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光生物调节疗法通过改变体视学参数、微小RNA-21和FGF2表达来改善炎症反应。

Photobiomodulation Therapy Improves Inflammatory Responses by Modifying Stereological Parameters, microRNA-21 and FGF2 Expression.

作者信息

Amini Abdollah, Ghasemi Moravej Fahimeh, Mostafavinia Atarodalsadat, Ahmadi Hossein, Chien Sufan, Bayat Mohammad

机构信息

Department of Biology and Anatomical Sciences, Shahid Beheshti University of Medical Sciences, Tehran, Iran.

Department of Anatomy, Faculty of Medicine, Tehran Medical Sciences, Islamic Azad University, Tehran, Iran.

出版信息

J Lasers Med Sci. 2023 May 18;14:e16. doi: 10.34172/jlms.2023.16. eCollection 2023.

Abstract

Photobiomodulation treatment (PBMT) is a relatively invasive method for treating wounds. An appropriate type of PBMT can produce desired and directed cellular and molecular processes. The aim of this study was to investigate the impacts of PBMT on stereological factors, bacterial count, and the expression of microRNA-21 and FGF2 in an infected, ischemic, and delayed wound healing model in rats with type one diabetes mellitus. A delayed, ischemic, and infected wound was produced on the back skin of all 24 DM1 rats. Then, they were put into 4 groups at random (n=6 per group): 1=Control group day4 (CG); 2=Control group day 8 (CG); 3=PBMT group day4 (PG), in which the rats were exposed to PBMT and killed on day 4; 4=PBMT group day8 (PG), in which the rats received PBMT and they were killed on day 8. The size of the wound, the number of microbial colonies, stereological parameters, and the expression of microRNA-21 and FGF2 were all assessed in this study throughout the inflammation (day 4) and proliferation (day 8) stages of wound healing. On days 4 and 8, we discovered that the PG and PG groups significantly improved stereological parameters in comparison with the same CG groups. In terms of ulcer area size and microbiological counts, the PG and PG groups performed much better than the same CG groups. Simultaneously, the biomechanical findings in the PG and PG groups were much more extensive than those in the same CG groups. On days 4 and 8, the expression of FGF2 and microRNA-21 was more in all PG groups than in the CG groups (<0.01). PBMT significantly speeds up the repair of ischemic and MARS-infected wounds in DM1 rats by lowering microbial counts and modifying stereological parameters, microRNA-21, and FGF2 expression.

摘要

光生物调节疗法(PBMT)是一种治疗伤口的相对侵入性较小的方法。适当类型的PBMT可以产生预期的和定向的细胞及分子过程。本研究的目的是在1型糖尿病大鼠的感染、缺血和延迟伤口愈合模型中,研究PBMT对体视学因素、细菌计数以及微小RNA-21和FGF2表达的影响。在所有24只DM1大鼠的背部皮肤制造一个延迟、缺血和感染的伤口。然后,将它们随机分为4组(每组n = 6):1 = 第4天对照组(CG);2 = 第8天对照组(CG);3 = 第4天PBMT组(PG),该组大鼠接受PBMT并在第4天处死;4 = 第8天PBMT组(PG),该组大鼠接受PBMT并在第8天处死。在伤口愈合的炎症(第4天)和增殖(第8天)阶段,本研究评估了伤口大小、微生物菌落数量、体视学参数以及微小RNA-21和FGF2的表达。在第4天和第8天,我们发现PG组和PG组与相同的CG组相比,体视学参数有显著改善。在溃疡面积大小和微生物计数方面,PG组和PG组比相同的CG组表现要好得多。同时,PG组和PG组的生物力学结果比相同的CG组更为显著。在第4天和第8天,所有PG组中FGF2和微小RNA-21的表达均高于CG组(<0.01)。PBMT通过降低微生物计数并改变体视学参数、微小RNA-21和FGF2的表达,显著加速了DM1大鼠缺血和MARS感染伤口的修复。

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