Bayat Mohammad, Albright Richard, Hamblin Michael R, Chien Sufan
Price Institute of Surgical Research, University of Louisville, and Noveratech LLC, Louisville, KY, USA.
Department of Biology and Anatomical Sciences, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
J Lasers Med Sci. 2022 Dec 17;13:e69. doi: 10.34172/jlms.2022.69. eCollection 2022.
While a wound caused by a minor cutaneous incision routinely heals in a short time, wounds from major surgical operations might need numerous days to heal and may leave an obvious cicatrix. The use of blue light therapy (BLT) to destroy infectious microorganisms and disrupt biofilm formation could be an efficient method for healing ulcers. This systematic review focused on the effects of BLT in different preclinical studies and clinical models of skin wound healing. Furthermore, this study attempted to determine what main light parameters should be tested in preclinical and clinical studies. The online databases PubMed.gov, Google Scholar, Scopus, Web of Science, and Cochrane were searched using the keywords "blue light" and "wound healing" according to PRISMA guidelines. No publication time limit was enforced. A total of 858 articles were identified, and 17 articles in three distinct categories were included for review. They comprised two articles on humans, fourteen articles on healthy animals, and one article on diabetic animals. Some studies have shown that the application of BLT on preclinical and clinical models of wound healing is able to significantly accelerate the healing process. Few studies, however, have explored the bactericidal effect of BLT on skin injury repair in burn patients. Further preclinical investigations designed to provide a better understanding of the bactericidal effect of BLT using standardized protocols, different BLT wavelengths, and different stages of the wound healing process of infected wounds and ulcers in healthy and diabetic animals should be carried out before clinical trials can be considered. BLT could eventually be a good option for treating infected chronic wounds, including those in diabetic patients.
虽然轻微皮肤切口造成的伤口通常能在短时间内愈合,但大型外科手术造成的伤口可能需要数天才能愈合,并且可能会留下明显的瘢痕。使用蓝光疗法(BLT)来消灭感染性微生物并破坏生物膜形成可能是一种治疗溃疡的有效方法。本系统评价聚焦于蓝光疗法在不同皮肤伤口愈合的临床前研究和临床模型中的效果。此外,本研究试图确定在临床前和临床研究中应测试哪些主要的光照参数。根据PRISMA指南,使用关键词“蓝光”和“伤口愈合”在在线数据库PubMed.gov、谷歌学术、Scopus、科学网和考克兰图书馆中进行检索。未设置出版时间限制。共识别出858篇文章,纳入三类共17篇文章进行综述。其中包括两篇关于人类的文章、十四篇关于健康动物的文章以及一篇关于糖尿病动物的文章。一些研究表明,在伤口愈合的临床前和临床模型中应用蓝光疗法能够显著加速愈合过程。然而,很少有研究探讨蓝光疗法对烧伤患者皮肤损伤修复的杀菌作用。在考虑进行临床试验之前,应开展进一步的临床前研究,以使用标准化方案、不同的蓝光疗法波长以及健康和糖尿病动物感染伤口及溃疡在伤口愈合过程的不同阶段,更好地了解蓝光疗法的杀菌作用。蓝光疗法最终可能是治疗包括糖尿病患者在内的感染性慢性伤口的一个不错选择。