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衰老大鼠中生长激素对生长激素释放因子反应性的动力学:外周和中枢影响

Dynamics of growth hormone responsiveness to growth hormone releasing factor in aging rats: peripheral and central influences.

作者信息

Deslauriers N, Gaudreau P, Abribat T, Renier G, Petitclerc D, Brazeau P

机构信息

Neuroendocrinology Laboratory, Notre-Dame Hospital Research Center, Montreal, Canada.

出版信息

Neuroendocrinology. 1991 May;53(5):439-46. doi: 10.1159/000125755.

DOI:10.1159/000125755
PMID:1678494
Abstract

The in vivo and in vitro dynamics of somatotroph responsiveness to rGRF (1-29) NH2 (rat growth hormone releasing factor) were evaluated in 2-, 4-, 8-, 12-, and 20-month-old male rats. In vivo, using pentobarbital-anesthetized animals, we observed that the rGH (rat growth hormone) responsiveness to 0.4 and 1.6 micrograms/kg rGRF started to decline at the higher dose in 12-month-old rats and was completely blunted at both rGRF doses in 20-month-old animals. In vitro, using freshly dispersed perifused pituitary cells, we also documented a decrease of rGRF-induced rGH secretion in 12- and 20-month-old rats. Moreover, as the animals aged, the rGRF-induced rGH secretion was differentially affected by the inhibiting action of somatostatin (p less than 0.001), suggesting a loss of pituitary sensitivity to somatostatin in the presence of a high concentration of rGRF. The pituitary rGH content increased until rats reached 12 months of age, but was diminished in 20-month-old rats. In contrast, the pituitary somatostatin content increased twofold in 20-month-old rats as compared with younger rats. The hypothalamic somatostatin content was highest in 8-month-old rats and only slightly diminished in 20-month-old animals. Finally, plasma insulin-like growth factor I concentrations were highest in 8-month-old rats and lowest in 20-month-old animals. Altogether, these results indicate that the physiological loss of somatotroph responsiveness associated with the process of aging starts around 12 months of age.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在2、4、8、12和20月龄雄性大鼠中评估了生长激素细胞对rGRF(1-29)NH2(大鼠生长激素释放因子)的体内和体外反应动力学。在体内,使用戊巴比妥麻醉的动物,我们观察到12月龄大鼠对0.4和1.6微克/千克rGRF的rGH(大鼠生长激素)反应在较高剂量时开始下降,而在20月龄动物中,两种rGRF剂量下的反应均完全减弱。在体外,使用新鲜分散的灌流垂体细胞,我们还记录到12和20月龄大鼠中rGRF诱导的rGH分泌减少。此外,随着动物年龄增长,rGRF诱导的rGH分泌受到生长抑素抑制作用的不同影响(p<0.001),这表明在高浓度rGRF存在的情况下,垂体对生长抑素的敏感性丧失。垂体rGH含量在大鼠达到12月龄之前增加,但在20月龄大鼠中减少。相反,与年轻大鼠相比,20月龄大鼠的垂体生长抑素含量增加了两倍。下丘脑生长抑素含量在8月龄大鼠中最高,在20月龄动物中仅略有减少。最后,血浆胰岛素样生长因子I浓度在8月龄大鼠中最高,在20月龄动物中最低。总之,这些结果表明,与衰老过程相关的生长激素细胞反应性的生理丧失在12月龄左右开始。(摘要截断于250字)

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