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光生物调节-蓝、红光 LED:保护还是细胞毒性?体外研究用人成纤维细胞。

Photobiomodulation-blue and red LED: protection or cellular toxicity? In vitro study with human fibroblasts.

机构信息

Post-graduate Program in Functional Rehabilitation, Federal University of Santa Maria, 408 Adriano Chaves Street, 408 apartament, Santa Maria, RS, 97105-010, Brazil.

Post-graduate Program in Health and Life Sciences, Franciscan University, Santa Maria, RS, Brazil.

出版信息

Lasers Med Sci. 2022 Feb;37(1):523-530. doi: 10.1007/s10103-021-03290-5. Epub 2021 Mar 19.

DOI:10.1007/s10103-021-03290-5
PMID:33742277
Abstract

Photobiomodulation is widely used in clinical practice, and there is increasing interest in using this tool to treat numerous dysfunctions in living organisms. Therefore, this study aimed to verify the action of blue and red light-emitting diode light in cells. Human fibroblast cell line (HFF-1) were irradiated by blue (470 nm) or red (658 nm) light at doses of 4 and 18 J/cm, respectively. Laboratory analyses were carried out to check for viability, proliferation, cell death, and the formation of reactive oxygen and nitric oxide species. The blue light demonstrated cell protection potential by reducing free radical formation and protecting the cell membrane by decreasing double-stranded DNA strands. On the other hand, the red light showed less potential for cell protection due to the risk of associating more significant nitric oxide formation with increased reactive oxygen species formation, in addition to having a greater amount of extracellular DNA. Cell damage prevention is a potential beneficial effect of blue light at 18 J/cm. Despite the consolidated effects of red light in treating wounds, there was a potential toxic effect of this wavelength in the doses studied. Given the above, new studies relating these parameters with pathological cells or aggressors that simulate damage may offer results that can better support clinical practice.

摘要

光生物调节被广泛应用于临床实践中,人们对利用这一工具治疗生物体内多种功能障碍越来越感兴趣。因此,本研究旨在验证蓝、红光发光二极管在细胞中的作用。人成纤维细胞系(HFF-1)分别用 470nm 的蓝光和 658nm 的红光照射,剂量分别为 4J/cm 和 18J/cm。进行实验室分析以检查细胞活力、增殖、细胞死亡以及活性氧和一氧化氮物质的形成。蓝光通过减少自由基形成和保护细胞膜来减少双链 DNA 链,从而显示出细胞保护潜力。另一方面,红光由于与活性氧形成相关的更大的一氧化氮形成风险以及更多的细胞外 DNA,因此对细胞保护的潜力较小。18J/cm 的蓝光可预防细胞损伤,这是其潜在的有益作用。尽管红光在治疗伤口方面具有综合作用,但在研究剂量下,这种波长可能具有潜在的毒性作用。鉴于上述情况,将这些参数与病理细胞或模拟损伤的攻击物相关联的新研究可能会提供更好地支持临床实践的结果。

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Photobiomodulation: lasers vs. light emitting diodes?光生物调节:激光与发光二极管?
Photochem Photobiol Sci. 2018 Aug 8;17(8):1003-1017. doi: 10.1039/c8pp90049c.
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Photobiomodulation and Cancer: What Is the Truth?光生物调节与癌症:真相究竟如何?
Photomed Laser Surg. 2018 May;36(5):241-245. doi: 10.1089/pho.2017.4401. Epub 2018 Feb 21.
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Mechanisms and Mitochondrial Redox Signaling in Photobiomodulation.光生物调节中的机制和线粒体氧化还原信号。
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