Photobiomodulation (PBM)

Photobiomodulation (PBM) is a non-thermal light therapy that uses specific wavelengths of light, primarily in the red (600–700 nm) and near-infrared (NIR) (750–1100 nm) spectrum, to modulate biological processes at the cellular level. PBM is also referred to as low-level laser therapy (LLLT) or cold laser therapy. The mechanism of action is primarily linked to the absorption of photons by mitochondrial chromophores, such as cytochrome c oxidase (CCO) in the electron transport chain, leading to increased adenosine triphosphate (ATP) production, modulation of reactive oxygen species (ROS), and the release of nitric oxide (NO), which collectively enhance cellular metabolism and function.

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Background Science - Photobiomodulation

Background Science – Photobiomodulation Science

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AVANT – Literature Reviews

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Highlights Photobiomodulation (PBM) is a non-thermal light therapy using red and near-infrared wavelengths. PBM acts primarily at the mitochondrial level, especially on cytochrome c oxidase. The therapy modulates ATP production,...

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Highlights Dementia affects millions of people worldwide and is a leading cause of disability in older adults. The aim of the study was to investigate whether regular transcranial and intranasal...

Highlights Traumatic brain injury (TBI) is a leading cause of disability and affects thousands of people every year A recent case series by Rindner et al. (2022) explored an innovative...

Highlights Arthritis is a leading cause of long-term pain, stiffness, and reduced mobility. Many people look for non-drug, non-invasive options that can be used alongside standard care. Photobiomodulation (PBM) —...

Highlights Red and near-infrared PBM consistently influence mitochondrial ATP production. Cytochrome c oxidase and ATP synthase are key photobiological targets. ATP increases depend on wavelength, fluence, pulse structure, and tissue...

Highlights Green laser PBM (≈505–532 nm) has been widely studied, but mostly in ablative or photocoagulative contexts. Evidence for direct activation of mitochondrial ETC complexes by green light remains limited....

Highlights PBM effects on mitochondria are wavelength-, dose-, and time-dependent. Cytochrome c oxidase (Complex IV) is a primary photoreceptor for red and NIR light. Different wavelengths can stimulate or inhibit...

Educational Resource Notice:

This page provides research summaries and background reading for educational purposes only. It is not AVANT labeling and is not intended to promote uses beyond AVANT’s FDA-cleared indications. Some studies summarized here involve specific clinical populations and outcomes; these summaries do not establish that AVANT is cleared to diagnose, treat, cure, or prevent any disease. Individual results vary. Consult a qualified healthcare professional for medical advice.