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Differentiation of human umbilical cord-derived mesenchymal stem cells, WJ-MSCs, into chondrogenic cells in the presence of pulsed electromagnetic fields

机译:在脉冲电磁场​​的作用下,人脐带间充质干细胞WJ-MSC分化为软骨细胞

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During cartilage regeneration, proliferation and differentiation of new chondrocytes are required and towards this goal, in humans electromagnetic stimulation has been used in order to increase the spontaneous regenerative capacity of bone and cartilage tissue. In vivo tissue engineering has pointed out that the absence of an abundant source of cells accelerating the healing process is a limiting factor in the ability to repair articular cartilage. Considering that the umbilical cord is a viable alternative source of mesenchymal stem cells (MSC), our study evaluated the possibility of a combined use of Wharton's jelly - mesenchymal stem cells (WJ-MSCs) and pulsed electromagnetic field (PMEF). The first effect observed was that compared with the untreated cells, when the WJ-MSCs were treated with PMEF, there was an increase in the division of cells and a rapid increase in cell density and the morphological and biochemical data showed that the treatment with PMEF reduced the time to obtain chondrocyte cell differentiation and deposition of extracellular matrix. Taken together these data indicate the capacity of PEMF to induce early differentiation of WJ-MSCs cells towards cartilaginous tissue.
机译:在软骨再生期间,需要新的软骨细胞的增殖和分化,并且为了实现该目标,在人类中已经使用电磁刺激来增加骨骼和软骨组织的自发再生能力。体内组织工程学已经指出,缺乏大量促进愈合过程的细胞来源是修复关节软骨能力的限制因素。考虑到脐带是间充质干细胞(MSC)的可行替代来源,我们的研究评估了沃顿氏胶冻-间充质干细胞(WJ-MSC)和脉冲电磁场​​(PMEF)结合使用的可能性。观察到的第一个效果是,与未处理的细胞相比,当用PMEF处理WJ-MSC时,细胞分裂增加,细胞密度迅速增加,并且形态学和生化数据表明,用PMEF处理减少了获得软骨细胞分化和细胞外基质沉积的时间。这些数据加在一起表明PEMF诱导WJ-MSCs细胞向软骨组织早期分化的能力。

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