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首页> 外文期刊>Biomedicine & pharmacotherapy =: Biomedecine & pharmacotherapie >Human platelet lysate versus minoxidil stimulates hair growth by activating anagen promoting signaling pathways
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Human platelet lysate versus minoxidil stimulates hair growth by activating anagen promoting signaling pathways

机译:人血小板裂解物与米诺地尔通过激活毛发生长因子促进信号通路刺激头发生长

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Minoxidil and human platelet lysate (HPL) are commonly used to treat patients with hair loss. However, the roles of HPL versus minoxidil in hair follicle biology largely remain unknown. Here, we hypothesized that bulge and dermal papilla (DP) cells may express specific genes, including Kras, Erk, Akt, Shh and beta-catenin after exposure to minoxidil or HPL. The mouse hair follicles were isolated on day 10 after depilation and bulge or DP regions were dissected. The bulge and DP cells were cultured for 14 days in DMEM/ F12 medium. Then, the cells were treated with 100 mu M minoxidil and 10% HPL for 10 days. Nuclear morphology was identified using DAPi staining. Reverse transcriptase and real-time polymerase chain reaction (PCR) analysis were also performed to examine the expression of Kras, Erk, Akt, Shh and b-catenin mRNA levels in the treated bulge and DP regions after organ culture. Here, we found that minoxidil influences bulge and DP cell survival (P < 0.05). Apoptosis in DP cells was also meaningfully decreased by HPL treatment (P = 0.014). In addition, Kras, Akt, Erk, Shh and b-catenin mRNA levels were changed in response to minoxidil treatment in both bulge and DP cells. HPL mediated Erk upregulation in both bulge and DP cells (P < 0.05), but Kras and Akt mRNA levels were not considerably different in the HPL-treated cells. beta-catenin mRNA level was also significantly increased in the bulge region by HPL. We also found that Shh mRNA level was considerably higher in HPL-treated bulge cells than in minoxidiltreated bulge cells. In contrast, the expression of beta-cateinin and Shh in the DP cells was not meaningfully increased after treatment with HPL. Our results suggest that minoxidil and HPL can promote hair growth by activating the main anagen inducing signaling pathways. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:米诺地尔和人血小板裂解物(HPL)通常用于治疗脱发患者。但是,HPL与米诺地尔在毛囊生物学中的作用仍然未知。在这里,我们假设膨大和真皮乳头(DP)细胞在暴露于米诺地尔或HPL后可能表达特定基因,包括Kras,Erk,Akt,Shh和β-catenin。在脱毛后第10天分离小鼠毛囊,并切出隆起或DP区域。将膨胀的和DP细胞在DMEM / F12培养基中培养14天。然后,将细胞用100μM米诺地尔和10%HPL处理10天。使用DAPi染色鉴定核形态。还进行了逆转录酶和实时聚合酶链反应(PCR)分析,以检查器官培养后在处理的隆起和DP区域中Kras,Erk,Akt,Shh和b-catenin mRNA的表达。在这里,我们发现米诺地尔会影响凸起和DP细胞存活(P <0.05)。 HPL处理还可以显着降低DP细胞的凋亡(P = 0.014)。此外,在鼓胀和DP细胞中,米诺地尔治疗均能改变Kras,Akt,Erk,Shh和b-catenin mRNA水平。在隆突细胞和DP细胞中,HPL介导的Erk上调(P <0.05),但是在HPL处理的细胞中,Kras和Akt mRNA水平没有显着差异。 β-连环蛋白mRNA水平在HPL的隆起区域也显着增加。我们还发现,在HPL处理的膨胀细胞中,Shh mRNA水平明显高于在用微氧化处理的膨胀细胞中。相反,用HPL处理后,DP细胞中β-cateinin和Shh的表达没有明显增加。我们的结果表明,米诺地尔和HPL可通过激活主要的生长期诱导信号通路来促进头发生长。 (C)2016 Elsevier Masson SAS。版权所有。

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