首页> 外文期刊>Mechanisms of Ageing and Development >Effects of long-term dietary interventions on pituitary growth hormone-releasing hormone receptor in aging rats and potential mechanisms of action.
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Effects of long-term dietary interventions on pituitary growth hormone-releasing hormone receptor in aging rats and potential mechanisms of action.

机译:长期饮食干预对衰老大鼠垂体生长激素释放激素受体的影响及其潜在作用机制。

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Long-term moderate caloric restriction (LTMCR) is a powerful intervention to delay age-related health deterioration. In this study, the effects of 40% caloric restriction (CR), implemented at 8 months with or without protein restriction, and 40% dietary protein restriction alone, implemented at 2 months, were examined on pituitary growth hormone-releasing hormone receptor (GHRH-R) and GHRH sensitivity in 12-20-month-old male Sprague Dawley rats. An increase of the 4-kb GHRH-R mRNA transcript and 4 kb/2.5 kb ratio, the blunting of high affinity GHRH binding sites and a decrease in GHRH-induced cAMP production were observed in old rats. Only 40% CR maintained youthful levels of GHRH-R transcripts and GHRH binding parameters as well as maximal GHRH-induced cAMP production. Moreover, the GHRH-induced capacity of somatotrophs to synthesize/repair DNA in vitro, in the presence of moderate glucotoxic stress (12 mM d-glucose), was maintained in old CR rats. Among the hormonal and metabolic regulators of GHRH-R that were modified by LTMCR, glucose, free fatty acids and glucocorticoids represent promising candidates for future investigation. A better understanding of the molecular and cellular mechanisms by which they regulate the pituitary GHRH-R should help define strategies to mimic the beneficial effects of LTMCR by less demanding interventions.
机译:长期中度热量限制(LTMCR)是延迟与年龄相关的健康恶化的有力干预。在这项研究中,检查了40%的热量限制(CR)在垂体生长激素释放激素受体(GHRH)的作用下在有或没有蛋白质限制的情况下在8个月时实施,而在饮食的蛋白质限制在2个月时进行了40%。 -R)和GHRH敏感性在12-20个月大的雄性Sprague Dawley大鼠中。在老年大鼠中观察到4-kb GHRH-R mRNA转录物的增加和4 kb / 2.5 kb的比率增加,高亲和力GHRH结合位点变钝,GHRH诱导的cAMP产生减少。只有40%的CR可以保持GHRH-R转录本和GHRH结合参数的年轻水平,以及最大的GHRH诱导的cAMP产生。此外,在老年CR大鼠中,在中等糖毒性应激(12 mM d-葡萄糖)存在下,GHRH诱导的植物营养体在体外合成/修复DNA的能力得以维持。在LTMCR修饰的GHRH-R激素和代谢调节剂中,葡萄糖,游离脂肪酸和糖皮质激素代表了有希望的候选药物,可用于未来的研究。更好地了解它们调节垂体GHRH-R的分子和细胞机制,应有助于确定通过较少要求的干预来模仿LTMCR的有益作用的策略。

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