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Photobiomodulation: An Effective Approach to Enhance Proliferation and Differentiation of Adipose-Derived Stem Cells into Osteoblasts

机译:PhotobioModulation:一种有效的方法,可以增强脂肪衍生的干细胞进入成骨细胞的增殖和分化

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Osteoporosis is regarded as the most common chronic metabolic bone condition in humans. In osteoporosis, bone mesenchymal stem cells (MSCs) have reduced cellular function. Regenerative medicine using adipose-derived stem cell (ADSC) transplantation can promote the growth and strength of new bones, improve bone stability, and reduce the risk of fractures. Various methods have been attempted to differentiate ADSCs to functioning specialized cells for prospective clinical application. However, commonly used therapies have resulted in damage to the donor site and morbidity, immune reactions, carcinogenic generation, and postoperative difficulties. Photobiomodulation (PBM) improves ADSC differentiation and proliferation along with reducing clinical difficulties such as treatment failures to common drug therapies and late initiation of treatment. PBM is a noninvasive, nonthermal treatment that encourages cells to produce more energy and to undergo self-repair by using visible green and red and invisible near-infrared (NIR) radiation. The use of PBM for ADSC proliferation and differentiation has been widely studied with multiple outcomes observed due to laser fluence and wavelength dependence. In this article, the potential for differentiating ADSCs into osteoblasts and the various methods used, including biological induction, chemical induction, and PBM, will be addressed. Likewise, the optimal laser parameters that could improve the proliferation and differentiation of ADSC, translating into clinical success, will be commented on.
机译:骨质疏松症被认为是人类中最常见的慢性代谢骨病。在骨质疏松症中,骨间充质干细胞(MSCs)具有降低的细胞功能。使用脂肪衍生的干细胞(ADSC)移植的再生药物可以促进新骨骼的生长和强度,提高骨骼稳定性,降低骨折的风险。已经试图将ADSC分化为在前瞻性临床应用中运作专用细胞的各种方法。然而,常用的疗法导致供体部位和发病率,免疫反应,致癌产生和术后困难造成损害。光致调节(PBM)改善了ADSC分化和增殖以及降低临床困难,例如治疗失败,以常见的药物治疗和晚期的治疗开始。 PBM是一种非侵入性的非热处理,促使细胞产生更多能量并通过使用可见的绿色和红色和无形的近红外(NIR)辐射来进行自我修复。使用PBM用于ADSC的增殖和分化已经广泛研究了由于激光流量和波长依赖性而观察到的多种结果。在本文中,将解决将ADSC分化为成骨细胞的可能性以及包括生物诱导,化学诱导和PBM的各种方法。同样,可以评论可以改善ADSC的增殖和分化,转化为临床成功的最佳激光参数。

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