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AB178. Molecular biology for genitourinary system diseases and sexual dysfunction icariside II prevents high-glucose-induced injury on human cavernous endothelial cells through Akt-eNOS signaling pathway

OBJECTIVE: Dysfunction of human cavernous endothelial cells (HCECs) is a common pathological alteration caused by elevated high blood glucose levels associated with diabetes. To explore the protective effects of icariside II (ICA II) on HCECs, HCECs were isolated from non-diabetic human donors, cult...

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Autores principales: Li, Huixi, Xu, Yongde, Guan, Ruili, Lei, Hongen, Tian, Wenjie, Gao, Zhezhu, Xin, Zhongcheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AME Publishing Company 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4708743/
http://dx.doi.org/10.3978/j.issn.2223-4683.2015.s178
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author Li, Huixi
Xu, Yongde
Guan, Ruili
Lei, Hongen
Tian, Wenjie
Gao, Zhezhu
Xin, Zhongcheng
author_facet Li, Huixi
Xu, Yongde
Guan, Ruili
Lei, Hongen
Tian, Wenjie
Gao, Zhezhu
Xin, Zhongcheng
author_sort Li, Huixi
collection PubMed
description OBJECTIVE: Dysfunction of human cavernous endothelial cells (HCECs) is a common pathological alteration caused by elevated high blood glucose levels associated with diabetes. To explore the protective effects of icariside II (ICA II) on HCECs, HCECs were isolated from non-diabetic human donors, cultured under high glucose (HG) conditions and treated with ICAII. METHODS: The cell apoptosis and proliferation, expression of Ki67 and Erk1/2, antioxidant capacity, and expression of Akt and eNOS were examined. RESULTS: Changes in cell apoptosis and proliferation indicated that HG treatment inhibited HCEC proliferation with lower percentage of Ki67-positive cells and lower expression and phosphorylation of Erk1/2. Furthermore, the total antioxidant capacity (T-AOC) of HCECs was reduced under HG conditions. In line with these findings, both expression and phosphorylation of Akt as well as eNOS was down regulated after HG treatment. The reduction in proliferative capacity, p-Erk1/2, p-Akt, and p-eNOS were partially prevented by ICA II in a concentration-dependent manner. CONCLUSIONS: The protective effects of ICA II rescued HCEC from injury and dysfunction induced by HG in vitro. ICA II may be a candidate for prevention of the development of diabetic erectile dysfunction.
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spelling pubmed-47087432016-01-26 AB178. Molecular biology for genitourinary system diseases and sexual dysfunction icariside II prevents high-glucose-induced injury on human cavernous endothelial cells through Akt-eNOS signaling pathway Li, Huixi Xu, Yongde Guan, Ruili Lei, Hongen Tian, Wenjie Gao, Zhezhu Xin, Zhongcheng Transl Androl Urol Moderated Poster Presentation OBJECTIVE: Dysfunction of human cavernous endothelial cells (HCECs) is a common pathological alteration caused by elevated high blood glucose levels associated with diabetes. To explore the protective effects of icariside II (ICA II) on HCECs, HCECs were isolated from non-diabetic human donors, cultured under high glucose (HG) conditions and treated with ICAII. METHODS: The cell apoptosis and proliferation, expression of Ki67 and Erk1/2, antioxidant capacity, and expression of Akt and eNOS were examined. RESULTS: Changes in cell apoptosis and proliferation indicated that HG treatment inhibited HCEC proliferation with lower percentage of Ki67-positive cells and lower expression and phosphorylation of Erk1/2. Furthermore, the total antioxidant capacity (T-AOC) of HCECs was reduced under HG conditions. In line with these findings, both expression and phosphorylation of Akt as well as eNOS was down regulated after HG treatment. The reduction in proliferative capacity, p-Erk1/2, p-Akt, and p-eNOS were partially prevented by ICA II in a concentration-dependent manner. CONCLUSIONS: The protective effects of ICA II rescued HCEC from injury and dysfunction induced by HG in vitro. ICA II may be a candidate for prevention of the development of diabetic erectile dysfunction. AME Publishing Company 2015-08 /pmc/articles/PMC4708743/ http://dx.doi.org/10.3978/j.issn.2223-4683.2015.s178 Text en 2015 Translational Andrology and Urology. All rights reserved.
spellingShingle Moderated Poster Presentation
Li, Huixi
Xu, Yongde
Guan, Ruili
Lei, Hongen
Tian, Wenjie
Gao, Zhezhu
Xin, Zhongcheng
AB178. Molecular biology for genitourinary system diseases and sexual dysfunction icariside II prevents high-glucose-induced injury on human cavernous endothelial cells through Akt-eNOS signaling pathway
title AB178. Molecular biology for genitourinary system diseases and sexual dysfunction icariside II prevents high-glucose-induced injury on human cavernous endothelial cells through Akt-eNOS signaling pathway
title_full AB178. Molecular biology for genitourinary system diseases and sexual dysfunction icariside II prevents high-glucose-induced injury on human cavernous endothelial cells through Akt-eNOS signaling pathway
title_fullStr AB178. Molecular biology for genitourinary system diseases and sexual dysfunction icariside II prevents high-glucose-induced injury on human cavernous endothelial cells through Akt-eNOS signaling pathway
title_full_unstemmed AB178. Molecular biology for genitourinary system diseases and sexual dysfunction icariside II prevents high-glucose-induced injury on human cavernous endothelial cells through Akt-eNOS signaling pathway
title_short AB178. Molecular biology for genitourinary system diseases and sexual dysfunction icariside II prevents high-glucose-induced injury on human cavernous endothelial cells through Akt-eNOS signaling pathway
title_sort ab178. molecular biology for genitourinary system diseases and sexual dysfunction icariside ii prevents high-glucose-induced injury on human cavernous endothelial cells through akt-enos signaling pathway
topic Moderated Poster Presentation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4708743/
http://dx.doi.org/10.3978/j.issn.2223-4683.2015.s178
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