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双近红外波长(脉冲 810nm 和超脉冲 904nm 激光)光生物调节疗法协同增强全层烧伤创面愈合:一种非侵入性方法。

Dual-NIR wavelength (pulsed 810 nm and superpulsed 904 nm lasers) photobiomodulation therapy synergistically augments full-thickness burn wound healing: A non-invasive approach.

机构信息

Pharmacology Division, Defence Institute of Physiology and Allied Sciences (DIPAS), DRDO, Delhi 110 054, India.

Pharmacology Division, Defence Institute of Physiology and Allied Sciences (DIPAS), DRDO, Delhi 110 054, India.

出版信息

J Photochem Photobiol B. 2023 Sep;246:112761. doi: 10.1016/j.jphotobiol.2023.112761. Epub 2023 Jul 25.

Abstract

A thermal burn is the most frequent, distressing form of trauma. Globally, there is a critical necessity to explore novel therapeutic strategies for burn wound care. Combination therapy has marked therapeutic efficacy in positively regulating various phases of wound repair. Photobiomodulation (PBM) is a biophysical, non-thermal therapeutic healing modality to treat chronic non-healing wounds. It hypothesized that PBM using combined NIR wavelengths may absorb through different cellular photoacceptors with varying degrees of tissue penetration, which can potentially regulate the pace of healing. Therefore, the current study investigates the efficacy of dual-NIR wavelength treatment employing pulsed 810 nm and superpulsed 904 nm lasers PBM on transdermal burn repair in rats and unveils the associated molecular mechanistic insights. Rats were randomized into five groups: uninjured skin, burn control (sham-exposed), standalone treatment with pulsed 810 nm laser, superpulsed 904 nm laser, and dual combination groups. The present findings revealed that PBM with dual-NIR wavelength synergistically augmented burn wound healing compared to control and standalone treatments. The efficacy of combined treatment was exhibited by significantly enhanced wound area contraction (α-smooth muscle actin), proliferation (PCNA, cytokeratin-14, TGF-β2), angiogenesis (HIF-1α, CD31), ECM accumulation/ organization (collagen type 3, fibronectin), dermal hydration (AQP3), calcium homeostasis (TRPV3, calmodulin), and bioenergetics activation (CCO, AMPK-α, ATP). Collectively, PBM with dual-NIR wavelength (pulsed/ superpulsed-mode) treatment accelerates full-thickness burn wound healing, which could be used as a non-invasive translational approach in clinical significance in conjunction with existing burn wound care management.

摘要

热烧伤是最常见、最痛苦的创伤形式。在全球范围内,迫切需要探索用于烧伤创面护理的新型治疗策略。联合治疗在积极调控创面修复的各个阶段方面具有显著的治疗效果。光生物调节(PBM)是一种生物物理、非热治疗的愈合方式,用于治疗慢性难愈性创面。研究假设,采用组合近红外波长的 PBM 可能会通过不同的细胞光受体吸收,其穿透程度不同,这可能会调节愈合的速度。因此,本研究调查了采用脉冲 810nm 和超脉冲 904nm 激光的双近红外波长治疗对大鼠透皮烧伤修复的疗效,并揭示了相关的分子机制见解。大鼠随机分为五组:未受伤皮肤、烧伤对照组(假暴露)、单独接受脉冲 810nm 激光治疗、超脉冲 904nm 激光治疗和双组合组。本研究结果表明,与对照组和单独治疗相比,双近红外波长 PBM 协同增强了烧伤创面愈合。联合治疗的效果表现为创面面积收缩(α-平滑肌肌动蛋白)、增殖(PCNA、细胞角蛋白 14、TGF-β2)、血管生成(HIF-1α、CD31)、细胞外基质积累/组织(胶原 3、纤维连接蛋白)、真皮水合作用(AQP3)、钙稳态(TRPV3、钙调蛋白)和生物能激活(CCO、AMPK-α、ATP)显著增强。总之,双近红外波长(脉冲/超脉冲模式)治疗加速全厚度烧伤创面愈合,可与现有的烧伤创面护理管理结合,作为一种非侵入性的转化方法,具有重要的临床意义。

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