The Mechanism of 540 nm Green Light in Promoting Salivary Secretion.

IF 1.8 Q2 SURGERY Photobiomodulation, photomedicine, and laser surgery Pub Date : 2024-08-01 Epub Date: 2024-08-16 DOI:10.1089/photob.2024.0054
Wei Qi, Sai-Nan Min, Xiang-Di Mao, Jia-Zeng Su, Guang-Yan Yu, Li-Ling Wu, Xin Cong, Yu-Guang Wang
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Abstract

Background: Although low-level laser therapy (LLLT) is a widely used noninvasive treatment because of photobiomodulation effects, its application for xerostomia remained uncertain. Tight junctions (TJs), mainly composed of claudins, occludin, and ZO family members, are crucial structures that determine material transport through paracellular pathway in salivary gland epithelial cells. This work aimed to investigate whether LLLT affected salivary secretion through epithelial TJs. Methods: Transepithelial electrical resistance (TER) measurement and paracellular permeability assay were applied to evaluate paracellular permeability in submandibular gland (SMG)-C6 cells after irradiation with 540 nm green light. Immunofluorescence and western blot were used to detect the expression of TJ proteins. Quantitative phosphoproteomics were performed to explore possible intracellular signals. Results: We found that irradiation with 540 nm green light significantly decreased TER values while increased paracellular transport in SMG-C6 cells. 540 nm green light-induced redistribution of claudin-1, -3, and -4, but not occludin or ZO-1. Moreover, above phenomena were abolished by preincubation with capsazepine, an antagonist of transient receptor potential vanilloid subtype 1. Notably, irradiation with 540 nm green light on the skin covering the whole submandibular gland regions promoted salivary secretion and attenuated lymphocytic infiltration in 21-week-old non-obese diabetic mice (n = 5 per group), a xerostomia animal model for Sjögren's syndrome. Through in-depth bioinformatics analysis and expression verification, ERK1/2 and EphA2 served as potential canonical and noncanonical signals underlying 540 nm green light. Conclusions: Our findings uncovered the novel therapeutic effects of 540 nm green light on xerostomia through regulation on the expression and distribution of TJs.

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540 纳米绿光促进唾液分泌的机制
背景:尽管低强度激光疗法(LLLT)因其光生物调节作用而成为一种广泛使用的非侵入性治疗方法,但其在口腔干燥症中的应用仍不确定。紧密连接(TJ)主要由 claudins、occludin 和 ZO 家族成员组成,是唾液腺上皮细胞中决定物质通过细胞旁途径运输的关键结构。本研究旨在探讨 LLLT 是否会通过上皮 TJ 影响唾液分泌。方法:用540 nm绿光照射颌下腺(SMG)-C6细胞后,采用跨上皮电阻(TER)测量法和细胞旁通透性测定法评估细胞旁通透性。免疫荧光和 Western 印迹技术用于检测 TJ 蛋白的表达。还进行了定量磷酸化蛋白质组学研究,以探索可能的细胞内信号。结果:我们发现,用 540 纳米绿光照射 SMG-C6 细胞会显著降低 TER 值,同时增加细胞旁转运。540 纳米绿光诱导了 claudin-1、-3 和 -4 的重新分布,但没有诱导 occludin 或 ZO-1。此外,预先用瞬时受体电位类香草素亚型 1 的拮抗剂--卡扎西平(capsazepine)抑制上述现象。值得注意的是,用 540 纳米绿光照射覆盖整个颌下腺区域的皮肤可促进唾液分泌,并减轻 21 周大非肥胖糖尿病小鼠(每组 5 只)的淋巴细胞浸润。通过深入的生物信息学分析和表达验证,ERK1/2 和 EphA2 是 540 纳米绿光的潜在规范信号和非规范信号。结论:我们的研究结果揭示了 540 纳米绿光通过调节 TJs 的表达和分布对口腔干燥症的新型治疗效果。
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来源期刊
CiteScore
4.10
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0.00%
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0
期刊介绍: Photobiomodulation, Photomedicine, and Laser Surgery Editor-in-Chief: Michael R Hamblin, PhD Co-Editor-in-Chief: Heidi Abrahamse, PhD
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