Department of Medical Biotechnology, Faculty of Allied Health Sciences, Chettinad Academy of Research and Education (CARE), Chettinad Hospital and Research Institute (CHRI), Chennai, India.
Methods Mol Biol. 2024;2736:207-223. doi: 10.1007/7651_2023_478.
Mesenchymal stem cells are a group of multipotent cells that can be induced to differentiate into other cell types. The cells fate is decided by various signaling pathways, growth factors, and transcription factors in differentiation. The proper coordination of these factors will result in cell specification. MSCs are capable of being differentiated into osteogenic, chondrogenic, and adipogenic lineages. Different conditions induces the MSCs into particular phenotypes. The MSC trans-differentiation ensues as a response to environmental factors or due to circumstances that prove to favor trans-differentiation. Depending on the stage at which they are expressed, and the genetic alterations they undergo prior to their expression, transcription factors can accelerate the process of trans-differentiation. Further research has been conducted on the challenging aspect of MSCs being developed into non-mesenchymal lineage. The cells that are differentiated in this way maintain their stability even after being induced in animals. The recent advancements in the trans-differentiation capacities of MSCs on induction with chemicals, growth inducers, improved differentiation mediums, growth factors from plant extracts, and electrical stimulation are discussed in this paper. Signaling pathways have a great effect on MSCs trans-differentiation and they need to be better understood for their applications in therapeutic techniques. So, this paper tends to review the major signaling pathways that play a vital role in the trans-differentiation of MSC.
间充质干细胞是一群多能细胞,可以被诱导分化为其他细胞类型。细胞的命运由分化过程中的各种信号通路、生长因子和转录因子决定。这些因素的适当协调将导致细胞特化。MSC 能够分化为成骨细胞、软骨细胞和成脂细胞谱系。不同的条件诱导 MSC 分化为特定的表型。MSC 转分化是对环境因素的反应,或者是由于有利于转分化的情况而发生的。转录因子可以根据它们表达的阶段以及在表达之前经历的遗传改变来加速转分化过程。已经对 MSC 向非间充质谱系发展的挑战性方面进行了进一步的研究。以这种方式分化的细胞在动物体内诱导后仍保持其稳定性。本文讨论了通过化学诱导、生长诱导剂、改进的分化培养基、植物提取物中的生长因子和电刺激来诱导 MSC 转分化的最新进展。信号通路对 MSC 转分化有很大的影响,为了将其应用于治疗技术,需要更好地理解它们。因此,本文旨在综述在 MSC 转分化中起关键作用的主要信号通路。