Sakamoto Naoya, Honma Ririno, Sekino Yohei, Goto Keisuke, Sentani Kazuhiro, Ishikawa Akira, Oue Naohide, Yasui Wataru
Department of Molecular Pathology, Institute of Biomedical and Health Sciences, Hiroshima University, Hiroshima, Japan.
Cancer Biology Program, University of Hawaii Cancer Center, United States.
Noncoding RNA Res. 2017 May 22;2(2):83-87. doi: 10.1016/j.ncrna.2017.05.002. eCollection 2017 Jun.
The term "non-coding RNA" (ncRNA) is generally used to indicate RNA that does not encode a protein and includes several classes of RNAs, such as microRNA and long non-coding RNA. Several lines of evidence suggest that ncRNAs appear to be involved in a hidden layer of biological procedures that control various levels of gene expression in physiology and development including stem cell biology. Stem cells have recently constituted a revolution in regenerative medicine by providing the possibility of generating suitable cell types for therapeutic use. Here, we review the recent progress that has been made in elaborating the interaction between ncRNAs and tissue/cancer stem cells, discuss related technical and biological challenges, and highlight plausible solutions to surmount these difficulties. This review particularly emphasises the involvement of ncRNAs in stem cell biology and modulation to treat and cure specific pathological disorders especially in cancer. We believe that a better understanding of the molecular machinery of ncRNAs as related to pluripotency, cellular reprogramming, and lineage-specific differentiation is essential for progress of cancer therapy.
术语“非编码RNA”(ncRNA)通常用于指代不编码蛋白质的RNA,它包括几类RNA,如微小RNA和长链非编码RNA。多项证据表明,ncRNA似乎参与了生物过程的一个隐藏层面,该层面控制着生理和发育过程中包括干细胞生物学在内的各种基因表达水平。干细胞最近为再生医学带来了一场革命,因为它提供了产生适合治疗用途的细胞类型的可能性。在此,我们综述了在阐述ncRNA与组织/癌症干细胞之间相互作用方面取得的最新进展,讨论了相关的技术和生物学挑战,并强调了克服这些困难的可行解决方案。本综述特别强调了ncRNA在干细胞生物学中的作用以及为治疗和治愈特定病理疾病(尤其是癌症)所进行的调控。我们认为,深入了解与多能性、细胞重编程和谱系特异性分化相关的ncRNA分子机制对于癌症治疗的进展至关重要。