Study2022Open access

Non-invasive photobiomodulation treatment in an Alzheimer Disease-like transgenic rat model

Yang L, Wu C, Parker E, Li Y, Dong Y, Tucker L, Brann DW, Lin HW, Zhang Q

Theranostics · 102 citations

How it was studied

Design
Animal study (classified by our AI screen)
Studied in
Animals
Main outcome
Health markers and function

Who paid for it

Funding
Independent funding
Government
National Institutes of Health
Government
National Institute on Aging
Government
NIA NIH HHS
Grants
National Institute on Aging (RF1 AG058603)

Based on 3 listed funder(s) and full-text disclosure statement.

Publication

Published
2022-01-01 · Theranostics · vol. 12 · issue 5 · pp. 2205–2231
Publisher
Ivyspring International Publisher
Cited
131 citations · more than 99% of similar papers · 13.1× the field average
Impact
Top 10% most cited in its field
References
86 works
Access
Open access (journal) · CC-BY
Research areas
Laser Applications in Dentistry and Medicine · Migraine and Headache Studies · Medical and Biological Ozone Research
Keywords
Neuroinflammation, Neurodegeneration, Microglia, Genetically modified mouse, Medicine, Neuroscience, Hippocampal formation, Tauopathy, Amyloid beta, Alzheimer's disease, Pathology, Biology, Transgene, Disease, Internal medicine, Inflammation, Biochemistry
MeSH
animals, humans, rats, alzheimer disease, neurodegenerative diseases, disease models, animal, neuroprotective agents, quality of life, aged, rats, transgenic, amyloid beta-peptides, plaque, amyloid

9 authors

From US

  • Luodan YangAugusta University; Louisiana State University Health Sciences Center Shreveport
  • Chongyun WuAugusta University
  • Emily ParkerAugusta University
  • Yong LiAugusta University
  • Yan DongAugusta University
  • Lorelei Donovan TuckerAugusta University

Abstract

Alzheimer's disease (AD) is the most common form of dementia in the elderly, causing neuronal degeneration and cognitive deficits that significantly impair independence and quality of life for those affected and their families. Though AD is a major neurodegenerative disease with vast avenues of investigation, there is no effective treatment to cure AD or slow disease progression. The present work evaluated the therapeutic effect of long-term photobiomodulation (PBM) treatment with continuous-wave low-level laser on AD and its underlying mechanism. Methods: PBM was implemented for 2 min, 3 times per week for 16 months in 2-month-old transgenic AD rats. A battery of behavioral tests was performed to measure the effect of PBM treatment on cognitive dysfunction in AD rats. The effects of PBM therapy on typical AD pathologies, including amyloid plaques, intracellular neurofibrillary tangles, neuronal loss, neuronal injury, neuronal apoptosis, and neurodegeneration, were then assessed. The underlying mechanisms were measured using immunofluorescence staining, western blotting analysis, mass spectrometry, primary cortical and hippocampal cell cultures, and related assay kits. Results: PBM treatment significantly improved the typical AD pathologies of memory loss, amyloid plaques, tau hyperphosphorylation, neuronal degeneration, spine damage, and synaptic loss. PBM treatment had several mechanistic effects which may explain these beneficial effects, including 1) regulation of glial cell polarization and inhibition of neuroinflammation, 2) preservation of mitochondrial dynamics by regulating fission and fusion proteins, and 3) suppression of oxidative damage to DNA, proteins, and lipids. Furthermore, PBM enhanced recruitment of microglia surrounding amyloid plaques by improving the expression of microglial IL-3Rα and astrocytic IL-3, which implies a potential role of PBM in improving Aβ clearance. Finally, our results implicate neuronal hemoglobin in mediating the neuroprotective effect of PBM, as Hbα knockdown abolished the neuroprotective effect of PBM treatment. Conclusion: Collectively, our data supports the potential use of PBM treatment to prevent or slow the progression of AD and provides new insights into the molecular mechanisms of PBM therapy.

Abstract via Europe PMC. Copyright remains with the authors or publisher (CC BY).

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