyroid dogs, and euthyroid dogs with concurrent disease.

作者信息

Scott-Moncrieff J C, Nelson R W

机构信息

Department of Veterinary Clinical Sciences, School of Veterinary Medicine, Purdue University, West Lafayette, IN 47907, USA.

出版信息

J Am Vet Med Assoc. 1998 Nov 15;213(10):1435-8.

PMID:9828939
Abstract

OBJECTIVE

To determine whether measuring change in serum thyroid-stimulating hormone (TSH) concentration in response to thyrotropin-releasing hormone (TRH) administration can be used as a test of thyroid function in dogs suspected of having hypothyroidism.

DESIGN

Case-cohort study.

ANIMALS

13 healthy dogs, 20 hypothyroid dogs, and 18 euthyroid dogs with concurrent diseases.

PROCEDURE

Blood samples were collected before and 30 minutes after TRH administration, and serum TSH concentration was measured. The 13 healthy dogs were used to establish a reference range for change in TSH concentration after TRH administration. The remaining 38 dogs were categorized as hypothyroid or euthyroid on the basis of baseline total thyroxine (T4) and TSH concentrations, T4 concentration 4 hours after TRH administration, and clinical response to administration of sodium levothyroxine.

RESULTS

Median baseline TSH concentration was 0.25 ng/ml (range, 0.03 to 0.44 ng/ml) in healthy dogs, 0.93 ng/ml (0.21 to 3.5 ng/ml) in hypothyroid dogs, and 0.21 ng/ml (0.03 to 0.63 ng/ml) in euthyroid dogs with concurrent diseases. Median percentage change in TSH concentration after TRH administration was 207% (range, 25 to 2,200%) in healthy dogs, 24% (-21 to 134%) in hypothyroid dogs, and 167% (69 to 1,800%) in euthyroid dogs with concurrent diseases. Overall accuracy of using the TRH-induced change in TSH concentration to identify hypothyroid dogs was 90%.

CLINICAL IMPLICATIONS

Although percentage change in TSH concentration in response to TRH administration can be used to differentiate euthyroid from hypothyroid dogs, the test has little advantage over measurement of baseline TSH and total or free T4 concentration.

摘要

目的

确定在怀疑患有甲状腺功能减退症的犬中,测量促甲状腺激素释放激素(TRH)给药后血清促甲状腺激素(TSH)浓度的变化是否可用于甲状腺功能检测。

设计

病例队列研究。

动物

13只健康犬、20只甲状腺功能减退犬和18只患有并发疾病的甲状腺功能正常犬。

步骤

在TRH给药前和给药后30分钟采集血样,并测量血清TSH浓度。13只健康犬用于建立TRH给药后TSH浓度变化的参考范围。其余38只犬根据基线总甲状腺素(T4)和TSH浓度、TRH给药后4小时的T4浓度以及左甲状腺素钠给药的临床反应分为甲状腺功能减退或甲状腺功能正常。

结果

健康犬的TSH基线浓度中位数为0.25 ng/ml(范围为0.03至0.44 ng/ml),甲状腺功能减退犬为0.93 ng/ml(0.21至3.5 ng/ml),患有并发疾病的甲状腺功能正常犬为0.21 ng/ml(0.03至0.63 ng/ml)。TRH给药后,健康犬TSH浓度的中位数变化百分比为207%(范围为25至2,200%),甲状腺功能减退犬为24%(-21至134%),患有并发疾病的甲状腺功能正常犬为167%(69至1,800%)。使用TRH诱导的TSH浓度变化来识别甲状腺功能减退犬的总体准确率为90%。

临床意义

尽管TRH给药后TSH浓度的变化百分比可用于区分甲状腺功能正常犬和甲状腺功能减退犬,但该检测与测量基线TSH以及总T4或游离T4浓度相比优势不大。

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