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MicroRNA与神经系统重大疾病 被引量:9
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作者 汪进业 蔡荣 罗本燕 《生物化学与生物物理进展》 SCIE CAS CSCD 北大核心 2009年第1期25-32,共8页
目前有研究证实microRNA参与了神经系统生长发育和生理功能的调控,它也与可塑性障碍性疾病、神经系统退行性疾病、神经系统肿瘤、脑血管疾病等重大疾病的发生发展相关.随着microRNA研究领域的发展,一些重大神经系统疾病的相关发病机制... 目前有研究证实microRNA参与了神经系统生长发育和生理功能的调控,它也与可塑性障碍性疾病、神经系统退行性疾病、神经系统肿瘤、脑血管疾病等重大疾病的发生发展相关.随着microRNA研究领域的发展,一些重大神经系统疾病的相关发病机制将有可能被阐释. 展开更多
关键词 MICRORNA 神经系统生长发育 神经系统重大疾病
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Roles of intracellular fibroblast growth factors in neural development and functions 被引量:5
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作者 ZHANG Xu BAO Lan +2 位作者 YANG Liu WU QingFeng LI Shuai 《Science China(Life Sciences)》 SCIE CAS 2012年第12期1038-1044,共7页
Fibroblast growth factors (FGFs) can be classified as secretory (FGFI-10 and FGF15-23) or intracellular non-secretory forms (FGF 11-14). Secretory forms of FGF and their receptors are best known for their regulatory r... Fibroblast growth factors (FGFs) can be classified as secretory (FGFI-10 and FGF15-23) or intracellular non-secretory forms (FGF 11-14). Secretory forms of FGF and their receptors are best known for their regulatory roles in cell growth, differentiation and morphogenesis in the early stages of neural development. However, the functions of intracellular FGFs remain to be ex- plored. FGF12 and FGF14 are found to interact with voltage-gated sodium channels, and regulate the channel activity in neu- rons. FGF13 is expressed in primary sensory neurons, and is colocalized with sodium channels at the nodes of Ranvier along the myelinated afferent fibers. FGF13 is also expressed in cerebral cortical neurons during the late developmental stage. A re- cent study showed that FGFI3 is a microtubule-stabilizing protein required for regulating the neuronal development in the cerebral cortex. Thus, non-secretory forms of FGF appear to have important roles in the brain, and it would be interesting to further investigate the functions of intracellular FGFs in the nervous system and in neural diseases. 展开更多
关键词 fibroblast growth factors nervous system DEVELOPMENT MICROTUBULE ion channel X-linked mental retardation
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