Literature DB >> 26835486

Transcranial low-level laser therapy (810 nm) temporarily inhibits peripheral nociception: photoneuromodulation of glutamate receptors, prostatic acid phophatase, and adenosine triphosphate.

Marcelo Victor Pires de Sousa1, Cleber Ferraresi2, Masayoshi Kawakubo3, Beatriz Kaippert4, Elisabeth Mateus Yoshimura5, Michael R Hamblin6.   

Abstract

Photobiomodulation or low-level light therapy has been shown to attenuate both acute and chronic pain, but the mechanism of action is not well understood. In most cases, the light is applied to the painful area, but in the present study we applied light to the head. We found that transcranial laser therapy (TLT) applied to mouse head with specific parameters (810 nm laser, [Formula: see text], 7.2 or [Formula: see text]) decreased the reaction to pain in the foot evoked either by pressure (von Frey filaments), cold, or inflammation (formalin injection) or in the tail (evoked by heat). The pain threshold increasing is maximum around 2 h after TLT, remains up to 6 h, and is finished 24 h after TLT. The mechanisms were investigated by quantification of adenosine triphosphate (ATP), immunofluorescence, and hematoxylin and eosin (H&E) staining of brain tissues. TLT increased ATP and prostatic acid phosphatase (an endogenous analgesic) and reduced the amount of glutamate receptor (mediating a neurotransmitter responsible for conducting nociceptive information). There was no change in the concentration of tubulin, a constituent of the cytoskeleton, and the H&E staining revealed no tissue damage. This is the first study to show inhibition of peripheral pain due to photobiomodulation of the central nervous system.

Entities:  

Keywords:  Von Frey filaments; adenosine triphosphate; cold plate test; formalin injection; metabotropic glutamate receptor; nociception; pain threshold; photobiomodulation; prostatic acid phosphatase; tail flick test; transcranial low-level laser therapy

Year:  2016        PMID: 26835486      PMCID: PMC4725212          DOI: 10.1117/1.NPh.3.1.015003

Source DB:  PubMed          Journal:  Neurophotonics        ISSN: 2329-423X            Impact factor:   3.593


  32 in total

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Authors:  D Le Bars; M Gozariu; S W Cadden
Journal:  Pharmacol Rev       Date:  2001-12       Impact factor: 25.468

2.  Inhibition of Aβ(25-35)-induced cell apoptosis by low-power-laser-irradiation (LPLI) through promoting Akt-dependent YAP cytoplasmic translocation.

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Review 3.  Taking a light approach to treating acute ischemic stroke patients: transcranial near-infrared laser therapy translational science.

Authors:  Paul A Lapchak
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4.  830 nm laser irradiation induces varicosity formation, reduces mitochondrial membrane potential and blocks fast axonal flow in small and medium diameter rat dorsal root ganglion neurons: implications for the analgesic effects of 830 nm laser.

Authors:  Roberta T Chow; Monique A David; Patricia J Armati
Journal:  J Peripher Nerv Syst       Date:  2007-03       Impact factor: 3.494

Review 5.  Potential for transcranial laser or LED therapy to treat stroke, traumatic brain injury, and neurodegenerative disease.

Authors:  Margaret A Naeser; Michael R Hamblin
Journal:  Photomed Laser Surg       Date:  2011-07       Impact factor: 2.796

6.  Paw withdrawal threshold in the von Frey hair test is influenced by the surface on which the rat stands.

Authors:  G M Pitcher; J Ritchie; J L Henry
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Review 7.  Cellular and molecular mechanisms of pain.

Authors:  Allan I Basbaum; Diana M Bautista; Grégory Scherrer; David Julius
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8.  Infrared laser therapy for ischemic stroke: a new treatment strategy: results of the NeuroThera Effectiveness and Safety Trial-1 (NEST-1).

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Review 9.  Role of spinal cord glutamate transporter during normal sensory transmission and pathological pain states.

Authors:  Yuan-Xiang Tao; Jianguo Gu; Robert L Stephens
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10.  Reduced axonal transport in Parkinson's disease cybrid neurites is restored by light therapy.

Authors:  Patricia A Trimmer; Kathleen M Schwartz; M Kathleen Borland; Luis De Taboada; Jackson Streeter; Uri Oron
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Authors:  Atefeh Fekri; Ali Jahan; Maryam Moghadam Salimi; Ali E Oskouei
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2.  Errata: Transcranial low-level laser therapy (810 nm) temporarily inhibits peripheral nociception: photoneuromodulation of glutamate receptors, prostatic acid phophatase, and adenosine triphosphate.

Authors:  Marcelo Victor Pires de Sousa; Cleber Ferraresi; Masayoshi Kawakubo; Beatriz Kaippert; Elisabeth Mateus Yoshimura; Michael R Hamblin
Journal:  Neurophotonics       Date:  2016-03-23       Impact factor: 3.593

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4.  Pain management using photobiomodulation: Mechanisms, location, and repeatability quantified by pain threshold and neural biomarkers in mice.

Authors:  Marcelo Victor Pires de Sousa; Masayoshi Kawakubo; Cleber Ferraresi; Beatriz Kaippert; Elisabeth Mateus Yoshimura; Michael R Hamblin
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5.  Mechanisms and applications of the anti-inflammatory effects of photobiomodulation.

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Journal:  AIMS Biophys       Date:  2017-05-19

6.  Near-infrared light reduces β-amyloid-stimulated microglial toxicity and enhances survival of neurons: mechanisms of light therapy for Alzheimer's disease.

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7.  Improvements in clinical signs of Parkinson's disease using photobiomodulation: a prospective proof-of-concept study.

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8.  Effects of photobiomodulation on different application points and different phases of complex regional pain syndrome type I in the experimental model.

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Journal:  Korean J Pain       Date:  2021-07-01

9.  Peripheral N-methyl-D-aspartate receptor localization and role in gastric acid secretion regulation: immunofluorescence and pharmacological studies.

Authors:  Iuliia Golovynska; Tatiana V Beregova; Tatiana M Falalyeyeva; Ludmila I Stepanova; Sergii Golovynskyi; Junle Qu; Tymish Y Ohulchanskyy
Journal:  Sci Rep       Date:  2018-05-10       Impact factor: 4.379

  9 in total

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