慢性光生物调节治疗可降低去卵巢大鼠血压并改善内皮功能。

IF 2.1 4区 医学 Q3 ENGINEERING, BIOMEDICAL
Nayara Formenton da Silva, Luis Henrique Oliveira de Moraes, Camila Pereira Sabadini, Rita Cristina Cotta Alcântara, Patricia Corrêa Dias, Gerson Jhonatan Rodrigues
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引用次数: 0

摘要

绝经期是一个自然阶段,与生殖女性衰老有关,以雌激素为主的激素类固醇分泌减少为特征,参与包括心血管功能在内的多种生理过程。雌激素的下降会导致高血压和其他心血管疾病的发生。策略疗法的补充他作为管理女性绝经期保险的选择赢得了重视,比如光生物调节。光生物调节(PBM)是一种无创低光源水平的应用,通常以低水平激光治疗(LLLT)或发光二极管(led)的形式出现,在治疗炎症和应激氧化,有利于血管生成,改善心脏功能和重塑组织方面具有潜在的益处。本研究旨在探讨光生物调节剂对雌性大鼠卵巢切除绝经期心血管参数的体内影响。将26只70日龄雌性Wistar大鼠随机分为3个实验组:假手术组(SH)、去卵巢组(OVX)和去卵巢光生物调节组(OVX + PBM)。OVX组所有动物的卵巢在12周龄时手术切除。OVX + PBM组在腹部6个点进行5.6焦耳/点的光生物调节治疗,功率为100mW,波长为660 nm,每周两次,持续两周。采用尾容积描记术测量血压,通过血管反应性试验评估内皮功能。治疗结束时,OVX + PBM组的平均血压明显低于未治疗的OVX组。与未治疗的OVX组相比,PBM治疗还改善了OVX大鼠主动脉环内皮依赖性血管舒张,OVX + PBM组与Sham组之间无显著差异。此外,与OVX组相比,PBM增加了血清一氧化氮(NO)水平。这些结果表明,PBM治疗有效地降低了去卵巢大鼠的血压,增加了血清NO水平,并逆转了内皮功能障碍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chronic treatment with photobiomodulation decreases blood pressure and improves endothelial function in ovariectomized rats.

Menopause is a natural phase, related to the aging reproductive female, characterized by decreased production of hormones steroids, mainly estrogen, involved in multiple physiological process, including cardiovascular function. This estrogen decline can lead to the development of hypertension, as well as other cardiovascular diseases. Strategies therapeutics complementary he comes winning emphasis as option for management women's insurance at menopause, such as photobiomodulation. Photobiomodulation (PBM) is the application of no invasive low light sources level, normally in the forms of low level lasers therapy (LLLT) or light emitting diodes (LEDs) that present potentials benefits therapeutics in the treatment of inflammation and stress oxidative, favoring angiogenesis, improving function cardiac and remodeling tissue. The objective of this work was to evaluate the in vivo effects of photobiomodularion on cardiovascular parameters in ovariectomy-induced menopause in female rats. Twenty-six 70-day-old female Wistar rats were randomly assigned to three experimental groups: sham (SH), ovariectomized (OVX), and ovariectomized treated with photobiomodulation (OVX + PBM). The ovaries of all animals in the OVX groups were surgically removed at 12 weeks of age. The OVX + PBM group received photobiomodulation treatment with 5.6 Joules per point at six points on the abdominal region, using a power of 100mW at a wavelength of 660 nm, applied twice a week for two weeks. Blood pressure was measured using tail plethysmography, and endothelial function was assessed through vascular reactivity tests. At the end of the treatment period, the mean blood pressure in the OVX + PBM group was significantly lower than in the untreated OVX group. PBM treatment also improved endothelium-dependent vasodilation in aortic rings of OVX rats compared to the untreated OVX group, with no significant difference between the OVX + PBM and Sham groups. In addition, PBM increased serum nitric oxide (NO) levels compared to the OVX group. These results suggest that PBM treatment effectively reduced blood pressure, increased serum NO levels, and reversed endothelial dysfunction in ovariectomized rats.

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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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