Red light therapy is a clinically validated, noninvasive approach for improving skin structure and stimulating collagen renewal. However, the molecular mechanisms by which light therapy reverses collagen-related skin degeneration remain unclear. Using a natural aging mouse model, this study investigated the effects of red light therapy on skin structure and regeneration. Unlike other wavelengths, red light rapidly increased dermal thickness and stimulated epidermal renewal by enhancing collagen synthesis in dermal fibroblasts and activating collagen/integrin-induced proliferation and differentiation of epidermal keratinocytes, resulting in significant improvements in skin morphology. Mechanistically, red light increased endogenous TGFβ expression in fibroblasts, which up-regulated type I collagen mRNA and protein expression via activation of SMAD2/3/4 nuclear translocation. Simultaneously, red light elevated intracellular cAMP, triggering AKT activation that inhibited matrix metalloproteinase expression via the NRF2/HO-1-dependent pathway, thereby reducing collagen degradation. The accumulation of type I collagen in dermal fibroblasts stimulated integrin signaling, promoting epidermal keratinocyte proliferation and differentiation. Red light-induced AKT activation also enhanced fibroblast proliferation, further amplifying collagen production and collagen-mediated epidermal renewal. These findings elucidate the mechanisms by which red light stimulates endogenous TGFβ and AKT signaling to regulate type I collagen production, driving coordinated dermis-epidermis remodeling. This pathway represents a potential therapeutic target for the prevention and treatment of age-related dermal degeneration.
无创光生物疗法是一种临床有效的皮肤复壮策略,可促进胶原蛋白合成并改善皮肤病理,但其逆转胶原蛋白相关皮肤退行性变化的分子机制仍不明确。该研究基于自然衰老小鼠模型,首次阐述了红光(630-635 nm)在皮肤抗衰老中的独特作用机制。研究表明,红光治疗能显著增加真皮层厚度并促进表皮层更新,其作用通过双重分子机制实现:首先,红光通过上调皮肤组织内源性TGFβ1表达,激活SMAD2/3/4核转位,促进真皮成纤维细胞I型胶原的mRNA表达及蛋白合成;其次,红光诱导的cAMP通过激活AKT激酶,调控NFR2/HO-1信号通路,显著抑制多种基质金属蛋白酶(MMP)表达,减少I型胶原降解。此外,红光通过I型胶原激活表皮层整合素信号,增强角质形成细胞的增殖与分化,实现表皮更新。值得注意的是,红光激活的AKT信号还可促进成纤维细胞增殖,形成正向反馈环路,进一步放大I型胶原生成,增加真皮层厚度并持续推动胶原介导的表皮更新过程。该研究揭示了红光通过内源性关键分子TGFβ和AKT信号通路驱动I型胶原合成并促进真皮-表皮重塑的分子机制,为皮肤退行性变的防治提供了重要的理论依据和潜在的治疗靶点。.
Keywords: Dermal fibroblasts; Epidermal keratinocytes; Red light; Skin degeneration; Type I collagen.