Department of Agricultural Biotechnology; Seoul National University; Seoul, Korea; WCU Biomodulation Program; Seoul National University; Seoul, Korea.
Department of Marine Biomaterials and Aquaculture; Pukyong National University; Busan, Korea.
Organogenesis. 2013 Oct 1;9(4):245-8. doi: 10.4161/org.26202. Epub 2013 Sep 12.
Development of induced pluripotent stem cell (iPSC) technology introduced a novel way to derive pluripotent stem cells, but the genetic manipulation required to generate iPSCs may lead to uncontrolled tumorigenesis of the established cells and thus limit clinical feasibility of the technology. Numerous attempts have been made to date, and alternative reprogramming of somatic cells to reactivate cellular plasticity after differentiation has been suggested. As a result, it had become clear that cell-to-cell interactions and specific acellular environments can be utilized for somatic cell reprogramming. In our previous studies, embryonic stem cell (ESC)-like cells could be derived from transforming ovarian cells and fetal fibroblasts by cell-to-cell interaction or specific cell-mediated microenvironmental factor(s). This cellular event was induced without undertaking genetic manipulation of progenitor cells. Several differences were found between the cellular properties of niche-induced, ESC-like cells and those of genetically manipulated iPSCs and the referenced ESCs. Thus, we provided evidence that terminally differentiated somatic cells either acquire pluripotency-like activity or possess cellular and genetic plasticity under a specific microenvironment and/or cell-to-cell interaction. In this minireview, we discuss derivation of stem cell-like cells under specific microenvironmental conditions in terms of technical perspectives and limitations.
诱导多能干细胞(iPSC)技术的发展为获得多能干细胞提供了一种新方法,但是生成 iPSC 所需的遗传操作可能导致已建立的细胞不受控制的肿瘤发生,从而限制了该技术的临床可行性。迄今为止已经进行了许多尝试,并且已经提出了替代性的体细胞重编程方法,以在分化后重新激活细胞的可塑性。因此,人们已经清楚地认识到细胞间相互作用和特定的无细胞环境可用于体细胞重编程。在我们之前的研究中,通过细胞间相互作用或特定的细胞介导的微环境因子,可以从转化的卵巢细胞和胎儿成纤维细胞中获得类似于胚胎干细胞(ESC)的细胞。该细胞事件是在不对祖细胞进行遗传操作的情况下诱导的。在生态位诱导的、类似于 ESC 的细胞的细胞特性与遗传操作的 iPSC 和参考的 ESC 之间发现了几个差异。因此,我们提供了证据表明,终末分化的体细胞在特定的微环境和/或细胞间相互作用下获得类似多能性的活性或具有细胞和遗传可塑性。在这篇简评中,我们从技术角度和局限性方面讨论了在特定微环境条件下干细胞样细胞的衍生。