Literature DB >> 18563774

Irradiation with 780 nm diode laser attenuates inflammatory cytokines but upregulates nitric oxide in lipopolysaccharide-stimulated macrophages: implications for the prevention of aneurysm progression.

Lilach Gavish1, Louise S Perez, Petachia Reissman, S David Gertz.   

Abstract

BACKGROUND AND OBJECTIVES: Low level laser irradiation (LLLI) has been shown to reduce inflammation in a variety of clinical situations. We have shown that LLLI (780 nm) increases aortic smooth muscle cell proliferation and matrix protein secretion and modulates activity and expression of matrix metalloproteinases. Inflammation is a major component of arteriosclerotic diseases including aneurysm. Macrophage recruitment and secretion of pro-inflammatory cytokines and the vasodilator, nitric oxide (NO), are central to most immune responses in the arterial wall. The present study was designed to determine the effect of LLLI on cytokine gene expression and secretion as well as gene expression of inducible nitric oxide synthase (iNOS) and NO production in lipopolysaccharide (LPS)-stimulated macrophages. STUDY DESIGN/
MATERIALS AND METHODS: Murine monocyte/macrophages (RAW 264.7) were irradiated with a 780 nm diode laser (2 mW/cm(2), 2.2 J/cm(2)) during stimulation with LPS (0, 0.1, and 1 microg/ml). Gene expression of chemokines, cytokines, and iNOS were assessed by RT-PCR. Secretion of interleukin (IL)-1beta and monocyte chemotactic protein (MCP)-1 and NO were assessed by ELISA and the Griess reaction, respectively.
RESULTS: LLLI reduced gene expression of MCP-1, IL-1alpha, IL-10 (P<0.01), IL-1beta, and IL-6 (P<0.05) when cells were stimulated by 1 microg/ml LPS. LLLI reduced LPS-induced secretion of MCP-1 over non-irradiated cells by 17+/-5% and 13+/-5% at 12 hours (0.1 and 1 microg/ml LPS; P<0.01 and P=0.05, respectively), and reduced IL-1beta by 22+/-5% and 25+/-9% at 24 hours (0.1 and 1 microg/ml LPS, P=0.01 and P=0.06, respectively). However, LLLI increased NO secretion after 12 hours (LLLI vs. CONTROL: without LPS, 1.72+/-0.37 vs. 0.95+/-0.4 microM, P<0.05; 0.1 microg/ml LPS, 7.46+/-1.62 vs. 4.44+/-1.73 microM, P=0.06; 1 microg/ml LPS, 10.91+/-3.53 vs. 6.88+/-1.52 microM, P<0.05).
CONCLUSIONS: These properties of LLLI, with its effects on smooth muscle cells reported previously, may be of profound therapeutic relevance for arterial diseases such as aneurysm where inflammatory processes and weakening of the matrix structure of the arterial wall are major pathologic components.

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Year:  2008        PMID: 18563774     DOI: 10.1002/lsm.20635

Source DB:  PubMed          Journal:  Lasers Surg Med        ISSN: 0196-8092            Impact factor:   4.025


  26 in total

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3.  Photobiomodulation with 660-nm and 780-nm laser on activated J774 macrophage-like cells: Effect on M1 inflammatory markers.

Authors:  Kristianne Porta Santos Fernandes; Nadhia Helena Costa Souza; Raquel Agnelli Mesquita-Ferrari; Daniela de Fatima Teixeira da Silva; Lilia Alves Rocha; Agnelo Neves Alves; Kaline de Brito Sousa; Sandra Kalil Bussadori; Michael R Hamblin; Fábio Daumas Nunes
Journal:  J Photochem Photobiol B       Date:  2015-10-20       Impact factor: 6.252

4.  Increase in the nitric oxide release without changes in cell viability of macrophages after laser therapy with 660 and 808 nm lasers.

Authors:  Igor Henrique Morais Silva; Samantha Cardoso de Andrade; Andreza Barkokebas Santos de Faria; Deborah Daniela Diniz Fonsêca; Luiz Alcino Monteiro Gueiros; Alessandra Albuquerque Tavares Carvalho; Wylla Tatiana Ferreira da Silva; Raul Manhães de Castro; Jair Carneiro Leão
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5.  Clinical and biochemical effects of diode laser as an adjunct to nonsurgical treatment of chronic periodontitis: a randomized, controlled clinical trial.

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6.  Infrared low-level diode laser on serum chemokine MCP-1 modulation in mice.

Authors:  Thiago Y Fukuda; Maury M Tanji; Julio Fernandes de Jesus; Suélen Rocha da Silva; Maria N Sato; Hélio Plapler
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7.  Photobiomodulation and eccentric exercise for Achilles tendinopathy: a randomized controlled trial.

Authors:  Steve Tumilty; Ramikrishnan Mani; George D Baxter
Journal:  Lasers Med Sci       Date:  2015-11-26       Impact factor: 3.161

Review 8.  Lasers, stem cells, and COPD.

Authors:  Feng Lin; Steven F Josephs; Doru T Alexandrescu; Famela Ramos; Vladimir Bogin; Vincent Gammill; Constantin A Dasanu; Rosalia De Necochea-Campion; Amit N Patel; Ewa Carrier; David R Koos
Journal:  J Transl Med       Date:  2010-02-16       Impact factor: 5.531

9.  Low-level laser therapy ameliorates disease progression in a mouse model of Alzheimer's disease.

Authors:  Dorit Farfara; Hana Tuby; Dorit Trudler; Ella Doron-Mandel; Lidya Maltz; Robert J Vassar; Dan Frenkel; Uri Oron
Journal:  J Mol Neurosci       Date:  2014-07-04       Impact factor: 3.444

10.  Effects of low-level laser irradiation on proliferation and functional protein expression in human RPE cells.

Authors:  Yalong Dang; Wentao Wu; Yongsheng Xu; Yalin Mu; Ke Xu; Haotian Wu; Yu Zhu; Chun Zhang
Journal:  Lasers Med Sci       Date:  2015-09-24       Impact factor: 3.161

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