微损伤诱导的肿瘤坏死因子-α激增刺激小鼠毛发再生。

IF 2.8 4区 医学 Q2 DERMATOLOGY
Guang-Ri Jin, Su Bin Hwang, Hyeon Ju Park, Bog-Hieu Lee, William A Boisvert
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引用次数: 0

摘要

摘发等毛囊损伤后释放的肿瘤坏死因子(TNF)-α具有激活毛发再生的作用。微针(MN)处理应用于头皮,以增加渗透性和促进任何数量的化合物的输送。由于MN处理会导致表皮损伤,尽管是轻微的,我们推断这种处理会导致暂时性的TNF-α激增,从而促进头发再生。方法:为了研究MN诱导的微损伤和TNF-α对毛发生长的影响,我们将C57BL/6N小鼠分为6个实验组:1)阴性对照(NC)、2)拔毛阳性对照(PK)和3)MN治疗系统(MTS)小鼠;与上述相同的三组:4)NCB组,5)PKB组,6)MTSB组,用TNF-α阻断剂治疗3周。结果:损伤后,PK组和MTS组分别在第3天和第6天出现TNF-α升高。与NC组相比,PK组第3天、MTS组第6天Wnt蛋白和VEGF表达明显升高。创面愈合后,只有MTS和PK组表皮增厚,HF长度变长。在治疗后的2周内,TNF-α阻断剂治疗的受伤小鼠的毛发生长速度要慢得多。结论:微损伤通过TNF-α/Wnt/VEGF激增刺激创面愈合机制诱导毛发生长,阻断TNF-α可抑制毛发生长。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microinjury-Induced Tumor Necrosis Factor-α Surge Stimulates Hair Regeneration in Mice.

Introduction: Tumor necrosis factor (TNF)-α released after follicular injury such as that caused by plucking plays a role in the activation of hair regeneration. Microneedle (MN) treatment is applied to the scalp to increase permeability and facilitate the delivery of any number of compounds. Because the MN treatment causes injury to the epidermis, albeit minor, we reasoned that this treatment would lead to a temporary TNF-α surge and thereby promote hair regeneration.

Methods: To investigate the effects of MN-treatment-induced microinjury and TNF-α on hair growth, we used C57BL/6N mice which were divided into six experimental groups: three groups of 1) negative control (NC), 2) plucking positive control (PK), and 3) MN therapy system (MTS) mice; and three groups identical to above were treated with a TNF-α blocker for 3 weeks: 4) NCB, 5) PKB, and 6) MTSB group.

Results: After injury, TNF-α surge occurred on day 3 in the PK group and on day 6 in the MTS group. Wnt proteins and VEGF expression were markedly increased in the PK group on day 3 and on day 6 in the MTS group compared to the NC group. Following wound healing, only MTS and PK groups displayed thickened epidermis and longer HF length. Within the 2 weeks following treatment, the rate of hair growth was much slower in the injured mice treated with the TNF-α blocker.

Conclusion: Our findings indicate that microinjury stimulates the wound-healing mechanism via TNF-α/Wnt/VEGF surge to induce hair growth, and that blocking TNF-α inhibits this growth process.

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来源期刊
Skin Pharmacology and Physiology
Skin Pharmacology and Physiology 医学-皮肤病学
CiteScore
5.20
自引率
7.40%
发文量
23
审稿时长
>12 weeks
期刊介绍: In the past decade research into skin pharmacology has rapidly developed with new and promising drugs and therapeutic concepts being introduced regularly. Recently, the use of nanoparticles for drug delivery in dermatology and cosmetology has become a topic of intensive research, yielding remarkable and in part surprising results. Another topic of current research is the use of tissue tolerable plasma in wound treatment. Stimulating not only wound healing processes but also the penetration of topically applied substances into the skin, this novel technique is expected to deliver very interesting results.
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