Department of Plastic and Aesthetic Surgery, Nanfang Hospital of Southern Medical University Guangzhou, Guangzhou, 510515, Guangdong Province, China.
Lasers Med Sci. 2021 Jun;36(4):703-713. doi: 10.1007/s10103-020-03159-z. Epub 2020 Oct 28.
Androgenetic alopecia (AGA) is a global challenge, affecting a large number of people worldwide. Efficacy of the existed treatments can barely meet the demands of patients. Patients who are poorly responding to those treatments are seeking for a more effective and suitable technique to treat their disease. Low-level light therapy (LLLT) is a newly developed technique, which has been proved to stimulate hair growth. Based on the function principle of LLLT in other domains and refer to the published literatures, we write this review to neaten and elucidate the possible mechanism of LLLT in the treatment of AGA. A review of published literature which is associated with keywords LLLT, photobiomodulation, AGA, treatment, hair growth, and mechanism was performed to elucidate the proposed mechanism of LLLT in the treatment of AGA. The present study shows that LLLT can accelerate hair growth in AGA patients. The proposed mechanism of LLLT in treating AGA may vary among different specialists. But we can summarize the consensual mechanisms as follows; low-level light absorbed by chromophores can lead to the production of nitric oxide (NO) and the modulation of reactive oxygen species (ROS). These mobilized molecules subsequently activate redox-related signaling pathways in hair follicle cells and perifollicular cells. Finally, these activated cells participate in the regrowth of hair follicle. Even though the efficacy of LLLT in the treatment of AGA in both men and women has already been confirmed, the present studies focusing on discovering LLLT are still inadequate and unsystematic. More studies are needed to standardize the optimum treatment parameters applied in promoting hair growth and determine the long-term safety and efficacy of LLLT. Current recognitions about the mechanisms of LLLT, mainly focused on the molecules that may take effect, neglected different cellular components that are functional in the hair follicle macro-environment.
雄激素性脱发(AGA)是一个全球性的挑战,影响了全球大量的人。现有的治疗方法的疗效几乎无法满足患者的需求。那些对这些治疗反应不佳的患者正在寻求更有效和更合适的技术来治疗他们的疾病。低水平光疗(LLLT)是一种新开发的技术,已被证明可刺激头发生长。基于 LLLT 在其他领域的功能原理,并参考已发表的文献,我们撰写了这篇综述,以整理和阐明 LLLT 在治疗 AGA 中的可能机制。对与 LLLT、光生物调节、AGA、治疗、头发生长和机制等关键词相关的已发表文献进行了综述,以阐明 LLLT 在治疗 AGA 中的提出的机制。本研究表明,LLLT 可以加速 AGA 患者的头发生长。LLLT 治疗 AGA 的提出的机制可能因不同的专家而异。但是,我们可以总结出以下共识机制:发色团吸收的低水平光可以导致一氧化氮(NO)的产生和活性氧(ROS)的调节。这些动员的分子随后激活毛囊细胞和毛囊周围细胞中的氧化还原相关信号通路。最后,这些激活的细胞参与毛囊的再生。尽管 LLLT 在男性和女性 AGA 治疗中的疗效已经得到证实,但目前专注于发现 LLLT 的研究仍然不足且缺乏系统性。需要更多的研究来规范促进头发生长应用的最佳治疗参数,并确定 LLLT 的长期安全性和疗效。目前对 LLLT 机制的认识,主要集中在可能起作用的分子上,而忽略了在毛囊宏观环境中起作用的不同细胞成分。