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用于研究神经内分泌控制机制的下丘脑细胞系。

Hypothalamic cell lines to investigate neuroendocrine control mechanisms.

作者信息

Mayer Christopher M, Fick Laura J, Gingerich Sarah, Belsham Denise D

机构信息

Department of Physiology, University of Toronto, Toronto, ON, Canada M5S1A8.

出版信息

Front Neuroendocrinol. 2009 Aug;30(3):405-23. doi: 10.1016/j.yfrne.2009.03.005. Epub 2009 Mar 31.

Abstract

The hypothalamus is the control center for most physiological processes; yet has been difficult to study due to the inherent heterogeneity of this brain region. For this reason, researchers have turned towards cell models. Primary hypothalamic cultures are difficult to maintain, are heterogeneous neuronal and glial cell populations and often contain a minimal number of viable peptide-secreting neurons. In contrast, immortalized, clonal cell lines represent an unlimited, homogeneous population of neurons that can be manipulated using a number of elegant molecular techniques. Cell line studies and in vivo experimentation are complementary and together provide a powerful tool to drive scientific discovery. This review focuses on three key neuroendocrine systems: energy homeostasis, reproduction, and circadian rhythms; and the use of hypothalamic cell lines to dissect the complex pathways utilized by individual neurons in these systems.

摘要

下丘脑是大多数生理过程的控制中心;然而,由于该脑区固有的异质性,对其进行研究一直很困难。因此,研究人员转向了细胞模型。原代下丘脑培养物难以维持,是异质性的神经元和胶质细胞群体,并且通常含有极少量有活力的肽分泌神经元。相比之下,永生化的克隆细胞系代表了无限的、同质的神经元群体,可以使用多种精密的分子技术进行操作。细胞系研究和体内实验是互补的,共同提供了一个推动科学发现的强大工具。本综述重点关注三个关键的神经内分泌系统:能量平衡、生殖和昼夜节律;以及利用下丘脑细胞系剖析这些系统中单个神经元所利用的复杂途径。

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