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800nm 半导体激光照射通过刺激 TGF-β/Smad 信号通路诱导皮肤胶原蛋白合成。

The 800-nm diode laser irradiation induces skin collagen synthesis by stimulating TGF-β/Smad signaling pathway.

机构信息

School of Life Science, East China Normal University, Shanghai, 200062, China.

出版信息

Lasers Med Sci. 2011 Nov;26(6):837-43. doi: 10.1007/s10103-011-0985-z. Epub 2011 Sep 4.

Abstract

The 800-nm diode laser is used clinically for hair removal and leg vein clearance. However, the effects of the laser on skin collagen synthesis have not been established. This study aims to research whether the 800-nm laser can be used for non-ablative rejuvenation and its possible mechanism by using an animal model. Eight 2-month-old rats were irradiated with the 800-nm diode laser at 20, 40, and 60 J/cm(2), respectively. Skin samples were taken for histological study and dermal thickness measurement at day 30 after laser irradiation. The expression of procollagen type I, III, IV, transforming growth factor-β (TGF-β), Smad2, 3, 4, and phosphorylated-Smad2, 3 in the rat skin was analyzed 24 h after completing all laser treatments by using RT-PCR and Western blot. Immunohistochemistry was performed to evaluate the content of type I collagen in the skin at day 30 after laser irradiation. The 800-nm diode laser treatments markedly improved the histological structure and increased dermal thickness compared to the non-irradiated controls. Laser irradiation at 40 J/cm(2) significantly up-regulated the expression of procollagen type I and IV, TGF-β and Smad2, 3, 4. The p-Smad2 and p-Smad3 levels were also enhanced in the laser-irradiated skin. The 800-nm laser is effective in improving skin structure and inducing skin new collagen expression. New collagen synthesis induced by the 800-nm laser was mediated by TGF-β/Smad signaling pathway. Thus, it seemed that the 800-nm laser could be used for non-ablative rejuvenation in the future.

摘要

800nm 半导体激光被临床用于脱毛和腿部静脉清除。然而,激光对皮肤胶原合成的影响尚未确定。本研究旨在通过动物模型研究 800nm 激光是否可用于非消融性年轻化及其可能的机制。8 只 2 月龄大鼠分别用 800nm 半导体激光照射 20、40 和 60J/cm2,于激光照射后 30 天取皮肤标本进行组织学研究和真皮厚度测量。激光治疗完成后 24 小时,采用 RT-PCR 和 Western blot 分析大鼠皮肤中 I 型、III 型、IV 型前胶原、转化生长因子-β(TGF-β)、Smad2、3、4 和磷酸化 Smad2、3 的表达。激光照射后 30 天,采用免疫组化法评估皮肤中 I 型胶原的含量。与未照射对照组相比,800nm 半导体激光治疗明显改善了组织学结构,增加了真皮厚度。40J/cm2 的激光照射显著上调 I 型和 IV 型前胶原、TGF-β和 Smad2、3、4 的表达。激光照射皮肤中 p-Smad2 和 p-Smad3 水平也增强。800nm 激光可有效改善皮肤结构,诱导皮肤新胶原表达。800nm 激光诱导的新胶原蛋白合成是通过 TGF-β/Smad 信号通路介导的。因此,800nm 激光似乎可用于未来的非消融性年轻化。

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