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Platelet-rich plasma activates AKT signaling to promote wound healing in a mouse model of radiation-induced skin injury

机译:富含血小板的血浆激活AKT信号,以促进辐射诱导的皮肤损伤小鼠模型中的伤口愈合

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The skin is impacted by every form of external radiation therapy. However, effective therapeutic options for severe, acute radiation-induced skin reactions are limited. Although platelet-rich plasma (PRP) is known to improve cutaneous wound healing, its effects in the context of high-dose irradiation are still poorly understood. We investigated the regenerative functions of PRP by subjecting the dorsal skin of mice to local irradiation (40?Gy) and exposing HaCaT cells to gamma rays (5?Gy). The cutaneous benefits of PRP were gauged by wound size, histologic features, immunostains, western blot, and transepithelial water loss (TEWL). To assess the molecular effects of PRP on keratinocytes of healing radiation-induced wounds, we evaluated AKT signaling. Heightened expression of keratin 14 (K14) was documented in irradiated HaCaT cells and skin tissue, although the healing capacity of injured HaCaT cells declined. By applying PRP, this capacity was restored via augmented AKT signaling. In our mouse model, PRP use achieved the following: (1) healing of desquamated skin, acutely injured by radiation; (2) activated AKT signaling, improving migration and proliferation of K14 cells; (3) greater expression of involucrin in keratin 10 cells and sebaceous glands; and (4) reduced TEWL, strengthening the cutaneous barrier function. Our findings indicate that PRP enhances the functions of K14 cells via AKT signaling, accelerating the regeneration of irradiated skin. These wound-healing benefits may have merit in a clinical setting.
机译:皮肤受到各种外部放射疗法的影响。然而,有效的急性辐射诱导的皮肤反应的有效治疗选择受到限制。虽然已知富含血小板的血浆(PRP)来改善皮肤伤口愈合,但其在高剂量辐射的背景下的效果仍然很差。我们通过使小鼠背部皮肤对局部辐射(40μl)来调查PRP的再生功能,并将HACAT细胞暴露于γ射线(5?GY)。通过伤口尺寸,组织学特征,免疫抑制,蛋白质印迹和Transepithelial水分(Tewl)测量PrP的皮肤效益。为了评估PrP对愈合辐射诱导的伤口角质细胞的分子效果,我们评估了Akt信号传导。在辐照的HaCAT细胞和皮肤组织中记录了角蛋白14(K14)的提高表达,尽管受伤的HACAT细胞的愈合能力下降。通过应用PRP,通过增强的AKT信号传导来恢复该容量。在我们的小鼠模型中,PRP使用达到了以下内容:(1)愈合脱皮皮肤,急剧造成辐射; (2)活化AKT信号,提高K14细胞的迁移和增殖; (3)在角蛋白10细胞和皮脂腺中更大的表达参霉素; (4)减少TEWL,加强皮肤屏障功能。我们的研究结果表明,PRP通过AKT信号传导增强了K14细胞的功能,加速了辐照皮肤的再生。这些伤口愈合益处可能在临床环境中具有优异。

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