. ^& P% m& y0 V y! @% V在移植实验中,研究人员将提纯后的浦肯雅细胞的祖细胞,移植入小鼠胚胎的小脑中,移植细胞顺利“扎根”在小脑的浦肯雅细胞层中,并正确融入小脑回路。 3 M* F' S" q, w- R. M/ `. W. D , q8 b3 }2 m7 ]( v& T( ?5 l7 \公报说,脊髓小脑变性症是小脑神经细胞因逐渐萎缩、死亡而数量减少导致的疾病,这项成果为此类疾病的病理研究和开发新疗法提供了新途径。5 J2 @+ S7 e( x1 h+ L& b
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生物谷推荐英文摘要: - l0 Y) y) J* |, H' z* f! J/ R) b/ U' m- `/ x7 @8 l. [& X
Nature Neuroscience doi:10.1038/nn.2638 - K/ P6 n$ S$ |& w# R# t4 ~1 A' d3 W+ Y" ?- V
Ontogeny-recapitulating generation and tissue integration of ES cell–derived Purkinje cells2 P+ v5 d: X6 o' E7 X9 M
Keiko Muguruma,Ayaka Nishiyama,Yuichi Ono,Hiroyuki Miyawaki,Eri Mizuhara,Seiji Hori,Akira Kakizuka,Kunihiko Obata,Yuchio Yanagawa,Tomoo Hirano& Yoshiki Sasai+ s3 D& C, u2 ~: }2 S" j
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Purkinje cells are the sole output neurons of the cerebellar cortex and their dysfunction causes severe ataxia. We found that Purkinje cells could be robustly generated from mouse embryonic stem (ES) cells by recapitulating the self-inductive signaling microenvironments of the isthmic organizer. The cell-surface marker Neph3 enabled us to carry out timed prospective selection of Purkinje cell progenitors, which generated morphologically characteristic neurons with highly arborized dendrites that expressed mature Purkinje cell–specific markers such as the glutamate receptor subunit GluRδ2. Similar to mature Purkinje cells, these neurons also showed characteristic spontaneous and repeated action potentials and their postsynaptic excitatory potentials were generated exclusively through nonNMDA glutamate receptors. Fetal transplantation of precursors isolated by fluorescence-activated cell sorting showed orthotopic integration of the grafted neurons into the Purkinje cell layer with their axons extending to the deep cerebellar nuclei and dendrites receiving climbing and parallel fibers. This selective preparation of bona fide Purkinje cells should aid future investigation of this important neuron. D/ O c* Q& k9 A: _; G! j0 v * _' F" i8 ^1 {* S0 x2楼原文 感谢张也行提供作者: 张也行 时间: 2010-9-19 02:11