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Pulsed electromagnetic fields stimulate osteogenic differentiation in human bone marrow and adipose tissue derived mesenchymal stem cells

机译:脉冲电磁场​​刺激人骨髓和脂肪组织来源的间充质干细胞的成骨分化

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Pulsed electromagnetic fields (PEMFs) play a regulatory role on osteoblast activity and are clinically beneficial during fracture healing. Human mesenchymal stem cells (MSCs) derived from different sources have been extensively used in bone tissue engineering. Compared with MSCs isolated from bone marrow (BMSCs), those derived from adipose tissue (ASCs) are easier to obtain and available in larger amounts, although they show a less osteogenic differentiation potential than BMSCs. The hypothesis tested in this study was to evaluate whether PEMFs favor osteogenic differentiation both in BMSCs and in ASCs and to compare the role of PEMFs alone and in combination with the biochemical osteogenic stimulus bone morphogenetic protein (BMP)-2. Early and later osteogenic markers, such as alkaline phosphatase (ALP) activity, osteocalcin levels, and matrix mineralization, were analyzed at different times during osteogenic differentiation. Results showed that PEMFs induced osteogenic differentiation by increasing ALP activity, osteocalcin, and matrix mineralization in both BMSCs and ASCs, suggesting that PEMF activity is maintained during the whole differentiation period. The addition of BMP-2 in PEMF exposed cultures further increased all the osteogenic markers in BMSCs, while in ASCs, the stimulatory role of PEMFs was independent of BMP-2. Our results indicate that PEMFs may stimulate an early osteogenic induction in both BMSCs and ASCs and they suggest PEMFs as a bioactive factor to enhance the osteogenesis of ASCs, which are an attractive cell source for clinical applications. In conclusion, PEMFs may be considered a possible tool to improve autologous cell-based regeneration of bone defects in orthopedics.
机译:脉冲电磁场​​(PEMF)对成骨细胞的活动起调节作用,在骨折愈合过程中具有临床优势。来自不同来源的人间充质干细胞(MSCs)已广泛用于骨组织工程中。与分离自骨髓的MSC(BMSCs)相比,来自脂肪组织(ASCs)的MSCs更容易获得和大量使用,尽管它们显示出的成骨分化潜能低于BMSCs。在这项研究中测试的假设是评估PEMF是否在BMSC和ASC中均有利于成骨分化,并比较PEMF单独和与生化成骨刺激性骨形态发生蛋白(BMP)-2结合的作用。在成骨分化过程中的不同时间分析了早期和后期的成骨标记,例如碱性磷酸酶(ALP)活性,骨钙素水平和基质矿化。结果表明,PEMFs通过增加BMSCs和ASCs中的ALP活性,骨钙素和基质矿化来诱导成骨细胞分化,这表明PEMF活性在整个分化过程中都得以维持。在暴露于PEMF的培养物中添加BMP-2进一步增加了BMSC中所有成骨标记,而在ASC中,PEMF的刺激作用独立于BMP-2。我们的结果表明,PEMFs可能会刺激BMSCs和ASCs的早期成骨诱导作用,并且它们表明PEMFs是增强ASCs成骨作用的生物活性因子,这是临床应用中有吸引力的细胞来源。总之,PEMFs可能被认为是改善骨科骨缺损自体细胞再生的可能工具。

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