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Programmed cell death during postnatal development of the rodent nervous system

Authors
Kim, Woon RyoungSun, Woong
Issue Date
2월-2011
Publisher
WILEY
Keywords
adult neurogenesis; cell death; dentate gyrus; olfactory bulb; postnatal development
Citation
DEVELOPMENT GROWTH & DIFFERENTIATION, v.53, no.2, pp.225 - 235
Indexed
SCIE
SCOPUS
Journal Title
DEVELOPMENT GROWTH & DIFFERENTIATION
Volume
53
Number
2
Start Page
225
End Page
235
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/113131
DOI
10.1111/j.1440-169X.2010.01226.x
ISSN
0012-1592
Abstract
During development, elimination of excess cells through programmed cell death (PCD) is essential for the establishment and maintenance of the nervous system. In many brain regions, development and major histogenesis continue beyond postnatal stages, and therefore, signs of neurogenesis and PCD are frequently observed in these postnatal brain regions. Furthermore, some brain regions maintain neurogenic potential throughout life, and continuous genesis and PCD play critical roles in sculpting these adult neural circuits. Although similar regulatory mechanisms that control PCD during development appear to also control PCD in the adult brain, adult-generated neurons must integrate into mature neural circuits for their survival. This novel requirement appears to result in unique features of PCD in the adult brain. In this article, we summarize recent findings related to PCD in the early postnatal and adult brain in rodents.
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