Conductive Bio-Harvesting Tonic (CBT) with an Anti-Dandruff Effect Enhances Hair Growth by Utilizing Naturally Generated Electric Energy during Human Activities.

IF 2.5 4区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Journal of microbiology and biotechnology Pub Date : 2024-11-28 Epub Date: 2024-09-06 DOI:10.4014/jmb.2408.08014
Jisun Kim, Yoonsuk Lee, Jungbum Kim, Chai Won Park, Hyeonhui Song, Jinkee Hong, Sangmin Lee, Won Hee Jung, Joo-Hyun Hong, Ki Hyun Kim, Wonhwa Lee
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Abstract

Alopecia, while not life-threatening, significantly impacts mental health, identity, and self-esteem of those afflicted. Current pharmacological and surgical treatments often have side effects and are limited in their ability to regenerate hair follicles (HF). Therefore, effective solutions for alopecia remain elusive. We developed an innovative hair tonic capable of stimulating HF regeneration by harnessing abandoned electric energy generated during human activities, such as the frictional electric field from walking and the electric fields from electronic devices. We devised a convenient, non-volatile, and conductive hair tonic to capture these naturally occurring electric fields. We identified 6-pentyl-α-pyrone (6PP) from Trichoderma gamsii as an antifungal agent effective against the dandruff-associated fungus Malassezia that can influence alopecia and adopted it into our conductive bio-harvesting tonic (CBT). Testing on hair follicle dermal papilla cells (HFDPC) and SKH1 mice showed that CBT significantly enhanced HF proliferation and increased growth factors in vitro and in vivo. In SKH1 mice, application of CBT under electric stimulation visibly increased hair shaft length and follicle counts. Additionally, tests on actual human hair follicles demonstrated delayed hair follicle regression when electric stimulation and 6PP were applied. In conclusion, our innovative CBT offers a promising and convenient approach for improving hair growth and combating alopecia.

具有去屑效果的导电生物采集营养剂(CBT)可利用人体活动时自然产生的电能促进头发生长。
脱发虽然不会危及生命,但会严重影响患者的心理健康、身份认同和自尊。目前的药物和手术治疗通常会产生副作用,而且再生毛囊(HF)的能力有限。因此,治疗脱发的有效解决方案仍然遥遥无期。我们开发了一种创新的补发剂,能够利用人体活动时产生的废弃电能(如行走时的摩擦电场和电子设备产生的电场)刺激毛囊再生。我们设计了一种方便、非挥发性和导电性的头发滋补剂来捕捉这些自然产生的电场。我们从毛癣菌(Trichoderma gamsii)中发现了 6-戊基-α-吡喃酮(6PP),它是一种抗真菌剂,能有效对抗与头皮屑有关的真菌马拉色菌(Malassezia),而马拉色菌会对脱发产生影响。在毛囊真皮乳头细胞(HFDPC)和 SKH1 小鼠身上进行的测试表明,CBT 在体外和体内都能显著促进 HF 增殖并增加生长因子。在 SKH1 小鼠中,在电刺激下使用 CBT 能明显增加毛干长度和毛囊数量。此外,在实际人体毛囊上进行的测试表明,当施加电刺激和 6PP 时,毛囊的衰退会延迟。总之,我们的创新型 CBT 为改善头发生长和防治脱发提供了一种前景广阔的便捷方法。
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来源期刊
Journal of microbiology and biotechnology
Journal of microbiology and biotechnology BIOTECHNOLOGY & APPLIED MICROBIOLOGY-MICROBIOLOGY
CiteScore
5.50
自引率
3.60%
发文量
151
审稿时长
2 months
期刊介绍: The Journal of Microbiology and Biotechnology (JMB) is a monthly international journal devoted to the advancement and dissemination of scientific knowledge pertaining to microbiology, biotechnology, and related academic disciplines. It covers various scientific and technological aspects of Molecular and Cellular Microbiology, Environmental Microbiology and Biotechnology, Food Biotechnology, and Biotechnology and Bioengineering (subcategories are listed below). Launched in March 1991, the JMB is published by the Korean Society for Microbiology and Biotechnology (KMB) and distributed worldwide.
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