首页> 外文期刊>Endocrine journal >Gene expression study of thyrotropin releasing hormone (TRH) receptor using RT-PCR: relationship to clinical and immunohistochemical phenotypes in a series of human pituitary adenomas.
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Gene expression study of thyrotropin releasing hormone (TRH) receptor using RT-PCR: relationship to clinical and immunohistochemical phenotypes in a series of human pituitary adenomas.

机译:促甲状腺激素释放激素(TRH)受体的RT-PCR基因表达研究:与一系列人类垂体腺瘤的临床和免疫组化表型的关系。

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Thyrotropin releasing hormone receptor 1 (TRHR1) and 2 (TRHR2) mRNAs were examined using reverse transcription polymerase chain reaction (RT-PCR). These data were then correlated with endocrinological and histological characteristics in 65 human pituitary adenomas including one non tumorous pituitary gland, to clarify the role of TRHR1 and 2 gene expression in human pituitary adenomas, especially as it relates to the paradoxical stimulatory effects of TRH found in pituitary adenomas. TRHR mRNA was not identified in four ACTH cell adenomas, whereas TRHR mRNA expression was found in 12/23 acromegaly specimens, 7/8 prolactinomas, 3/3 TSH cell adenomas, and 22/27 clinically nonfunctioning adenomas. Specimens obtained from patients expressing the TRHR gene were found to express TRHR1 and TRHR2 or TRHR1 alone, whereas no cases were identified in which TRHR2 alone was expressed. In examining the relationship between GH, PRL, TSH, or gonadotropin subunit response to TRH administration and TRHR gene expression,TRHR mRNA was found to be absent in 9 out of 10 GH cell adenomas without paradoxical GH response to TRH (non-responder), whereas TRHR genes were shown to be expressed in 10 out of 12 GH cell adenomas with paradoxical GH response to TRH (responders) (chi2 = 11.73, p = 0.0009). However, there was no significant correlation between TRHR gene expression and responsiveness to PRL or gonadotropins to TRH administration in PRL cell adenomas (chi2 = 0.16, p = 0.87) or gonadotroph cell adenomas (chi2 = 0.0006, p = 1), respectively. We concluded that the existence of the TRH receptor in adenoma cells plays an important role in the paradoxical GH response to TRH administration in GH cell adenomas. It should be noted that the PRL response to TRH in prolactinoma or an abnormal response of gonadotropin and/or its subunits to TRH in gonadotroph cell adenomas is considered to be due to a mechanism other than direct TRH action in adenoma cells. However, further studies are required to elucidate the role of TRHR2 in pituitary adenomas.
机译:使用逆转录聚合酶链反应(RT-PCR)检测促甲状腺激素释放激素受体1(TRHR1)和2(TRHR2)mRNA。然后将这些数据与65个人类垂体腺瘤(包括一个非肿瘤性垂体腺瘤)的内分泌学和组织学特征相关联,以阐明TRHR1和2基因表达在人垂体腺瘤中的作用,特别是与TRH的反常刺激作用有关垂体腺瘤。在四个ACTH细胞腺瘤中未鉴定出TRHR mRNA,而在12/23肢端肥大症标本,7/8泌乳素瘤,3/3 TSH细胞腺瘤和22/27临床无功能的腺瘤中发现了TRHR mRNA表达。发现从表达TRHR基因的患者获得的标本仅表达TRHR1和TRHR2或TRHR1,而没有发现仅表达TRHR2的病例。在检查GH,PRL,TSH或促性腺激素亚单位对TRH的反应与TRHR基因表达之间的关系时,发现10个GH细胞腺瘤中有9个中没有TRHR mRNA,而GH对TRH(无反应者)却没有反常的现象,而TRHR基因在12个GH细胞腺瘤中有10个表达,对GH对TRH的反应异常(响应者)(chi2 = 11.73,p = 0.0009)。然而,在PRL细胞腺瘤(chi2 = 0.16,p = 0.87)或性腺萎缩细胞腺瘤(chi2 = 0.0006,p = 1)中,TRHR基因表达与对PRL或促性腺激素对TRH给药的反应性之间无显着相关性。我们得出的结论是,腺瘤细胞中TRH受体的存在在GH细胞腺瘤对TRH给药的悖论性GH反应中起着重要作用。应当指出,催乳素瘤中PRH的PRL反应或促性腺激素细胞腺瘤中促性腺激素和/或其亚基对TRH的异常反应被认为是由于腺瘤细胞中直接TRH作用以外的机制所致。但是,需要进一步研究阐明TRHR2在垂体腺瘤中的作用。

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