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Probiotics, Photobiomodulation, and Disease Management: Controversies and Challenges
Laura Marinela Ailioaie1, Gerhard Litscher2
1Department of Medical Physics, Alexandru Ioan Cuza University, 11 Carol I Boulevard, 700506 Iasi, Romania.
Abstract:
In recent decades, researchers around the world have been studying intensively how micro-organisms that are present inside living organisms could affect the main processes of life, namely health and pathological conditions of mind or body. They discovered a relationship between the whole microbial colonization and the initiation and development of different medical disorders. Besides already known probiotics, novel products such as postbiotics and paraprobiotics have been developed in recent years to create new non-viable micro-organisms or bacterial-free extracts, which can provide benefits to the host with additional bioactivity to probiotics, but without the risk of side effects. The best alternatives in the use of probiotics and postbiotics to maintain the health of the intestinal microbiota and to prevent the attachment of pathogens to children and adults are highlighted and discussed as controversies and challenges. Updated knowledge of the molecular and cellular mechanisms involved in the balance between microbiota and immune system for the introspection on the gut-lung-brain axis could reveal the latest benefits and perspectives of applied photobiomics for health. Multiple interconditioning between photobiomodulation (PBM), probiotics, and the human microbiota, their effects on the human body, and their implications for the management of viral infectious diseases is essential. Coupled complex PBM and probiotic interventions can control the microbiome, improve the activity of the immune system, and save the lives of people with immune imbalances. There is an urgent need to seek and develop innovative treatments to successfully interact with the microbiota and the human immune system in the coronavirus crisis. In the near future, photobiomics and metabolomics should be applied innovatively in the SARS-CoV-2 crisis (to study and design new therapies for COVID-19 immediately), to discover how bacteria can help us through adequate energy biostimulation to combat this pandemic, so that we can find the key to the hidden code of communication between RNA viruses, bacteria, and our body.
Insights
Researchers explore novel probiotics, postbiotics, and paraprobiotics for gut health and disease prevention. Combining these with photobiomodulation (PBM) offers new therapeutic strategies for immune balance and viral infections, including COVID-19.
Area of Science:
- Microbiology
- Immunology
- Biotechnology
Background:
- Microorganisms within the body significantly influence health and disease.
- The relationship between microbial colonization and various medical disorders is increasingly recognized.
- Novel non-viable microbial products like postbiotics and paraprobiotics offer benefits without probiotic side effects.
Purpose of the Study:
- To highlight alternatives to probiotics and postbiotics for maintaining intestinal microbiota health.
- To discuss the role of the gut-lung-brain axis in health and disease.
- To explore the potential of photobiomodulation (PBM) and its interplay with microbiota for managing viral infections.
Main Methods:
- Review of current research on probiotics, postbiotics, and paraprobiotics.
- Analysis of molecular and cellular mechanisms in microbiota-immune system balance.
- Investigation of photobiomodulation (PBM) and its synergistic effects with probiotics.
Main Results:
- Probiotics, postbiotics, and paraprobiotics show promise in managing microbiota and preventing pathogen attachment.
- Understanding the gut-lung-brain axis reveals new therapeutic perspectives.
- Combined PBM and probiotic interventions can modulate the microbiome and enhance immune activity.
Conclusions:
- Innovative treatments involving microbiota and immune system interaction are crucial for health crises like COVID-19.
- Photobiomics and metabolomics offer promising avenues for developing SARS-CoV-2 therapies.
- Further research into the communication between viruses, bacteria, and the host is essential for combating pandemics.
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