射频电流对人角质形成细胞细胞因子产生的影响

M. L. Hernández-Bule, Elena Toledano-Macías, María Antonia Martínez-Pascual, A. Úbeda, M. Fernández-Guarino
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引用次数: 0

摘要

伤口愈合包括一系列协调的阶段:炎症、增殖和重塑。在皮肤病变中,中性粒细胞和角质形成细胞是参与炎症期的主要细胞类型,在此期间,介导调节随后再生期的介质的释放发生。这些介质通过诱导跨内皮迁移、酶分泌、细胞粘附、t细胞活化和细胞毒性以及伤口部位的中性粒细胞积累参与组织再生。在这些介质中,角化细胞合成的趋化因子RANTES、MCP-1、MIP-1和IL-8尤为突出。尽管应用电磁场或电流的疗法已在各种实验模型和患者中显示出通过减少促炎细胞因子如IFN-Υ的产生和增加IL-10的产生而具有抗炎作用,但关于这些作用的生物学基础的知识仍然有限。我们小组之前的研究表明,在容电阻电转移(CRET)治疗中使用射频(RF)电流进行亚热治疗,可促进各种细胞类型的增殖和迁移,如参与皮肤再生的人类ADSC(干细胞)、成纤维细胞或角质形成细胞。本研究探讨了体外CRET电流对HaCat人角质形成细胞产生细胞因子的影响。结果显示,与假暴露对照组相比,射频刺激诱导IL-8和RANTES的产生减少,MCP-1的产生增加,而对MIP-1等其他趋化因子没有显著影响。综上所述,我们的研究结果表明,由于射频对参与伤口再生炎症期调节的趋化因子的产生有影响,CRET治疗可能有效地治疗皮肤伤口。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of RF Currents on Cytokines Production in Human Keratinocytes
: Wound healing consists of a sequence of coordinated phases: inflammation, proliferation, and remodeling. In skin lesions, neutrophils and keratinocytes are the main cell types participating in the inflammatory phase, during which the release of mediators intervening in the regulation of the subsequent regenerative phases takes place. These mediators are involved in tissue regeneration through induction of transendothelial migration, enzyme secretion, cell adhesion, and T-Cell activation and cytotoxicity, as well as neutrophil accumulation at the wound site. Among these mediators, the keratinocyte-synthesized chemokines RANTES, MCP-1, MIP-1, and IL-8 stand out. Although therapies applying electromagnetic fields or electric currents have been shown to have anti-inflammatory effects in a variety of experimental models and in patients through reduced production of proinflammatory cytokines such as IFN-Υ and increased production of IL-10, the knowledge on the biological basis of these effects is still limited. Previous studies by our group have shown that subthermal treatment with radiofrequency (RF) currents used in capacitive-resistive electric transfer (CRET) therapy promotes the proliferation and migration of various cell types, such as human ADSC (stem cells), fibroblasts or keratinocytes, involved in skin regeneration. This study investigates the effects of in vitro treatment with CRET currents on cytokine production by HaCat human keratinocytes. The results reveal that, compared to sham-exposed controls, RF stimulation induces decreased production of IL-8 and RANTES and increased MCP-1, without significantly affecting other chemokines such as MIP-1. Taken together, our results indicate that due to the RF effects on the production of chemokines involved in the modulation of the inflammatory phase of wound regeneration, CRET therapy could be effective in the treatment of skin wounds.
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