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Adenosine Receptors as a Biological Pathway for the Anti-Inflammatory and Beneficial Effects of Low Frequency Low Energy Pulsed Electromagnetic Fields

机译:腺苷受体作为低频低能量脉冲电磁场​​的抗炎和有益作用的生物途径

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摘要

Several studies explored the biological effects of low frequency low energy pulsed electromagnetic fields (PEMFs) on human body reporting different functional changes. Much research activity has focused on the mechanisms of interaction between PEMFs and membrane receptors such as the involvement of adenosine receptors (ARs). In particular, PEMF exposure mediates a significant upregulation of A2A and A3ARs expressed in various cells or tissues involving a reduction in most of the proinflammatory cytokines. Of particular interest is the observation that PEMFs, acting as modulators of adenosine, are able to increase the functionality of the endogenous agonist. By reviewing the scientific literature on joint cells, a double role for PEMFs could be hypothesized in vitro by stimulating cell proliferation, colonization of the scaffold, and production of tissue matrix. Another effect could be obtained in vivo after surgical implantation of the construct by favoring the anabolic activities of the implanted cells and surrounding tissues and protecting the construct from the catabolic effects of the inflammatory status. Moreover, a protective involvement of PEMFs on hypoxia damage in neuron-like cells and an anti-inflammatory effect in microglial cells have suggested the hypothesis of a positive impact of this noninvasive biophysical stimulus.
机译:多项研究探索了低频低能量脉冲电磁场​​(PEMF)对人体的生物学影响,报告了不同的功能变化。许多研究活动集中在PEMF与膜受体之间相互作用的机制上,例如腺苷受体(ARs)的参与。特别地,PEMF暴露介导在各种细胞或组织中表达的A2A和A3AR的显着上调,涉及大多数促炎细胞因子的减少。特别令人感兴趣的是观察到,作为腺苷调节剂的PEMF能够增加内源性激动剂的功能。通过回顾关于关节细胞的科学文献,可以通过刺激细胞增殖,支架的定殖和组织基质的产生在体外假设PEMF具有双重作用。通过有利于植入的细胞和周围组织的合成代谢活性并保护该构造物免受炎症状态的分解代谢作用,可以在外科手术植入该构造物后在体内获得另一种效果。此外,PEMF对神经元样细胞缺氧损伤的保护作用以及对小胶质细胞的抗炎作用提示了这种无创生物物理刺激的积极影响的假说。

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