首页> 外文期刊>Journal of Cosmetics, Dermatological Sciences and Applications >The Effect of Micro-Pulsatile Electrical and Ultrasound Stimulation on Cellular Biosynthetic Activities Such as Cellular Proliferation, Endogenous Nitrogen Oxide and Collagen Synthesis
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The Effect of Micro-Pulsatile Electrical and Ultrasound Stimulation on Cellular Biosynthetic Activities Such as Cellular Proliferation, Endogenous Nitrogen Oxide and Collagen Synthesis

机译:微脉冲电刺激和超声刺激对细胞生物合成活性如细胞增殖,内源性氮氧化物和胶原蛋白合成的影响

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摘要

The skin barrier poses an ongoing challenge for the cosmetics industry. Its penetration, by non-invasive means, can readily be achieved with currents and ultrasound or radiofrequency devices through electroporation, sonophoresis, iontophoresis or cavitation. When several types of energy are applied simultaneously, we expect the effects to be magnified and all the more effective. Although the mechanism of action of each technology on the skin is not entirely controlled, and is even less so when multiple technologies are applied concurrently, some studies demonstrate that nitric oxide (NO) plays a pivotal role in skin wound-healing and regeneration. With regard to wound healing, one of the key functions of NO appears to be its permissive effect on keratinocyte and fibroblast proliferation, which helps promote wound re-epithelialization. The objective of the actual research is to gain an in-depth understanding of the mechanisms generated by NO through the application of a specific combination of technologies.
机译:皮肤屏障对化妆品行业构成了持续的挑战。通过电流,超声或射频设备通过电穿孔,超声渗析,离子电渗疗法或空化,可以很容易地通过非侵入性方式渗透。当同时施加几种类型的能量时,我们希望效果会得到放大,并且更加有效。尽管每种技术对皮肤的作用机理并没有完全控制,甚至在同时应用多种技术时也很少受到控制,但一些研究表明,一氧化氮(NO)在皮肤伤口的愈合和再生中起着关键作用。关于伤口愈合,NO的关键功能之一似乎是其对角质形成细胞和成纤维细胞增殖的允许作用,这有助于促进伤口再上皮形成。实际研究的目的是通过应用特定的技术组合来深入了解NO产生的机制。

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