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首页> 外文期刊>Photodermatology, photoimmunology and photomedicine >Efficacy of three different laser wavelengths for in vitro wound healing.
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Efficacy of three different laser wavelengths for in vitro wound healing.

机译:三种不同激光波长在体外伤口愈合中的功效。

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Background and objective: Despite contradictory reports on the effect of laser light on cell proliferation, studies have shown that appropriate doses and wavelengths of laser light are therapeutically beneficial in tissue repair and pain control. This study aimed to establish if the dose and/or wavelength influenced the biological responses of irradiated in vitro fibroblasts - 1 h after laser irradiation. Materials and methods: This study aimed to establish cellular responses of normal and wounded human skin fibroblasts to helium-neon (632.8 nm), diode (830 nm) and Nd:YAG (1064 nm) laser irradiation using one exposure of 5 or 16 J/cm(2) on day 1 and again on day 4. Results: Wounded cells exposed to 5 J/cm(2) using 632.8 nm showed an increase in cell migration and haptotaxis, a stable increase in the release of interleukin-6 (IL-6), a decrease in caspase 3/7 activity, an increase in ATP viability and an increase in cell proliferation - 1 h after the final exposure. The results confirm that changes in parameters such as ATP viability, cytokine expression (IL-6), cell proliferation (alkaline phosphatase enzyme activity) and DNA damage can be observed directly after the laser irradiation. The amount of DNA damage and cytotoxicity may be related to duration of the laser irradiation, which is dependent on the power density (mW/cm(2)) of each laser. Conclusion: The results indicate that 5 J/cm(2) using 632.8 nm results in a stimulatory effect that is more effective than 830 and 1064 nm. The results suggest possible mechanisms by which the wavelength may potentially influence the cellular responses of wounded cells.
机译:背景与目的:尽管有关于激光对细胞增殖的影响的相互矛盾的报道,但研究表明,适当的剂量和波长的激光在组织修复和疼痛控制方面对治疗有益。这项研究的目的是确定剂量和/或波长是否影响体外照射的成纤维细胞的生物学反应-激光照射后1小时。材料和方法:本研究旨在建立正常和受伤的人类皮肤成纤维细胞对氦氖(632.8 nm),二极管(830 nm)和Nd:YAG(1064 nm)激光照射的细胞反应,方法是一次照射5或16 J / cm(2)在第1天,然后在第4天再次出现。结果:使用632.8 nm暴露于5 J / cm(2)的受伤细胞显示细胞迁移和触觉增加,白细胞介素6( IL-6),胱天蛋白酶3/7活性降低,ATP活力增加和细胞增殖增加-最终暴露后1小时。结果证实,在激光照射后可以直接观察到诸如ATP活力,细胞因子表达(IL-6),细胞增殖(碱性磷酸酶活性)和DNA损伤等参数的变化。 DNA损伤和细胞毒性的程度可能与激光照射的持续时间有关,激光照射的持续时间取决于每个激光的功率密度(mW / cm(2))。结论:结果表明,使用632.8 nm的5 J / cm(2)产生的刺激效果比830和1064 nm更有效。结果表明波长可能会影响受伤细胞的细胞反应的可能机制。

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