Açiksari Ayşegül, Duruksu Gökhan, Karaöz Erdal
Center for Stem Cell and Gene Therapies Research and Practice, Kocaeli University , İzmit, Kocaeli , Turkey.
Department of Stem Cell, Institute of Health Sciences, Kocaeli University , İzmit, Kocaeli , Turkey.
Turk J Biol. 2017 Dec 18;41(6):979-991. doi: 10.3906/biy-1707-79. eCollection 2017.
For long-term treatment of diabetes type 1, transplantation of insulin-producing beta cells may be a promising method, but the limited number of islets for transplantation requires the development of different approaches. In this study, we aimed to generate betalike insulin-producing cells. For this purpose, MafA, Pax4, and Ngn3 genes were transferred into pancreatic islet-derived mesenchymal stem cells, and the effect of their ectopic expressions on differentiation efficiency was examined. Stemness properties of pancreatic islet stem cells were characterized. The 3 genes were transfected by electroporation and expressed constitutively. The transfected cells were further stimulated to differentiate by using chemical induction. Pax4 expression had significant effects on differentiation into insulin-producing cells. Although it caused morphological alterations in cells, similar to epithelial cells, the insulin secretion levels remained lower than those of the cell line cotransfected with MafA and Pax4. Cotransfection of the 3 transcription factors did not further improve the beta-like cell generation. MafA and Pax4 ectopic expression resulted in improved differentiation efficiency into insulin-secreting cells. However, support of this differentiation process using additional chemical induction may sufice to overcome control by endogenous regulatory pathways.
对于1型糖尿病的长期治疗,移植产生胰岛素的β细胞可能是一种有前景的方法,但可用于移植的胰岛数量有限,需要开发不同的方法。在本研究中,我们旨在生成类似β细胞的产生胰岛素的细胞。为此,将MafA、Pax4和Ngn3基因转入胰岛来源的间充质干细胞,并检测它们的异位表达对分化效率的影响。对胰岛干细胞的干性特性进行了表征。通过电穿孔转染这3个基因并使其组成性表达。使用化学诱导进一步刺激转染的细胞分化。Pax4表达对分化为产生胰岛素的细胞有显著影响。尽管它导致细胞形态发生改变,类似于上皮细胞,但胰岛素分泌水平仍低于与MafA和Pax4共转染的细胞系。这3种转录因子的共转染并没有进一步提高类β细胞的生成。MafA和Pax4的异位表达导致分化为胰岛素分泌细胞的效率提高。然而,使用额外的化学诱导来支持这种分化过程可能足以克服内源性调节途径的控制。