A Narrative Review on Oral and Periodontal Bacteria Microbiota Photobiomodulation, through Visible and Near-Infrared Light: From the Origins to Modern Therapies.
Andrea AmaroliSilvia RaveraAngelina ZekiyStefano BenedicentiClaudio PasqualePublished in: International journal of molecular sciences (2022)
Photobiomodulation (PBM) consists of a photon energy transfer to the cell, employing non-ionizing light sources belonging to the visible and infrared spectrum. PBM acts on some intrinsic properties of molecules, energizing them through specific light wavelengths. During the evolution of life, semiconducting minerals were energized by sun radiation. The molecules that followed became photoacceptors and were expressed into the first proto-cells and prokaryote membranes. Afterward, the components of the mitochondria electron transport chain influenced the eukaryotic cell physiology. Therefore, although many organisms have not utilized light as an energy source, many of the molecules involved in their physiology have retained their primordial photoacceptive properties. Thus, in this review, we discuss how PBM can affect the oral microbiota through photo-energization and the non-thermal effect of light on photoacceptors (i.e., cytochromes, flavins, and iron-proteins). Sometimes, the interaction of photons with pigments of an endogenous nature is followed by thermal or photodynamic-like effects. However, the preliminary data do not allow determining reliable therapies but stress the need for further knowledge on light-bacteria interactions and microbiota management in the health and illness of patients through PBM.
Keyphrases
- healthcare
- end stage renal disease
- energy transfer
- ejection fraction
- single cell
- public health
- cell therapy
- induced apoptosis
- chronic kidney disease
- low dose
- drug delivery
- cell death
- peritoneal dialysis
- electronic health record
- wound healing
- big data
- risk assessment
- multidrug resistant
- stress induced
- artificial intelligence
- endoplasmic reticulum
- human health
- iron deficiency