Schwartz J P, Taniwaki T
Molecular Genetics Section, National Institute of Neurological Disorders and Stroke (NINDS), National Institutes of Health, Bethesda, Maryland 20892.
Perspect Dev Neurobiol. 1994;2(3):251-7.
A specific subset of neuropeptides are expressed in astrocytes, with specificity in terms of both brain region and gene, as well as with specific developmental patterns: the overall pattern of expression is thus heterogeneous. These neuropeptides have been demonstrated to have a number of trophic effects, including regulation of cell number, of length of axons and dendrites, and of neuronal phenotype. The developmental regulation of expression of neuropeptides in astrocytes further supports functional roles for the neuropeptides as trophic modeling factors. Not all the trophic effects have to be stimulatory and evidence suggests that opioid peptides may function to prune dendrites or decrease cell numbers in order to modulate or shape the nervous system. In addition to roles during development, preliminary experiments suggest that astrocyte neuropeptide expression turns back on in the adult brain following injury, suggesting that the neuropeptides may play a role in supporting survival or recovery of damaged neurons. The heterogeneity of neuropeptide expression in astrocytes must therefore contribute to the establishment and maintenance of the network of communication among neurons and glia in the nervous system in ways we have yet to understand fully.
一类特定的神经肽在星形胶质细胞中表达,在脑区和基因方面都具有特异性,并且具有特定的发育模式:因此,整体表达模式是异质性的。这些神经肽已被证明具有多种营养作用,包括调节细胞数量、轴突和树突的长度以及神经元表型。星形胶质细胞中神经肽表达的发育调节进一步支持了神经肽作为营养塑造因子的功能作用。并非所有的营养作用都是刺激性的,有证据表明阿片肽可能起到修剪树突或减少细胞数量的作用,以调节或塑造神经系统。除了在发育过程中的作用外,初步实验表明,成年大脑受伤后星形胶质细胞神经肽表达会恢复,这表明神经肽可能在支持受损神经元的存活或恢复中发挥作用。因此,星形胶质细胞中神经肽表达的异质性必定以我们尚未完全理解的方式,对神经系统中神经元和神经胶质细胞之间的通讯网络的建立和维持做出贡献。