CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Experimental Lung Inflammation

  • Mechanisms and applications of the anti-inflammatory effects of photobiomodulation. 📎

    facebook Share on Facebook
    Abstract Title:

    Mechanisms and applications of the anti-inflammatory effects of photobiomodulation.

    Abstract Source:

    AIMS Biophys. 2017 ;4(3):337-361. Epub 2017 May 19. PMID: 28748217

    Abstract Author(s):

    Michael R Hamblin

    Article Affiliation:

    Michael R Hamblin

    Abstract:

    Photobiomodulation (PBM) also known as low-level level laser therapy is the use of red and near-infrared light to stimulate healing, relieve pain, and reduce inflammation. The primary chromophores have been identified as cytochrome c oxidase in mitochondria, and calcium ion channels (possibly mediated by light absorption by opsins). Secondary effects of photon absorption include increases in ATP, a brief burst of reactive oxygen species, an increase in nitric oxide, and modulation of calcium levels. Tertiary effects include activation of a wide range of transcription factors leading to improved cell survival, increased proliferation and migration, and new protein synthesis. There is a pronounced biphasic dose response whereby low levels of light have stimulating effects, while high levels of light have inhibitory effects. It has been found that PBM can produce ROS in normal cells, but when used in oxidatively stressed cells or in animal models of disease, ROS levels are lowered. PBM is able to up-regulate anti-oxidant defenses and reduce oxidative stress. It was shown that PBM can activate NF-kB in normal quiescent cells, however in activated inflammatory cells, inflammatory markers were decreased. One of the most reproducible effects of PBM is an overall reduction in inflammation, which is particularly important for disorders of the joints, traumatic injuries, lung disorders, and in the brain. PBM has been shown to reduce markers of M1 phenotype in activated macrophages. Many reports have shown reductions in reactive nitrogen species and prostaglandins in various animal models. PBM can reduce inflammation in the brain, abdominal fat, wounds, lungs, spinal cord.

  • The chemokines secretion and the oxidative stress are targets of low-level laser therapy in allergic lung inflammation.

    facebook Share on Facebook
    Abstract Title:

    The chemokines secretion and the oxidative stress are targets of low-level laser therapy in allergic lung inflammation.

    Abstract Source:

    J Biophotonics. 2016 Sep 20. Epub 2016 Sep 20. PMID: 27649282

    Abstract Author(s):

    Jorge Luis Costa Carvalho, Auriléia Aparecida de Brito, Ana Paula Ligeiro de Oliveira, Hugo Caire de Castro Faria Neto, Thiago Martini Pereira, Regiane Albertini de Carvalho, Elen Anatriello, Flávio Aimbire

    Article Affiliation:

    Jorge Luis Costa Carvalho

    Abstract:

    Recent studies show that low-level laser therapy (LLLT) has an important anti-inflammatory action in acute lung inflammation. The present work explored if laser therapy is able to antagonize eosinophils and allergic inflammation induced by oxidative stress in Balb/c mice. Forty-eight hours after challenge, the leukocyte counting, ROS and nitrite/nitrate level, RANTES, CCL3, CCL8 as well as eotaxins were measured in the bronchoalveolar lavage fluid (BALF) of laser-treated mice or not. Into the lung, some chemokines receptors, the iNOS activity and mRNA expression, and the activities of superoxide dismutase (SOD), catalase, gluthatione, NADPH oxidase activities and thiobarbituric acid reactive species (T-Bars) were measured. Laser-treated allergic mice presented reduction of both the ICAM-1 and eosinophil in the lungs. RANTES, CCL8, CCL3 and eotaxins were reduced in BALF of laser-treated allergic mice. In allergic mice lung LLLT decreased the CCR1 and CCR3 and restored the oxidative stress balance as well. Laser decreased the lipidic peroxidation in allergic mice lung as much as increased SOD, GPx and GR. It shows that LLLT on allergic lung inflammation involves leukocyte-attractant chemokines and endogenous antioxidant. Based on results, LLLT may ultimately become a non- invasive option in allergic lung disease treatment. The top figure illustrates the laser decreasing the eosinophils migration into BALF and the bottom figure shows the laser upregulating the expression of heme-oxygenase (anti-oxidant enzyme) in lung tissue anti-oxidant.

We use cookies on our website. Some of them are essential for the operation of the site, while others help us to improve this site and the user experience (tracking cookies). You can decide for yourself whether you want to allow cookies or not. Please note that if you reject them, you may not be able to use all the functionalities of the site.