Zhou Chen, Gu Hongfeng, Fan Rong, Wang Bei, Lou Jueren
Shanghai Institute of Biological Products Co. Ltd., Research and Development Department, Shanghai, People's Republic of China .
Stem Cells Dev. 2015 Dec 1;24(23):2746-55. doi: 10.1089/scd.2015.0123. Epub 2015 Oct 1.
Recent studies suggest that mature somatic cells can be reprogrammed to become induced pluripotent stem cells by overexpressing specific transcription factors or microRNAs (miRNAs). Theoretically, this technique could provide a wide array of cells for therapeutics. However, the process of redifferentiation after cell reprogramming to pluripotency is inefficient and time restricted. We proposed that the differentiation of somatic cells into specific cells of another germ layer can be induced and accelerated with appropriate miRNAs and culture conditions. In human fibroblasts, we found that overexpression of pluripotency stem cell-specific miRNA-302/367 cluster, together with two other neuron-specific miRNAs (miRNA-9/9* and miRNA-124) induced fibroblasts conversion into neurons. The cells assumed neuron morphology, were positive for several neuron markers, and exhibited neuronal membrane potential feature. Moreover, concentrated expression of synaptic markers were observed in these cells in vitro and in vivo in nude mice brain, suggesting possible connectivity. To achieve efficient reprogramming, miRNA-302/367 cluster, miRNA-9/9*, and miRNA-124 were all required. The combination of the proved pluripotency-inducing miRNA-302/367 cluster and cell-specific miRNAs provides a unique strategy for one-step cellular conversion that could have important implications for studies of neuron development and neurological disease therapy.
近期研究表明,通过过表达特定转录因子或微小RNA(miRNA),成熟体细胞可被重编程为诱导多能干细胞。从理论上讲,这项技术可为治疗提供大量细胞。然而,细胞重编程为多能性后再分化的过程效率低下且受时间限制。我们提出,利用合适的miRNA和培养条件可诱导并加速体细胞分化为另一胚层的特定细胞。在人成纤维细胞中,我们发现多能干细胞特异性miRNA - 302/367簇与另外两种神经元特异性miRNA(miRNA - 9/9和miRNA - 124)的过表达可诱导成纤维细胞转化为神经元。这些细胞呈现出神经元形态,多种神经元标志物呈阳性,并表现出神经元膜电位特征。此外,在体外以及裸鼠脑内均观察到这些细胞中突触标志物的集中表达,表明可能存在连接性。为实现高效重编程,miRNA - 302/367簇、miRNA - 9/9以及miRNA - 124均不可或缺。已证实的诱导多能性的miRNA - 302/367簇与细胞特异性miRNA的组合为一步细胞转化提供了独特策略,这可能对神经元发育研究和神经疾病治疗具有重要意义。