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胰腺促甲状腺激素释放激素与胰岛素分泌机制

Pancreatic Thyrotropin Releasing Hormone and Mechanism of Insulin Secretion.

作者信息

Štrbák Vladimír

出版信息

Cell Physiol Biochem. 2018;50(1):378-384. doi: 10.1159/000494013. Epub 2018 Oct 4.

Abstract

Thyrotropin releasing hormone (TRH; pGlu-His-ProNH2) is expressed also in pancreatic β cells where it is colocalized in secretory granules with insulin. High perinatal changes of the TRH gene expression and TRH concentrations in rat pancreatic islets coincide with the perinatal maturation of the adequate insulin secretory responsiveness to glucose and other nutrient secretagogues. TRH secretion from pancreatic islets is stimulated by glucose and inhibited by insulin. Disruption of the TRH gene in knockout mice results in hyperglycemia accompanied by impaired insulin secretory response to glucose. Progress in understanding TRH - insulin relations may be substantial for improving knowledge of pathophysiological mechanisms included in changes of insulin secretion with possible clinical impact. Block of the last step of biosynthesis of α-amidated peptides, including TRH by disulfiram (DS) treatment of adult male rats subcutaneously with 200 mg/kg for five days in our experiments resulted in barely detectable levels of peptidyl-glycine α-amidating monooxygenase (PAM) in their pancreatic islets. TRH in physiological concentration (1 nM) does not affect basal insulin secretion from intact rat pancreatic islets. In contrast, basal insulin secretion from islets of DS-treated rats is four times higher compared to controls and could not be further stimulated by high-glucose. The addition of 1 nM TRH into medium decreased immediately basal insulin secretion in DS (TRH lacking) islets to control level and normalized also their response to glucose. Interestingly, absence of the secretory response to glucose in islets from TRH depleted rats was connected with their increase of insulin content during stimulation. Glucose stimulation together with 1 nM TRH normalized also insulin content in DS islets. Apparently, high insulin content in islets from TRH depleted animals is a result of block of regulatory secretion pathway redirected to constitutional secretion which was corrected by the addition of TRH. Type 2 diabetes mellitus is a disease characterized by various range from predominant insulin resistance with relative insulin deficiency to a predominant secretory defect with insulin resistance. These symptoms suggest a possible role of TRH dysregulation. In conclusion, presence of TRH in β cells ensures appropriate low basal (constitutive) insulin secretion. Release of TRH induced by glucose and possibly by other secretagogues has autocrine effect resulting in directing insulin secretion to regulatory pathway reacting to stimulation. If some defects of insulin secretion could be treated by TRH, various ways of applications (also oral and nasal) could be utilized. Moreover, positive side effects shown in animal experiments may accompany the treatment: TRH has the potential to prevent apoptosis and promotes insulin-producing cell proliferation and has also aging-reversing properties.

摘要

促甲状腺激素释放激素(TRH;焦谷氨酸 - 组氨酸 - 脯氨酰胺)也在胰腺β细胞中表达,它与胰岛素共定位于分泌颗粒中。大鼠胰岛中TRH基因表达和TRH浓度在围产期的显著变化与对葡萄糖和其他营养促分泌剂的适当胰岛素分泌反应的围产期成熟相吻合。胰腺胰岛分泌的TRH受葡萄糖刺激,并受胰岛素抑制。基因敲除小鼠中TRH基因的破坏导致高血糖,并伴有对葡萄糖的胰岛素分泌反应受损。在理解TRH - 胰岛素关系方面取得的进展对于增进对胰岛素分泌变化中所包含的病理生理机制的认识可能具有重要意义,而这些机制可能具有临床影响。在我们的实验中,用200mg/kg双硫仑(DS)对成年雄性大鼠进行皮下注射,持续五天,阻断包括TRH在内的α - 酰胺化肽生物合成的最后一步,导致其胰腺胰岛中肽基 - 甘氨酸α - 酰胺化单加氧酶(PAM)的水平几乎检测不到。生理浓度(1nM)的TRH不影响完整大鼠胰腺胰岛的基础胰岛素分泌。相比之下,DS处理大鼠的胰岛基础胰岛素分泌比对照组高四倍,并且不能被高糖进一步刺激。向培养基中添加1nM的TRH可立即将DS(缺乏TRH)胰岛的基础胰岛素分泌降低至对照水平,并使其对葡萄糖的反应也恢复正常。有趣的是,TRH缺乏大鼠的胰岛对葡萄糖缺乏分泌反应与其在刺激过程中胰岛素含量的增加有关。葡萄糖刺激加上1nM的TRH也使DS胰岛中的胰岛素含量恢复正常。显然,TRH缺乏动物的胰岛中高胰岛素含量是调节性分泌途径受阻并转向组成性分泌的结果,而添加TRH可纠正这一情况。2型糖尿病是一种特征范围广泛的疾病,从以相对胰岛素缺乏为主的胰岛素抵抗到以胰岛素抵抗为主的分泌缺陷。这些症状提示TRH失调可能起作用。总之,β细胞中TRH的存在确保了适当的低基础(组成性)胰岛素分泌。由葡萄糖以及可能由其他促分泌剂诱导释放的TRH具有自分泌作用,导致胰岛素分泌导向对刺激作出反应的调节途径。如果某些胰岛素分泌缺陷可以用TRH治疗,那么可以采用各种应用方式(包括口服和鼻内给药)。此外,动物实验中显示的积极副作用可能伴随治疗出现:TRH有预防细胞凋亡的潜力,促进胰岛素产生细胞的增殖,并且还具有逆转衰老的特性。

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