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Enhancement of mesenchymal stem cell chondrogenesis with short-term low intensity pulsed electromagnetic fields

机译:短期低强度脉冲电磁场​​增强间充质干细胞软骨形成

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摘要

Pulse electromagnetic fields (PEMFs) have been shown to recruit calcium-signaling cascades common to chondrogenesis. Here we document the effects of specified PEMF parameters over mesenchymal stem cells (MSC) chondrogenic differentiation. MSCs undergoing chondrogenesis are preferentially responsive to an electromagnetic efficacy window defined by field amplitude, duration and frequency of exposure. Contrary to conventional practice of administering prolonged and repetitive exposures to PEMFs, optimal chondrogenic outcome is achieved in response to brief (10 minutes), low intensity (2 mT) exposure to 6 ms bursts of magnetic pulses, at 15 Hz, administered only once at the onset of chondrogenic induction. By contrast, repeated exposures diminished chondrogenic outcome and could be attributed to calcium entry after the initial induction. Transient receptor potential (TRP) channels appear to mediate these aspects of PEMF stimulation, serving as a conduit for extracellular calcium. Preventing calcium entry during the repeated PEMF exposure with the co-administration of EGTA or TRP channel antagonists precluded the inhibition of differentiation. This study highlights the intricacies of calcium homeostasis during early chondrogenesis and the constraints that are placed on PEMF-based therapeutic strategies aimed at promoting MSC chondrogenesis. The demonstrated efficacy of our optimized PEMF regimens has clear clinical implications for future regenerative strategies for cartilage.
机译:脉冲电磁场​​(PEMF)已显示募集软骨生成常见的钙信号级联。在这里,我们记录了指定的PEMF参数对间充质干细胞(MSC)软骨分化的影响。经历软骨形成的MSC优先响应由场振幅,持续时间和暴露频率定义的电磁功效窗口。与长期和反复暴露于PEMF的常规做法相反,在短暂的(10µmin),低强度(2µmT)暴露于15µHz的6µms电磁脉冲中,可获得最佳的成软骨效果。软骨诱导的发作。相比之下,反复接触会减少软骨形成的结果,并且可能归因于最初诱导后的钙进入。瞬态受体电位(TRP)通道似乎介导PEMF刺激的这些方面,充当细胞外钙的导管。与EGTA或TRP通道拮抗剂合用可防止在反复PEMF暴露期间钙进入,从而排除了分化抑制作用。这项研究突出了早期软骨形成过程中钙稳态的复杂性,以及旨在促进MSC软骨形成的基于PEMF的治疗策略受到的限制。我们优化的PEMF方案的疗效证明对未来的软骨再生策略具有明显的临床意义。

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