Department of Biology, University of Alabama at Birmingham, Birmingham, AL, USA.
Rivertown Therapeutics, Inc, Dobbs Ferry, NY, USA.
Pigment Cell Melanoma Res. 2021 Jan;34(1):89-100. doi: 10.1111/pcmr.12913. Epub 2020 Jul 24.
Gray hair is a visible sign of tissue degeneration during aging. Graying is attributed to dysfunction of melanocyte stem cells (McSCs) that results in depletion of their melanin-producing progeny. This non-lethal phenotype makes the hair follicle and its pigment system an attractive model for investigating mechanisms that contribute to tissue aging and therapeutic strategies to combat this process. One potential combination therapeutic is RT1640, which is comprised of two drugs that are known to stimulate hair growth (cyclosporine A [CsA] and minoxidil), along with RT175, a non-immunosuppressive immunophilin ligand that is implicated in tissue regeneration. Using the ionizing radiation-induced acute mouse model of hair graying, we demonstrate that RT1640, over CsA alone, promotes regeneration of the hair pigment system during and following treatment. In non-irradiated mice, RT1640 is also physiologically active and successfully speeds hair growth and expands the McSC pool. It appears that this effect relies on the combined activities of the three drugs within RT1640 to simultaneously activate hair growth and McSCs as RT175 alone was insufficient to induce hair cycling in vivo, yet sufficient to drive the upregulation of the melanogenic program in vitro. This study sets the stage for further investigation into RT1640 and its components in McSC biology and, ultimately, melanocyte hypopigmentary disorders associated with disease and aging.
灰发是组织衰老过程中组织退化的可见标志。头发变白归因于黑素细胞干细胞 (McSCs) 的功能障碍,导致其产生黑色素的后代耗尽。这种非致命表型使毛囊及其色素系统成为研究导致组织衰老的机制以及对抗这一过程的治疗策略的理想模型。一种潜在的联合治疗药物是 RT1640,它由两种已知能刺激头发生长的药物(环孢素 A [CsA] 和米诺地尔)以及 RT175 组成,后者是非免疫抑制型免疫亲和素配体,与组织再生有关。使用电离辐射诱导的急性小鼠灰发模型,我们证明 RT1640 与单独使用 CsA 相比,在治疗期间和之后促进了毛发色素系统的再生。在未照射的小鼠中,RT1640 也具有生理活性,可成功加速头发生长并扩大 McSC 池。这种效果似乎依赖于 RT1640 中三种药物的联合作用,可同时激活头发生长和 McSCs,因为 RT175 单独不足以在体内诱导毛发周期,但足以在体外上调黑色素生成程序。本研究为进一步研究 RT1640 及其在 McSC 生物学中的成分奠定了基础,并最终为与疾病和衰老相关的黑素细胞色素减退障碍奠定了基础。