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首页> 外文期刊>Current medicinal chemistry >Chemistry and biology of thyrotropin-releasing hormone (TRH) and its analogs.
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Chemistry and biology of thyrotropin-releasing hormone (TRH) and its analogs.

机译:促甲状腺激素释放激素(TRH)及其类似物的化学和生物学。

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摘要

Thyrotropin-releasing hormone (TRH), a hypothalamic orally active neuropeptide, has been manifested in a wide range of biological responses. Besides its central role in regulating the pituitary-thyroid axis by simulating the release of thyrotropin, TRH has considerable influence on the activity of a number of neurobiological systems. Due to the therapeutic potential of TRH to treat several CNS maladies, the development of CNS-selective and metabolically stable TRH analogs is an area of interest. TRH is known to elicit its biological response through two G-protein coupled receptors for TRH (namely, TRH-R1 and TRH-R2). The distinct distribution of TRH receptors in tissues has provided opportunity to discover receptor subtype-specific analogs, which would demonstrate high CNS activities, and are completely free of hormonal activities. In this review, an in-depth analysis of the chemistry and biology of TRH and its analogs is provided. Recent discoveries of TRH-R2 selective analogs, TRH super agonists, metabolically stable TRH analogs, and targeted delivery of TRH analogs have been also discussed.
机译:促甲状腺激素释放激素(TRH),一种下丘脑口服活性神经肽,已在多种生物学反应中得到证实。 TRH除了通过模拟促甲状腺激素的释放在调节垂体-甲状腺轴方面发挥中心作用外,还对许多神经生物学系统的活性产生重大影响。由于TRH具有治疗多种中枢神经系统疾病的治疗潜力,因此开发中枢神经系统选择性和代谢稳定的TRH类似物是一个令人关注的领域。已知TRH通过两个TRH的G蛋白偶联受体(即TRH-R1和TRH-R2)引起其生物学应答。 TRH受体在组织中的独特分布为发现受体亚型特异性类似物提供了机会,这些类似物具有较高的CNS活性,并且完全没有激素活性。在这篇综述中,提供了对TRH及其类似物的化学和生物学的深入分析。还讨论了TRH-R2选择性类似物,TRH超级激动剂,代谢稳定的TRH类似物和TRH类似物的靶向递送的最新发现。

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