Hair Growth Promoting Effect of TrichoxidilTM: A New Natural Compound for Hair Loss

Glaucia H O Labinas, F. Amaral, Valeria Maria de Souza Antunes, M. Jardim, L. Bella, C. R. Oliveira
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Abstract

Background: Androgenetic alopecia (AGA) is a most common condition of hair loss. Thus, the present study aimed to investigate the effect of TrichoxidilTM, a phytocomplex obtained from a blend of essential oils, in the treatment of hair loss caused by AGA. Methods: The CCD1072Sk cells were cultured for the 24-hour cell viability assessment and cytotoxicity of TrichoxidilTM. The expression of mRNA levels from KGF, IGF-1, and VEGF in fibroblasts was evaluated by RT-qPCR. Thirty-three volunteers, diagnosed with AGA, men and women, aged between 25 and 50 years, were divided into Control group, without treatment (n = 5); TrichosolTM vehicle group, without active (n = 5); Hydroalcoholic vehicle group, without active (n = 4); TrichosolTM vehicle group, with 2.5% minoxidil (n = 5); Hydroalcoholic vehicle group, with 2.5% minoxidil (n = 5); TrichosolTM group with 2.5% TrichoxidilTM (n = 5) and Hydroalcoholic vehicle group with 2.5% TrichoxidilTM (n = 4) to dermoscopic and histologic. Results: Fibroblasts exhibited higher proliferation when treated with higher concentrations of TrichoxidilTM. TrichoxidilTM significantly increased the expression of KGF, IGF-1, and VEGF mRNA in fibroblasts cells. Analysis of the capillary density showed that TrichoxidilTM associated with TrichosolTM vehicle, was the most effective association. In addition, it was observed an increased more effectively the percentage of anagen phase and reduction of the telogen when compared to other formulations. Conclusion: TrichoxidilTM promoted proliferative effects and positively modulated the expression of growth factors IGF-1, VEGF, and KGF, being a promising candidate for the treatment of hair loss caused by AGA.
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一种新的天然脱发化合物TrichoxidilTM促进头发生长的作用
背景:雄激素性脱发(AGA)是一种最常见的脱发。因此,本研究旨在研究TrichoxidilTM(一种从精油混合物中获得的植物复合物)在治疗AGA引起的脱发中的作用。方法:培养CCD1072Sk细胞,测定TrichoxidilTM的24小时细胞活力和细胞毒性。RT-qPCR检测成纤维细胞中KGF、IGF-1和VEGF mRNA表达水平。33名被诊断为AGA的志愿者,年龄在25 - 50岁之间,男女均有,分为对照组,不进行治疗(n = 5);TrichosolTM车辆组,无活性(n = 5);氢酒精载体组,无活性(n = 4);TrichosolTM整车组,2.5%米诺地尔(n = 5);氢酒精车辆组,2.5%米诺地尔(n = 5);2.5% TrichoxidilTM组(n = 5)和2.5% TrichoxidilTM氢酒精载体组(n = 4)进行皮肤镜和组织学检查。结果:高浓度TrichoxidilTM处理成纤维细胞时,成纤维细胞增殖能力增强。TrichoxidilTM可显著提高成纤维细胞中KGF、IGF-1和VEGF mRNA的表达。毛细密度分析表明,TrichoxidilTM与TrichosolTM载体的相关性最强。此外,与其他配方相比,观察到更有效地增加了生长期的百分比和减少了休止期。结论:TrichoxidilTM具有促增殖作用,并能正向调节生长因子IGF-1、VEGF、KGF的表达,是治疗AGA所致脱发的有希望的候选药物。
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