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Platelet-Rich Plasma and Micrografts Enriched with Autologous Human Follicle Mesenchymal Stem Cells Improve Hair Re-Growth in Androgenetic Alopecia. Biomolecular Pathway Analysis and Clinical Evaluation

机译:富含血小板的血浆和富含自体人类卵泡间充质干细胞的微移植物可改善雄激素性脱发症的头发重新生长。生物分子途径分析与临床评价

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摘要

Platelet rich plasma (PRP) and Micrografts containing human follicle mesenchymal stem cells (HF-MSCs) were tried as a potential treatment for androgenetic alopecia (AGA). However, little to no work has yet to be seen wherein the bio-molecular pathway of HF-MSCs or PRP treatments were analyzed. The aims of this work are to report the clinical effectiveness of HF-MSCs and platelet-rich plasma evaluating and reviewing the most updated information related to the bio-molecular pathway. Twenty-one patients were treated with HF-MSCs injections and 57 patients were treated with A-PRP. The Wnt pathway and Platelet derived-growth factors effects were analyzed. 23 weeks after the last treatment with mean hair thickness increments (29 ± 5.0%) over baseline values for the targeted area. 12 weeks after the last injection with A-PRP mean hair count and hair density (31 ± 2%) increases significantly over baseline values. The increment of Wnt signaling in Dermal Papilla Cells evidently is one of the principal factors that enhances hair growth. Signaling from mesenchymal stem cells and platelet derived growth factors positively influences hair growth through cellular proliferation to prolong the anagen phase (FGF-7), inducing cell growth (ERK activation), stimulating hair follicle development (β-catenin), and suppressing apoptotic cues (Bcl-2 release and Akt activation).
机译:富含血小板的血浆(PRP)和含有人卵泡间充质干细胞(HF-MSC)的微移植被尝试作为雄激素性脱发(AGA)的潜在治疗方法。但是,对HF-MSC或PRP处理的生物分子途径进行分析的工作很少甚至没有。这项工作的目的是报告HF-MSC和富含血小板的血浆的临床有效性,评估和审查与生物分子途径有关的最新信息。 HF-MSCs注射治疗21例,A-PRP治疗57例。分析了Wnt途径和血小板衍生生长因子的作用。最后一次治疗后23周,目标区域的平均头发厚度增加(29±5.0%),超过基线值。在最后一次注射A-PRP后12周,平均毛发计数和毛发密度(31±2%)显着高于基线值。真皮乳头细胞中Wnt信号的增加显然是增强毛发生长的主要因素之一。间充质干细胞和血小板源性生长因子的信号通过细胞增殖延长毛发生长期(FGF-7),诱导细胞生长(ERK激活),刺激毛囊发育(β-catenin)和抑制凋亡提示,从而积极影响毛发生长。 (Bcl-2释放和Akt激活)。

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