El Moshy Sara, Radwan Israa Ahmed, Rady Dina, Abbass Marwa M S, El-Rashidy Aiah A, Sadek Khadiga M, Dörfer Christof E, Fawzy El-Sayed Karim M
Oral Biology Department, Faculty of Dentistry, Cairo University, Cairo, Egypt.
Stem cells and Tissue Engineering Research Group, Faculty of Dentistry, Cairo University, Cairo, Egypt.
Stem Cells Int. 2020 Jan 31;2020:7593402. doi: 10.1155/2020/7593402. eCollection 2020.
Regenerative medicine literature has proposed mesenchymal stem/progenitor cell- (MSC-) mediated therapeutic approaches for their great potential in managing various diseases and tissue defects. Dental MSCs represent promising alternatives to nondental MSCs, owing to their ease of harvesting with minimally invasive procedures. Their mechanism of action has been attributed to their cell-to-cell contacts as well as to the paracrine effect of their secreted factors, namely, secretome. In this context, dental MSC-derived secretome/conditioned medium could represent a unique cell-free regenerative and therapeutic approach, with fascinating advantages over parent cells. This article reviews the application of different populations of dental MSC secretome/conditioned medium in in vitro and in vivo animal models, highlights their significant implementation in treating different tissue' diseases, and clarifies the significant bioactive molecules involved in their regenerative potential. The analysis of these recent studies clearly indicate that dental MSCs' secretome/conditioned medium could be effective in treating neural injuries, for dental tissue regeneration, in repairing bone defects, and in managing cardiovascular diseases, diabetes mellitus, hepatic regeneration, and skin injuries, through regulating anti-inflammatory, antiapoptotic, angiogenic, osteogenic, and neurogenic mediators.
再生医学文献提出了间充质干/祖细胞(MSC)介导的治疗方法,因为它们在治疗各种疾病和组织缺损方面具有巨大潜力。牙源性间充质干细胞是有前景的非牙源性间充质干细胞替代物,这是由于它们可以通过微创程序轻松获取。其作用机制归因于它们的细胞间接触以及它们分泌因子(即分泌组)的旁分泌作用。在这种情况下,牙源性间充质干细胞来源的分泌组/条件培养基可能代表一种独特的无细胞再生和治疗方法,与亲代细胞相比具有引人注目的优势。本文综述了不同群体的牙源性间充质干细胞分泌组/条件培养基在体外和体内动物模型中的应用,强调了它们在治疗不同组织疾病中的重要应用,并阐明了其再生潜力中涉及的重要生物活性分子。对这些最新研究的分析清楚地表明,牙源性间充质干细胞的分泌组/条件培养基通过调节抗炎、抗凋亡、血管生成、成骨和神经生成介质,可能有效治疗神经损伤、促进牙组织再生、修复骨缺损以及治疗心血管疾病、糖尿病、肝再生和皮肤损伤。