Satthenapalli Venkata R, Lamberts Regis R, Katare Rajesh G
Department of Physiology, School of Biomedical Sciences, HeartOtago, University of Otago, Dunedin, New Zealand.
Stem Cells. 2017 Sep;35(9):2009-2026. doi: 10.1002/stem.2661. Epub 2017 Jul 6.
Stem cell therapy is one of the promising regenerative strategies developed to improve cardiac function in patients with ischemic heart diseases (IHD). However, this approach is limited in IHD patients with diabetes due to a progressive decline in the regenerative capacity of stem cells. This decline is mainly attributed to the metabolic memory incurred by diabetes on stem cell niche and their systemic cues. Understanding the molecular pathways involved in the diabetes-induced deterioration of stem cell function will be critical for developing new cardiac regeneration therapies. In this review, we first discuss the most common molecular alterations occurring in the diabetic stem cells/progenitor cells. Next, we highlight the key signaling pathways that can be dysregulated in a diabetic environment and impair the mobilization of stem/progenitor cells, which is essential for the transplanted/endogenous stem cells to reach the site of injury. We further discuss the possible methods of preconditioning the diabetic cardiac progenitor cell (CPC) with an aim to enrich the availability of efficient stem cells to regenerate the diseased diabetic heart. Finally, we propose new modalities for enriching the diabetic CPC through genetic or tissue engineering that would aid in developing autologous therapeutic strategies, improving the proliferative, angiogenic, and cardiogenic properties of diabetic stem/progenitor cells. Stem Cells 2017;35:2009-2026.
干细胞疗法是为改善缺血性心脏病(IHD)患者心脏功能而开发的一种有前景的再生策略。然而,由于干细胞再生能力的逐渐下降,这种方法在糖尿病IHD患者中受到限制。这种下降主要归因于糖尿病对干细胞微环境及其全身信号产生的代谢记忆。了解糖尿病导致干细胞功能恶化所涉及的分子途径对于开发新的心脏再生疗法至关重要。在本综述中,我们首先讨论糖尿病干细胞/祖细胞中最常见的分子改变。接下来,我们重点介绍在糖尿病环境中可能失调并损害干细胞/祖细胞动员的关键信号通路,而干细胞/祖细胞的动员对于移植的/内源性干细胞到达损伤部位至关重要。我们进一步讨论对糖尿病心脏祖细胞(CPC)进行预处理的可能方法,目的是增加有效干细胞的可用性,以再生患病的糖尿病心脏。最后,我们提出通过基因或组织工程富集糖尿病CPC的新方法,这将有助于开发自体治疗策略,改善糖尿病干细胞/祖细胞的增殖、血管生成和心脏生成特性。《干细胞》2017年;35卷:2009 - 2026页