Effect of combined red and infrared wavelengths on inflammation, hemorrhage, and muscle damage caused by Bothrops leucurus snake venom.

IF 2.1 4区 医学 Q3 ENGINEERING, BIOMEDICAL Lasers in Medical Science Pub Date : 2024-07-05 DOI:10.1007/s10103-024-04116-w
Gisele Dias da Silva, Fabiana Lessa Silva, Anaiá da Paixão Sevá, Danilo Machado Deorce, Nerildo de Jesus da Costa Junior, Fernanda Amaral Silva, Fernando Alzamora Filho
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Abstract

To evaluate the effects of red and infrared wavelengths, separately and combined, on the inflammatory process and collagen deposition in muscle damage caused by B. leucurus venom. 112 mice were inoculated with diluted venom (0.6mg/kg) in the gastrocnemius muscle. The animals were divided into four groups: one control (CG) and three treatments, namely: 1) red laser (λ=660 nm) (RG), 2) infrared laser (λ=808 nm) (IG) and 3) red laser (λ=660 nm) + infrared (λ=808 nm) (RIG). Each group was subdivided into four subgroups, according to the duration of treatment application (applications every 24 hours over evaluation times of up to 144 hours). A diode laser was used (0.1 W, CW, 1J/point, ED: 10 J/cm2). Both wavelengths reduced the intensity of inflammation and the combination between them significantly intensified the anti-inflammatory response. Photobiomodulation also changed the type of inflammatory infiltrate observed and RIG had the highest percentage of mononuclear cells in relation to the other groups. Hemorrhage intensity was significantly lower in treated animals and RIG had the highest number of individuals in which this variable was classified as mild. As for collagen deposition, there was a significant increase in RG in relation to CG, in RIG in relation to CG and in RIG in relation to IG. Photobiomodulation proved to be effective in the treatment of inflammation and hemorrhage caused by B. leucurus venom and stimulated collagen deposition. Better results were obtained with the combined wavelengths.

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红外线和红外线联合波长对白两栖类蛇毒引起的炎症、出血和肌肉损伤的影响。
评估红外线和红外线波长分别和联合使用对白头翁毒液造成的肌肉损伤的炎症过程和胶原沉积的影响。给 112 只小鼠的腓肠肌接种稀释毒液(0.6 毫克/千克)。动物被分为四组:一组对照组(CG)和三组处理组,即1)红色激光(λ=660 nm)(RG);2)红外线激光(λ=808 nm)(IG);3)红色激光(λ=660 nm)+红外线(λ=808 nm)(RIG)。根据治疗应用的持续时间(每 24 小时应用一次,评估时间长达 144 小时),每组又分为四个亚组。使用的是二极管激光器(0.1 W,CW,1 J/点,ED:10 J/cm2)。两种波长的激光都能降低炎症的强度,而两者的结合则能显著增强抗炎反应。光生物调节还改变了所观察到的炎症浸润类型,与其他组相比,RIG 组的单核细胞比例最高。接受治疗的动物的出血强度明显降低,RIG 组中被归类为轻度出血的动物数量最多。在胶原蛋白沉积方面,RG 组与 CG 组相比、RIG 组与 CG 组相比、RIG 组与 IG 组相比均有显著增加。事实证明,光生物调节对治疗白眉蛙毒引起的炎症和出血有效,并能刺激胶原蛋白沉积。联合使用波长可获得更好的效果。
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来源期刊
Lasers in Medical Science
Lasers in Medical Science 医学-工程:生物医学
CiteScore
4.50
自引率
4.80%
发文量
192
审稿时长
3-8 weeks
期刊介绍: Lasers in Medical Science (LIMS) has established itself as the leading international journal in the rapidly expanding field of medical and dental applications of lasers and light. It provides a forum for the publication of papers on the technical, experimental, and clinical aspects of the use of medical lasers, including lasers in surgery, endoscopy, angioplasty, hyperthermia of tumors, and photodynamic therapy. In addition to medical laser applications, LIMS presents high-quality manuscripts on a wide range of dental topics, including aesthetic dentistry, endodontics, orthodontics, and prosthodontics. The journal publishes articles on the medical and dental applications of novel laser technologies, light delivery systems, sensors to monitor laser effects, basic laser-tissue interactions, and the modeling of laser-tissue interactions. Beyond laser applications, LIMS features articles relating to the use of non-laser light-tissue interactions.
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