Literature DB >> 11259380

Endothelin-1 protects astrocytes from hypoxic/ischemic injury.

M C Ho1, A C Lo, H Kurihara, A C Yu, S S Chung, S K Chung.   

Abstract

Under pathological conditions such as ischemia (I), subarachnoid hemorrhage, and Alzheimer's disease, astrocytes show a large increase in endothelin (ET) -like immunoreactivity. However, it is not clear whether ET is protective or destructive to these cells during brain injury. Using astrocytes from ET-1-deficient mice, we determined the effect of ET-1 on these cells under normal, hypoxic (H), and hypoxic/ischemic (H/I) conditions. Under normal culture conditions, astrocytes from wild-type and ET-1-deficient mice showed no difference in their morphology and cell proliferation rates. ET-3 and ETA receptor mRNAs were up-regulated whereas ETB receptor mRNA was down-regulated in ET-1-deficient astrocytes, suggesting that ET-1 and ET-3 may complement each other's functions and that the expressions of these endothelins and their receptors are regulated by a complex feedback mechanism. Under H and H/I conditions, ET-1 peptide and mRNA were up-regulated in wild-type astrocytes, and the astrocytes without ET-1 died faster than the wild-type astrocytes, as indicated by greater efflux of lactate dehydrogenase. The present study suggests that astrocytes without ET-1 are more vulnerable to H and H/I injuries and that the up-regulation of astrocytic ET-1 is essential for the survival of astrocytes.

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Year:  2001        PMID: 11259380     DOI: 10.1096/fj.99-1022com

Source DB:  PubMed          Journal:  FASEB J        ISSN: 0892-6638            Impact factor:   5.191


  14 in total

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Authors:  Victor K L Hung; Patrick K K Yeung; Angela K W Lai; Maggie C Y Ho; Amy C Y Lo; Kevin C Chan; Ed X K Wu; Stephen S M Chung; Chi W Cheung; Sookja K Chung
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9.  Changes of ATP and ADP in cultured astrocytes under and after in vitro ischemia.

Authors:  Albert Cheung Hoi Yu; Anson Ming Fung Lau; Ada Wing Yu Fu; Lok Ting Lau; Philip Yeung Lam; Xiao Qian Chen; Zhen Yu Xu
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10.  Selective over-expression of endothelin-1 in endothelial cells exacerbates inner retinal edema and neuronal death in ischemic retina.

Authors:  Simon S F Cheung; Justin W C Leung; Amy K M Lam; Karen S L Lam; Stephen S M Chung; Amy C Y Lo; Sookja K Chung
Journal:  PLoS One       Date:  2011-10-28       Impact factor: 3.240

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