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Bioluminescent Optogenetics 2.0: Harnessing Bioluminescence to Activate Photosensory Proteins In Vitro and In Vivo
Published on: August 4, 2021
Photobiomodulation-Activated Latent Transforming Growth Factor-β1: A Critical Clinical Therapeutic Pathway and an
1Department of Oral Biology, Surgery and Biomedical Engineering, University at Buffalo, Buffalo, New York, USA.
Abstract:
The central role of the TGF-β pathway in embryonic development, immune responses, tissue healing, and malignancies is well established. Prior attempts with small molecules, peptides, and regulatory RNAs have failed mainly due to off-target effects in clinical studies. This review outlines the evidence for selectively activating the endogenous, latent transforming growth factor (TGF)-β1 with photobiomodulation (PBM) treatments. Light treatments play a central role in current-directed energy therapeutics in medicine. Therapeutic use of low-dose light treatments has been noted since the 1960s. However, the breadth of treatments and inconsistencies with clinical outcomes have led to much skepticism. This can be primarily attributed to a lack of understanding of the fundamental light-tissue interactions and optimization of clinical treatment protocols. Recent advances in molecular mechanisms and improved biophotonic device technologies have led to a resurgence of interest in this field. Over the past two decades, our work has focused on outlining a direct molecular mechanism involving PBM-generated redox-mediated activation of endogenous latent TGF-β1. Despite its critical roles in these processes, the complexity and cross talk in this potent growth factor signaling network have prevented the development of directed targeted therapeutics. PBM treatments offer a novel therapeutic and discovery tool in this aspect, especially with the growing evidence for its roles in cancer immunotherapy and stem cell biology.
Insights
Photobiomodulation (PBM) selectively activates latent transforming growth factor (TGF)-β1, offering a novel therapeutic approach. This light-based therapy bypasses the off-target effects seen with traditional small molecule drugs.
Area of Science:
- Biophotonics
- Molecular Biology
- Immunology
Background:
- The transforming growth factor (TGF)-β pathway is crucial in development, immunity, healing, and cancer.
- Previous TGF-β targeted therapies failed due to off-target effects.
- Photobiomodulation (PBM) is an emerging light-based therapeutic modality.
Purpose of the Study:
- To review evidence supporting PBM's selective activation of endogenous latent TGF-β1.
- To explore the molecular mechanisms underlying PBM-TGF-β1 interactions.
- To highlight PBM as a novel tool for TGF-β1 targeted therapeutics.
Main Methods:
- Review of existing literature on PBM and TGF-β1.
- Focus on redox-mediated activation mechanisms.
- Analysis of biophotonic device advancements.
Main Results:
- PBM can selectively activate latent TGF-β1 through redox signaling.
- This activation mechanism offers a targeted approach to TGF-β1 modulation.
- PBM shows promise in cancer immunotherapy and stem cell biology.
Conclusions:
- PBM represents a novel strategy for targeting the TGF-β pathway.
- Understanding light-tissue interactions is key to optimizing PBM protocols.
- PBM offers a promising alternative to conventional therapeutics with off-target issues.

