首页   按字顺浏览 期刊浏览 卷期浏览 Electrophysiologic and molecular properties of cultured enteric glia
Electrophysiologic and molecular properties of cultured enteric glia

 

作者: D. L. Broussardy,   P. G. C. Bannerman,   C.‐M. Tang,   M. Hardy,   D. Pleasure,  

 

期刊: Journal of Neuroscience Research  (WILEY Available online 1993)
卷期: Volume 34, issue 1  

页码: 24-31

 

ISSN:0360-4012

 

年代: 1993

 

DOI:10.1002/jnr.490340104

 

出版商: Wiley Subscription Services, Inc., A Wiley Company

 

关键词: potassium channels;sodium channels;fibroblast growth factor;cyclic AMP;glutamine synthetase

 

数据来源: WILEY

 

摘要:

AbstractEnteric glia, the support cells of myenteric ganglia, have been widely studied with respect to their morphology and immunohistochemical phenotype, but little is known about their functional properties. We developed a method for the amplification of enteric glia from newborn guinea pigs to further characterize these cells. Treatment with a combination of basic fibroblast growth factor and the adenylate cyclase activator, cholera toxin, permitted expansion of enteric glial cultures to confluence and serial passage for up to 8 months. The long‐term cultured cells retained expression of (1) S100 protein, (2) GD3 ganglioside recognized by the monoclonal antibody LB1, and (3) the gene encoding glutamine synthetase. The electrophysiologic properties of cultured enteric glia were studied under whole‐cell patch clamp conditions. Most cells expressed “delayed rectifier”‐type potassium currents, and some also demonstrated tetrodotoxin‐sensitive sodium currents. Other subsets of voltage‐dependent potassium currents, calcium currents, and glutamate‐gated currents were not demonstrable. © 1993

 

点击下载:  PDF (826KB)



返 回