Yi Min, Li Hekai, Wang Xiaoya, Yan Jianyun, Gao Long, He Yinyan, Zhong Xinglong, Cai Yanbin, Feng Weijing, Wen Zhanpeng, Wu Chengtie, Ou Caiwen, Chang Jiang, Chen Minsheng
Department of Cardiology Heart Center Zhujiang Hospital Southern Medical University Guangzhou Guangdong 510280 China.
State Key Laboratory of High Performance Ceramics and Superfine Microstructure Shanghai Institute of Ceramics Chinese Academy of Sciences 1295 Dingxi Road Shanghai 200050 China.
Adv Sci (Weinh). 2018 Nov 8;6(1):1801260. doi: 10.1002/advs.201801260. eCollection 2019 Jan 9.
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.
尽管多种疗法在临床上广泛应用,基于干细胞和/或生物材料的原位植入也取得了一定效果,但很少能观察到强大的心肌再生。对心脏功能和结构的有益作用主要通过旁分泌信号发挥,该信号可保护梗死周围的边缘区、减少细胞凋亡、抑制不良重塑并促进血管生成。生物材料的离子提取物已被证明可刺激旁分泌作用并促进细胞间通讯。在此,将生物材料衍生的生物活性离子的旁分泌刺激功能整合到给药的临床概念中,并提出“离子疗法”作为心肌梗死的一种新策略。在体外,富含硅的离子提取物可显著提高心肌细胞活力并促进细胞间通讯,从而在葡萄糖/氧气缺乏条件下通过旁分泌作用刺激血管形成。在体内,通过静脉注射,生物活性硅离子充当“外交官”,促进心肌细胞间的相互作用,刺激血管生成,并改善心肌梗死后的心脏功能。