Infrared light therapy relieves TLR-4 dependent hyper-inflammation of the type induced by COVID-19.

Q2 Agricultural and Biological Sciences Communicative and Integrative Biology Pub Date : 2021-09-15 eCollection Date: 2021-01-01 DOI:10.1080/19420889.2021.1965718
Blanche Aguida, Marootpong Pooam, Margaret Ahmad, Nathalie Jourdan
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引用次数: 11

Abstract

The leading cause of mortality from COVID-19 infection is respiratory distress due to an exaggerated host immune response, resulting in hyper-inflammation and ensuing cytokine storms in the lungs. Current drug-based therapies are of limited efficacy, costly, and have potential negative side effects. By contrast, photobiomodulation therapy, which involves periodic brief exposure to red or infrared light, is a noninvasive, safe, and affordable method that is currently being used to treat a wide range of diseases with underlying inflammatory conditions. Here, we show that exposure to two 10-min, high-intensity periods per day of infrared light causes a marked reduction in the TLR-4 dependent inflammatory response pathway, which has been implicated in the onset of cytokine storms in COVID-19 patients. Infrared light exposure resulted in a significant decline in NFkB and AP1 activity as measured by the reporter gene assay; decreased expression of inflammatory marker genes IL-6, IL-8, TNF-alpha, INF-alpha, and INF-beta as determined by qPCR gene expression assay; and an 80% decline in secreted cytokine IL6 as measured by ELISA assay in cultured human cells. All of these changes occurred after only 48 hours of treatment. We suggest that an underlying cellular mechanism involving modulation of ROS may downregulate the host immune response after Infrared Light exposure, leading to decrease in inflammation. We further discuss technical considerations involving light sources and exposure conditions to put these observations into potential clinical use to treat COVID-19 induced mortality.

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红外光治疗可缓解COVID-19诱导的TLR-4依赖性高炎症。
COVID-19感染导致死亡的主要原因是由于宿主免疫反应过度导致呼吸窘迫,导致过度炎症和随后的肺部细胞因子风暴。目前以药物为基础的治疗效果有限,费用昂贵,并且有潜在的负面副作用。相比之下,光生物调节疗法是一种无创、安全且经济实惠的方法,它涉及定期短暂暴露于红光或红外光下,目前被用于治疗多种潜在炎症性疾病。在这里,我们发现每天暴露于两个10分钟的高强度红外光会导致TLR-4依赖的炎症反应途径显着减少,这与COVID-19患者细胞因子风暴的发生有关。通过报告基因测定,红外光暴露导致NFkB和AP1活性显著下降;qPCR基因表达法检测炎症标志物基因IL-6、IL-8、tnf - α、inf - α和inf - β的表达降低;在培养的人细胞中,通过ELISA测定,分泌的细胞因子IL6下降了80%。所有这些变化都发生在治疗48小时后。我们认为潜在的细胞机制涉及ROS的调节,可能下调红外光照射后宿主的免疫反应,导致炎症减少。我们进一步讨论涉及光源和暴露条件的技术考虑因素,以便将这些观察结果用于治疗COVID-19引起的死亡率的潜在临床应用。
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来源期刊
Communicative and Integrative Biology
Communicative and Integrative Biology Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
3.50
自引率
0.00%
发文量
22
审稿时长
6 weeks
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