Laboratory of Experimental Phisiopatology, Program of postgraduate in Science of Health, 97853Universidade do Extremo Sul Catarinense, Criciúma, Brazil.
Graduate Program of Biomedical Science, Herminio Ometto Foundation, Araras-SP, Brazil.
J Biomater Appl. 2022 Oct;37(4):668-682. doi: 10.1177/08853282221109344. Epub 2022 Jun 15.
This article aimed to investigate the effects of the association between photobiomodulation and hyaluronic acid incorporated in lipid nanoparticles in an epithelial lesion model in inflammatory parameters and oxidative stress. Eighty Wistar rats were randomly assigned to the following groups: epithelial lesion group (EL); EL+PBM; EL+HA; EL+SLNs; EL+SLNs-HA; EL+PBM+HA; EL+PBM+SLNs; EL+PBM+SLNs-HA. The animals were anesthetized with 4% isofluorane after shaving and induced to an epithelial lesion. Topical treatment with a gel containing HA (0.9%) and/or SLNs (10 mg/mL) and with laser irradiation occurred daily for 1 week. The results showed an increase in wound contraction on the seventh day in the LE + LBM + AH-NPL group, a reduction in pro-inflammatory cytokines (IL-6, IL-1β, and TNF-α), an increase in anti-inflammatory cytokines (IL- 4 and IL-10) and TGF-β. The levels of pro-inflammatory cytokine IL-4 and TGF-β also showed an increase in the LE + NPL-AH, LE + FBM + AH, LE + FBM + NPL and LE + FBM + NPL-AH groups. Regarding oxidative stress parameters, the levels of DCF and nitrite decreased in the combined therapy group when compared to the control group, as well as oxidative damage (carbonyl and sulfhydryl). In the antioxidant defense, there was an increase in GSH and SOD in the combination therapy group. Histological analysis showed a reduction in inflammatory infiltrate in the combination therapy group. The number of fibroblasts and the compaction of collagen fibers did not obtain significant responses. Results analyzed together showed that the combined therapy favored the repair process, and that studies can be carried out to enhance the histological analysis therapy favored the tissue repair process and that studies can be carried out to enhance the histological analysis.
这篇文章旨在研究光生物调节与包含在脂质纳米粒中的透明质酸联合应用于上皮病变模型中对炎症参数和氧化应激的影响。80 只 Wistar 大鼠被随机分为以下几组:上皮病变组(EL);EL+PBM;EL+HA;EL+SLNs;EL+SLNs-HA;EL+PBM+HA;EL+PBM+SLNs;EL+PBM+SLNs-HA。在剃毛后,用 4%异氟烷对动物进行麻醉,并诱导其产生上皮病变。每天用含有 HA(0.9%)和/或 SLNs(10mg/mL)的凝胶进行局部治疗,并进行激光照射,持续 1 周。结果显示,在 LE+LBM+AH-NPL 组的第 7 天,伤口收缩增加,促炎细胞因子(IL-6、IL-1β和 TNF-α)减少,抗炎细胞因子(IL-4 和 IL-10)和 TGF-β增加。促炎细胞因子 IL-4 和 TGF-β的水平在 LE+NPL-AH、LE+FBM+AH、LE+FBM+NPL 和 LE+FBM+NPL-AH 组中也有所增加。关于氧化应激参数,与对照组相比,联合治疗组的 DCF 和亚硝酸盐水平以及氧化损伤(羰基和巯基)降低。在抗氧化防御中,联合治疗组的 GSH 和 SOD 增加。组织学分析显示,联合治疗组的炎症浸润减少。成纤维细胞数量和胶原纤维的致密性没有得到显著响应。综合分析结果表明,联合治疗有利于修复过程,可以进行研究以增强组织学分析。