旁分泌信号
血管生成
心肌梗塞
串扰
医学
再生(生物学)
体内
细胞疗法
药理学
细胞生物学
干细胞疗法
内科学
干细胞
癌症研究
生物
移植
受体
生物技术
物理
光学
作者
Min Yi,Hekai Li,Sheng Wang,Jianyun Yan,Long Gao,Y N He,Xinglong Zhong,Yanbin Cai,Weijing Feng,Zhanpeng Wen,Chengtie Wu,Caiwen Ou,Jiang Chang,Minsheng Chen
标识
DOI:10.1002/advs.201801260
摘要
Abstract Although numerous therapies are widely applied clinically and stem cells and/or biomaterial based in situ implantations have achieved some effects, few of these have observed robust myocardial regeneration. The beneficial effects on cardiac function and structure are largely acting through paracrine signaling, which preserve the border‐zone around the infarction, reduce apoptosis, blunt adverse remodeling, and promote angiogenesis. Ionic extracts from biomaterials have been proven to stimulate paracrine effects and promote cell–cell communications. Here, the paracrine stimulatory function of bioactive ions derived from biomaterials is integrated into the clinical concept of administration and proposed “ion therapy” as a novel strategy for myocardial infarction. In vitro, silicon‐ enriched ion extracts significantly increase cardiomyocyte viability and promote cell–cell communications, thus stimulating vascular formation via a paracrine effect under glucose/oxygen deprived conditions. In vivo, by intravenous injection, the bioactive silicon ions act as “diplomats” and promote crosstalk in myocardial cells, stimulate angiogenesis, and improve cardiac function post‐myocardial infarction.
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