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A New Chapter for Mesenchymal Stem Cells: Decellularized Extracellular Matrices

机译:间充质干细胞的新一篇文章:脱细胞外细胞外基质

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From orthopedic to neurological disorders, stem cells are used as platforms to understand disease mechanisms and considered as novel and promising treatment options, especially when the valid therapeutic approaches are unavailable or ineffective. There are different stem cell types in the literature, however the spindle-shaped, colony forming and multilineage-differentiating cells, also known as mesenchymal stem cells (MSC) are very popular, as MSC can be isolated from different tissues with minimal ethical concerns and without tumor formations, which make them easily accessible and widely used in vitro and in vivo studies. In the literature, MSC have been shown to have therapeutic effects and orchestrate the healing process via their mobilization, migration, differentiation capacities, immunomodulation properties and/or secretion of bioactive factors. Nowadays, MSC derived extracellular matrices (ECM), which are part of the secreted/produced bioactive molecules from MSC; draw attention of researchers due to their key roles in cell biology. Several groups have isolated ECM from in vitro cultured MSC using different methods of decellularization techniques for tissue-engineering approaches. According to current knowledge, decellularized ECM (dECM) influence growth, adhesion, differentiation, migration, apoptosis, proliferation, and phenotype of cells, covering almost all cellular events. In this comprehensive review we focused on MSC and the isolation methods and effects of MSC derived dECM (MSC-dECM).
机译:从整形外科到神经疾病,干细胞用作理解疾病机制的平台,并被视为新颖和有前途的治疗方案,特别是当有效的治疗方法不可用或无效时。文献中存在不同的干细胞类型,然而,梭形,菌落形成和多重分化细胞,也称为间充质干细胞(MSC)非常流行,因为MSC可以与不同的组织中分离,具有最小的伦理问题和没有肿瘤形成,使它们可以易于进入和广泛使用体外和体内研究。在文献中,已显示MSC具有治疗效果,并通过他们的动员,迁移,分化能力,免疫调节性能和/或生物活性因子分泌来协调愈合过程。如今,MSC衍生的细胞外基质(ECM),其是来自MSC的分泌/产生的生物活性分子的一部分;由于细胞生物学的关键作用,提出了研究人员的注意。使用不同的脱细胞化技术用于组织工程方法的不同方法,几组从体外培养MSC中分离出ECM。根据目前的知识,脱细胞的ECM(DECM)影响细胞的生长,粘附,分化,迁移,凋亡,增殖和表型,覆盖几乎所有细胞事件。在本综合评论中,我们专注于MSC和MSC推导DECM(MSC-DECM)的隔离方法和效果。

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