Department of Pharmacy, the Second Affiliated Hospital, School of Medicine, Zhejiang University, Hangzhou 310009, PR China; Institute of Pharmaceutics, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, PR China.
Institute of Pharmaceutics, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, PR China.
J Control Release. 2022 Oct;350:204-214. doi: 10.1016/j.jconrel.2022.08.007. Epub 2022 Aug 19.
Androgenetic alopecia (AGA), the most prevalent type of hair loss in clinic, is induced partly by insufficient perifollicular vascularization. Here we designed a dissolvable microneedles (MNs) patch that was loaded with conditioned media (CM) derived from hypoxia-pretreated mesenchymal stem cells, which contained elevated HIF-1α. The CM-integrated MNs patch (designated as CM-MNs) can puncture the stratum corneum and deliver the pro-angiogenic factors directly into skin in a one-step and minimally invasive manner. Meanwhile, the administration of CM-MNs induced a certain mechanical stimulation on the skin, which can also promote neovascularization. With the combined effects of the pro-angiogenic factors in CM and the mechanical stimulation induced by MNs, CM-MNs successfully boosted perifollicular vascularization, and activated hair follicle stem cells, thereby inducing notably faster hair regeneration at a lower administration frequency on AGA mouse model compared with minoxidil. Furthermore, we proved that the inhibition of perifollicular angiogenesis restrained the awakening of hair follicle stem cells, elucidating the tight correlation between perifollicular angiogenesis and the activation of hair follicle stem cells. The innovative integration of CM and MNs holds great promise for clinical AGA treatment and indicates that boosting angiogenesis around hair follicles is an effective strategy against AGA.
雄激素性脱发(AGA)是临床上最常见的脱发类型,部分由毛囊周围血管化不足引起。在这里,我们设计了一种可溶解的微针贴片,其中装载了缺氧预处理间充质干细胞来源的条件培养基(CM),其中含有高表达的 HIF-1α。CM 整合的微针贴片(命名为 CM-MNs)可以一步、微创地刺穿角质层,将促血管生成因子直接递送至皮肤中。同时,CM-MNs 的给药对皮肤产生一定的机械刺激,也可以促进新血管生成。CM 中的促血管生成因子和微针引起的机械刺激的联合作用,成功地促进了毛囊周围血管化,并激活了毛囊干细胞,从而在 AGA 小鼠模型中以较低的给药频率显著加快了毛发再生,效果优于米诺地尔。此外,我们证明了毛囊周围血管生成的抑制抑制了毛囊干细胞的激活,阐明了毛囊周围血管生成与毛囊干细胞激活之间的紧密相关性。CM 和微针的创新性整合为临床 AGA 治疗带来了巨大的希望,表明促进毛囊周围的血管生成是治疗 AGA 的有效策略。