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阿拉伯胶增强米诺地尔纳米晶体分散体的毛囊靶向药物递送。

Gum Arabic Enhances Hair Follicle-Targeting Drug Delivery of Minoxidil Nanocrystal Dispersions.

作者信息

Oaku Yoshihiro, Shiroyama Sorato, Otake Hiroko, Yajima Yuya, Abe Akinari, Yamamoto Naoki, Nagai Noriaki

机构信息

Frontier Research Center, Taisho Pharmaceutical Co., Ltd.

Faculty of Pharmacy, Kindai University.

出版信息

Biol Pharm Bull. 2024;47(12):2083-2091. doi: 10.1248/bpb.b24-00697.

Abstract

In this study, we attempted to enhance the delivery of minoxidil (MXD) nanocrystals into hair follicles for efficacious hair growth treatment. We applied a bead milling method and designed an MXD nanocrystal dispersion containing methylcellulose (MC) and gum arabic (GA), termed MG-MXD@NP, with a particle size of 110 nm. In vivo studies in C57BL/6 mice showed that MG-MXD@NP improved MXD delivery to the skin tissue, hair bulges, and hair bulbs, resulting in earlier and superior hair growth compared with a commercially available MXD lotion (Riup 5%, CA-MXD). These findings were consistent with the increased MXD contents observed in the hair bulge and hair bulb regions in the MG-MXD@NP-treated mice, and suggested a correlation between the efficiency of MXD delivery and efficacy of promotion of hair growth by products containing MXD. Furthermore, delivery of MXD using MG-MXD@NP was associated with elevated expression levels of CD34 and CD200, markers of hair follicle epithelial stem cells, which are crucial for promoting hair growth. Thus, it is possible that the upregulation of CD34 and CD200 in the MG-MXD@NP-treated mice reflects activation of the papilla cells and hair follicle stem cells known to be closely associated with hair growth enhancement. In conclusion, MG-MXD@NP, containing MXD nanocrystals in combination with MC and GA, exhibited a superior hair growth effect as compared with conventional MXD formulations. These findings suggest that this novel delivery method for MXD could represent a promising treatment approach for hair loss.

摘要

在本研究中,我们试图增强米诺地尔(MXD)纳米晶体向毛囊的递送,以进行有效的头发生长治疗。我们采用了珠磨法,并设计了一种含有甲基纤维素(MC)和阿拉伯树胶(GA)的MXD纳米晶体分散体,称为MG-MXD@NP,其粒径为110nm。在C57BL/6小鼠体内进行的研究表明,与市售的MXD洗剂(Riup 5%,CA-MXD)相比,MG-MXD@NP改善了MXD向皮肤组织、毛球和毛囊的递送,从而使毛发生长得更早且更好。这些发现与在MG-MXD@NP处理的小鼠的毛球和毛囊区域中观察到的MXD含量增加一致,并表明MXD递送效率与含MXD产品促进头发生长的功效之间存在相关性。此外,使用MG-MXD@NP递送MXD与毛囊上皮干细胞标志物CD34和CD200的表达水平升高有关,这些标志物对于促进头发生长至关重要。因此,MG-MXD@NP处理的小鼠中CD34和CD200的上调可能反映了已知与头发生长增强密切相关的乳头细胞和毛囊干细胞的激活。总之,与传统的MXD制剂相比,含有MXD纳米晶体与MC和GA组合的MG-MXD@NP表现出优异的头发生长效果。这些发现表明,这种新型的MXD递送方法可能是一种有前途的脱发治疗方法。

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