Parker C R, Griffin W S, Porter J C
J Clin Endocrinol Metab. 1981 Dec;53(6):1233-7. doi: 10.1210/jcem-53-6-1233.
Immunoreactive TRH was quantified in eight regions of the cerebellum as well as in the medulla, pons, and hypothalamus of the fetal and adult human brain. High levels of TRH were detected in the fetal cerebellum, ranging from 216 +/- 103 pg/mg protein (mean +/- SD) in the deep cerebellar nuclei to 591 +/- 153 pg/mg protein in the anterior vermis. The concentrations of TRH were significantly greater (P less than 0.001) in each of the eight regions of the cerebellum of the fetal brain than in the corresponding regions of the adult brain. The magnitude of the difference between adult and fetal cerebellar levels ranged from an 18-fold difference in the deep cerebellar nuclei to more than a 100-fold difference in the anterior hemisphere. However, the TRH levels in pons and medulla were similar among fetuses and adults, and the TRH concentration in the adult hypothalamus was significantly higher (P less than 0.01) than that in the fetal hypothalamus. The TRH levels in adult rat hypothalami were extremely stable for several hours post mortem. We, therefore, conclude that the differences in cerebellar TRH concentrations of the fetal compared to those of the adult human are not related to a difference in the extent of postmortem degradation of TRH. Rather, we postulate that the decline in cerebellar TRH during maturation is a normal developmental process, and speculate that TRH, which has been found to have diverse effects on the central nervous system, may also influence the development of the human cerebellum.
在胎儿和成人的大脑中,对小脑的八个区域以及延髓、脑桥和下丘脑的免疫反应性促甲状腺激素释放激素(TRH)进行了定量分析。在胎儿小脑中检测到高水平的TRH,范围从深层小脑核中的216±103 pg/mg蛋白质(平均值±标准差)到小脑蚓部前部的591±153 pg/mg蛋白质。胎儿脑小脑的八个区域中每个区域的TRH浓度均显著高于成人大脑相应区域(P<0.001)。成人与胎儿小脑水平之间的差异幅度从深层小脑核中的18倍差异到前半球中的100倍以上差异不等。然而,胎儿和成人脑桥和延髓中的TRH水平相似,而成人下丘脑的TRH浓度显著高于胎儿下丘脑(P<0.01)。成年大鼠下丘脑的TRH水平在死后数小时内极其稳定。因此,我们得出结论,胎儿与成人小脑TRH浓度的差异与TRH死后降解程度的差异无关。相反,我们推测小脑TRH在成熟过程中的下降是一个正常的发育过程,并推测已发现对中枢神经系统有多种作用的TRH也可能影响人类小脑的发育。