核苷
安普克
化学
心力衰竭
生物活性
立体中心
药理学
心脏功能不全
核苷类似物
内科学
癌症研究
前药
心脏病学
体内
结构-活动关系
甲酰胺
内分泌学
心源性猝死
细胞生物学
作者
Abir Almazloum,Wael Maharsy,Starr Dostie,Fabiola Becerril-Jiménez,Carla Eymard,Hiba Komati,Louis Leblanc,Amarender Manchoju,Philippe Mochirian,Renaud Zelli,Michel Prévost,Mona Nemer,Yvan Guindon
标识
DOI:10.1021/acs.jmedchem.5c01999
摘要
Heart failure (HF) is a significant global health burden with a high mortality rate and no curative or preventative treatment. Many factors can contribute to HF development, including hemodynamic factors and chemotherapy-induced cardiotoxicity. Loss of cardiomyocytes triggers cardiac remodeling and HF, suggesting that strategies aimed at preserving cardiomyocyte survival could provide therapeutic benefits. Here, we describe the biological activity of an adenosine-like nucleoside analogue bearing an all-carbon stereogenic quaternary center that induces a conformational bias to enhance both activity and selectivity. The lead compound, LCB-2122, prevents cardiomyocyte death both in vitro and in vivo in an animal model of acute chemotherapy-induced HF. This protective effect against chemotherapy-induced cardiomyocyte loss is linked to AMPK activation and is abrogated by siRNA-mediated reduction of AMPK expression. The results suggest that targeting cardiomyocyte survival with conformationally biased nucleoside analogues may offer a promising avenue for preventing cardiac dysfunction and the progression of HF.
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