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首页> 外文期刊>Lasers in Medical Science >Effects of the 532-nm and 1,064-nm Q-switched Nd:YAG lasers on collagen turnover of cultured human skin fibroblasts: a comparative study
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Effects of the 532-nm and 1,064-nm Q-switched Nd:YAG lasers on collagen turnover of cultured human skin fibroblasts: a comparative study

机译:532 nm和1,064 nm调Q Nd:YAG激光对培养的人皮肤成纤维细胞胶原转换的影响:一项比较研究

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摘要

Cultured human skin fibroblasts were irradiated twice successively with the 1.5 J/cm2 of 532-nm and 1,064-nm lasers, respectively. The mRNA of procollagen, matrix metalloproteinases (MMPs), tissue inhibitors of metalloproteinases (TIMPs), heat-shock protein 70 (Hsp70), interleukin-6 (IL-6) and transforming growth factor beta (TGF-β) were analyzed at 24 and 48 h post-irradiation by using RT-PCR. Both lasers significantly increased the expression of type I and III procollagen, TIMP1, and TIMP2, but decreased MMP1 and MMP2 expression. The 1,064-nm laser initiated TGF-β expression while the 532-nm laser elicited the increase of Hsp70 and IL-6. The increase/decrease rates of procollagen, TIMPs and MMPs for the 1,064-nm laser were higher than that of the 532-nm laser. Thus, both lasers effectively accelerated collagen synthesis and inhibited collagen degradation. Collagen synthesis induced by the 1,064-nm laser might be partly due to the upregulation of TGF-β expression, while the increase of Hsp70 and IL-6 might be partly responsible for collagen synthesis stimulated by the 532-nm laser. With the parameters used in this study, the 1,064-nm infrared laser is more effective in promoting the beneficial molecular activities than the 532-nm visible laser.
机译:用1.5 J / cm 2 的532 nm和1,064 nm激光分别连续照射培养的人皮肤成纤维细胞两次。在24位分析了胶原蛋白,基质金属蛋白酶(MMP),金属蛋白酶组织抑制剂(TIMP),热休克蛋白70(Hsp70),白介素6(IL-6)和转化生长因子β(TGF-β)的mRNA。使用RT-PCR照射后48小时。两种激光都显着增加了I型和III型前胶原,TIMP1和TIMP2的表达,但降低了MMP1和MMP2的表达。 1,064 nm激光引发TGF-β表达,而532 nm激光引发Hsp70和IL-6的增加。 1,064 nm激光器的原胶原,TIMP和MMP的增/减速率高于532 nm激光器。因此,两种激光均有效地促进了胶原蛋白的合成并抑制了胶原蛋白的降解。 1,064nm激光诱导的胶原蛋白合成可能部分归因于TGF-β表达的上调,而Hsp70和IL-6的增加可能部分归因于532nm激光刺激的胶原蛋白合成。利用本研究中使用的参数,1,064 nm红外激光比532 nm可见激光更有效地促进了有益的分子活性。

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