Feng Yuliang, Yu Xi-Yong, Wang Yigang
Am J Cardiovasc Dis. 2012;2(1):75-83. Epub 2011 Dec 15.
Progenitor/stem cell (PSC) has shown great promise for generation in failing heart. Advances in PSC biology have greatly enhanced our understanding of how PSC self-renewal, migration, maintenance of stemness, and cell-fate commitment depend on the balance of complex signals in their microenvironment. Endogenous PSC exists within structural and functional units known as PSC niches, which play important roles in directing PSC behavior. Recent years have witnessed great progress in our understanding of the PSC niche in cardiovascular biology. PSC based therapy could lead to successful cardiac regeneration or repair. Realizing the potential of therapeutic strategies is based on 1) differentiation of the PSC into all of the cellular constituents of the heart; 2) release of paracrine/ autocrine factors from the PSC; 3) fusion of the PSC with the existing constituents of the heart; and 4) stimulation of endogenous repair (regeneration of PSC niches). Importantly, cardiac PSC niches contain supporting cells and these cell-cell interactions have crucial regulatory roles in PSC based therapy. These findings have important implications for heart development, bioengineering, and furthermore elucidate a broader dimension of PSC control within the niche toward cardiomyocyte phenotype.
祖细胞/干细胞(PSC)在衰竭心脏的生成方面已显示出巨大潜力。PSC生物学的进展极大地增进了我们对PSC自我更新、迁移、干性维持以及细胞命运决定如何依赖其微环境中复杂信号平衡的理解。内源性PSC存在于被称为PSC生态位的结构和功能单元内,这些生态位在指导PSC行为方面发挥着重要作用。近年来,我们对心血管生物学中PSC生态位的理解取得了巨大进展。基于PSC的治疗可能导致成功的心脏再生或修复。实现治疗策略的潜力基于以下几点:1)PSC分化为心脏的所有细胞成分;2)PSC释放旁分泌/自分泌因子;3)PSC与心脏的现有成分融合;4)刺激内源性修复(PSC生态位的再生)。重要的是,心脏PSC生态位包含支持细胞,这些细胞间相互作用在基于PSC的治疗中具有关键的调节作用。这些发现对心脏发育、生物工程具有重要意义,并且进一步阐明了生态位内PSC向心肌细胞表型控制的更广泛维度。