近红外光生物调节对体外红细胞氧化应激易感性的双相剂量反应和影响

IF 3.9 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Tomasz Walski , Karolina Grzeszczuk-Kuć , Joanna Mehl , Raghvendra Bohara , Natalia Trochanowska-Pauk , Jerzy Detyna , Małgorzata Komorowska
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引用次数: 0

摘要

研究人员考察了同时使用叔丁基过氧化氢(tBHP)和多色近红外(NIR)辐射对牛血的影响,以确定近红外光是否会降低红细胞(RBC)对氧化应激的敏感性。研究评估了各种照射方法、波长范围和光学过滤类型。连续的近红外照射显示了无细胞血红蛋白变化的双相反应,在低通量下观察到抗氧化效应,而在高通量下观察到有害效应。最佳照射时间为 60 秒至 15 分钟。还测试了 750-1100 纳米波长范围内的保护效果,所有波长都能减少溶血,尤其是 750 纳米、875 纳米和 900 纳米波长。对宽带近红外光和远红外光(750 纳米)进行比较后发现,两者在减少溶血方面没有显著差异。脉冲剂量的近红外辐照可安全地增加辐射剂量,在持续辐照有害的较高剂量下有效地限制溶血。这些发现凸显了近红外光生物调制在保护红细胞免受氧化应激方面的潜力,并将有助于新型医疗设备的有效设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biphasic dose-response and effects of near-infrared photobiomodulation on erythrocytes susceptibility to oxidative stress in vitro

The effect of simultaneous application of tert-butyl hydroperoxide (tBHP) and polychromatic near-infrared (NIR) radiation on bovine blood was examined to determine whether NIR light decreases the susceptibility of red blood cells (RBCs) to oxidative stress. The study assessed various exposure methods, wavelength ranges, and optical filtering types. Continuous NIR exposure revealed a biphasic response in cell-free hemoglobin changes, with antioxidative effects observed at low fluences and detrimental effects at higher fluences. Optimal exposure duration was identified between 60 s and 15 min. Protective effects were also tested across wavelengths in the range of 750–1100 nm, with all of them reducing hemolysis, notably at 750 nm, 875 nm, and 900 nm. Comparing broadband NIR and far-red light (750 nm) showed no significant difference in hemolysis reduction. Pulse-dosed NIR irradiation allowed safe increases in radiation dose, effectively limiting hemolysis at higher doses where continuous exposure was harmful. These findings highlight NIR photobiomodulation's potential in protecting RBCs from oxidative stress and will be helpful in the effective design of novel medical therapeutic devices.

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来源期刊
CiteScore
12.10
自引率
1.90%
发文量
161
审稿时长
37 days
期刊介绍: The Journal of Photochemistry and Photobiology B: Biology provides a forum for the publication of papers relating to the various aspects of photobiology, as well as a means for communication in this multidisciplinary field. The scope includes: - Bioluminescence - Chronobiology - DNA repair - Environmental photobiology - Nanotechnology in photobiology - Photocarcinogenesis - Photochemistry of biomolecules - Photodynamic therapy - Photomedicine - Photomorphogenesis - Photomovement - Photoreception - Photosensitization - Photosynthesis - Phototechnology - Spectroscopy of biological systems - UV and visible radiation effects and vision.
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