Effects of photobiomodulation on human hair dermal papilla cells with various light modes and light parameters

IF 3.9 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of photochemistry and photobiology. B, Biology Pub Date : 2025-01-01 DOI:10.1016/j.jphotobiol.2024.113080
Yi Ren , Angze Li , Xiaojing Miao , Longfei Huo , Haokuan Qin , Hui Jiang , Muqing Liu
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Abstract

Androgenetic alopecia (AGA) is a prevalent hair loss disorder and influenced by genetic, hormonal, and environmental factors. Minoxidil and finasteride have been widely used for treating AGA. However, the side effects associated with these drugs often lead to poor patient compliance. In contrast, photobiomodulation (PBM), due to its safety and non-invasiveness, holds promising prospects for use. Although the promoting effects of PBM on AGA have been reported, the mechanisms by which PBM affects dermal papilla cells (DPCs) remain largely unknown. Hence, this study explored the impacts of both continuous wave (CW) and pulsed wave (PW) PBM on DPCs, and revealed the underlying actions of light parameters in PBM. Orthogonal experiments were conducted to evaluate the effects of CW PBM on DPCs at varying irradiances and doses, indicating that irradiance was the crucial parameter, as well as cell viability and proliferation were maximized at 8 mW/cm2 and 8 J/cm2. For PW PBM, response surface methodology was employed to determine the influences of duty cycles, frequencies, and doses. The findings highlighted frequency as a primary factor, with the optimum cell viability observed at peak irradiance 10 mW/cm2, duty cycle 80 %, 500 Hz, and 8.8 J/cm2. Notably, PBM could enhance cell viability, proliferation, and migration in DPCs by activating the Wnt/β-Catenin signaling and suppressing Transforming Growth Factor signaling, particularly when applied in pulsed mode. Overall, this study determined the key light parameters that influence PBM effectiveness, further identified the optimal light conditions, and preliminary revealed into the mechanisms of PBM in DPCs, highlighting that PW PBM may be a competitive therapeutic option for alleviating AGA in the future.
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不同光模式和光参数对光生物调节对人毛发真皮乳头细胞的影响。
雄激素性脱发(AGA)是一种常见的脱发疾病,受遗传、激素和环境因素的影响。米诺地尔和非那雄胺已被广泛用于治疗AGA。然而,与这些药物相关的副作用往往导致患者依从性差。相比之下,光生物调节(PBM)因其安全性和非侵入性而具有广阔的应用前景。虽然已经报道了PBM对AGA的促进作用,但PBM影响真皮乳头细胞(DPCs)的机制仍然很大程度上未知。因此,本研究探讨了连续波(CW)和脉冲波(PW) PBM对DPCs的影响,并揭示了光参数在PBM中的潜在作用。通过正交试验评价不同辐照度和剂量下连续波PBM对DPCs的影响,结果表明辐照度是影响细胞活力和增殖的关键因素,8 mW/cm2和8 J/cm2时细胞活力和增殖能力最大。对于PW PBM,采用响应面法确定占空比、频率和剂量的影响。研究结果强调频率是一个主要因素,在峰值辐照度为10 mW/cm2,占空比为80%,500 Hz和8.8 J/cm2时观察到最佳细胞活力。值得注意的是,PBM可以通过激活Wnt/β-Catenin信号传导和抑制转化生长因子信号传导来增强DPCs中的细胞活力、增殖和迁移,特别是在脉冲模式下应用时。总的来说,本研究确定了影响PBM疗效的关键光参数,进一步确定了最佳光条件,并初步揭示了PBM在DPCs中的作用机制,强调PW PBM可能是未来缓解AGA的一种有竞争力的治疗选择。
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来源期刊
CiteScore
12.10
自引率
1.90%
发文量
161
审稿时长
37 days
期刊介绍: The Journal of Photochemistry and Photobiology B: Biology provides a forum for the publication of papers relating to the various aspects of photobiology, as well as a means for communication in this multidisciplinary field. The scope includes: - Bioluminescence - Chronobiology - DNA repair - Environmental photobiology - Nanotechnology in photobiology - Photocarcinogenesis - Photochemistry of biomolecules - Photodynamic therapy - Photomedicine - Photomorphogenesis - Photomovement - Photoreception - Photosensitization - Photosynthesis - Phototechnology - Spectroscopy of biological systems - UV and visible radiation effects and vision.
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