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低频双频超声介导微泡空化增强经皮米诺地尔递送和毛发生长。

Low-frequency dual-frequency ultrasound-mediated microbubble cavitation for transdermal minoxidil delivery and hair growth enhancement.

机构信息

Graduate Institute of Biomedical Engineering, National Taiwan University of Science and Technology, Taipei, 10607, Taiwan.

Department of Biomedical Engineering, National Defense Medical Center, Taipei, 11490, Taiwan.

出版信息

Sci Rep. 2020 Mar 9;10(1):4338. doi: 10.1038/s41598-020-61328-0.

Abstract

Ultrasound (US) has been found to rejuvenate and invigorate the hair follicles, increase the size of hair shafts, and promote new hair growth. Our present study found that dual-frequency US-mediated microbubble (MB) cavitation significantly enhanced minoxidil (Mx) delivery in both in vitro and in vivo models, while increasing the hair growth efficacy compared to single-frequency US sonication. The in vitro experiments showed that cavitation activity was enhanced more significantly during dual-frequency sonication than single-frequency sonication in higher concentration of MBs. The pigskin penetration depth in the group in which dual-frequency US was combined with MBs was 1.54 and 2.86 times greater than for single-frequency US combined with MBs and in the control group, respectively; the corresponding increases in the release rate of Mx at 18 hours in in vitro Franz-diffusion-cell experiments were 24.9% and 43.7%. During 21 days of treatment in C57BL/6J mice experiments, the growth rate at day 11 in the group in which dual-frequency US was combined with MBs increased by 2.07 times compared to single-frequency US combined with MBs. These results indicate that dual-frequency US-mediated MB cavitation can significantly increase both skin permeability and transdermal drug delivery. At the same US power density, hair growth was greater in the group with dual-frequency US plus MBs than in the group with single-frequency US plus MBs, without damaging the skin in mice.

摘要

超声(US)已被发现可使毛囊恢复活力并增强活力,增加毛干的尺寸,并促进头发生长。我们目前的研究发现,双频 US 介导的微泡(MB)空化显着增强了米诺地尔(Mx)在体外和体内模型中的递送,同时与单频 US 声处理相比,提高了头发生长效果。体外实验表明,在更高浓度的 MB 中,双频超声的空化活性比单频超声增强得更明显。双频 US 联合 MB 组的猪皮渗透深度分别比单频 US 联合 MB 组和对照组高 1.54 倍和 2.86 倍;体外 Franz 扩散池实验中 18 小时时 Mx 的释放率相应增加了 24.9%和 43.7%。在 C57BL/6J 小鼠实验的 21 天治疗期间,双频 US 联合 MB 组的第 11 天的生长速度比单频 US 联合 MB 组快 2.07 倍。这些结果表明,双频 US 介导的 MB 空化可以显着增加皮肤通透性和经皮药物递送。在相同的 US 功率密度下,双频 US 加 MB 组的毛发生长大于单频 US 加 MB 组,而不会在小鼠皮肤中造成损伤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e1ed/7062896/93d72a47d4d8/41598_2020_61328_Fig1_HTML.jpg

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