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Photoantimicrobials-are we afraid of the light?
Mark Wainwright1, Tim Maisch2, Santi Nonell3
1School of Pharmacy and Biomolecular Sciences, Liverpool John Moores University, Liverpool, UK.
Abstract:
Although conventional antimicrobial drugs have been viewed as miraculous cure-alls for the past 80 years, increasing antimicrobial drug resistance requires a major and rapid intervention. However, the development of novel but still conventional systemic antimicrobial agents, having only a single mode or site of action, will not alleviate the situation because it is probably only a matter of time until any such agents will also become ineffective. To continue to produce new agents based on this notion is unacceptable, and there is an increasing need for alternative approaches to the problem. By contrast, light-activated molecules called photoantimicrobials act locally via the in-situ production of highly reactive oxygen species, which simultaneously attack various biomolecular sites in the pathogenic target and therefore offer both multiple and variable sites of action. This non-specificity at the target circumvents conventional mechanisms of resistance and inhibits the development of resistance to the agents themselves. Photoantimicrobial therapy is safe and easy to implement and, unlike conventional agents, the activity spectrum of photoantimicrobials covers bacteria, fungi, viruses, and protozoa. However, clinical trials of these new, truly broad-spectrum, and minimally toxic agents have been few, and the funding for research and development is almost non-existent. Photoantimicrobials constitute one of the few ways forward through the morass of drug-resistant infectious disease and should be fully explored. In this Personal View, we raise awareness of the novel photoantimicrobial technologies that offer a viable alternative to conventional drugs in many relevant application fields, and could thus slow the pace of resistance development.
Insights
Antimicrobial drug resistance is a growing threat. Novel photoantimicrobial therapies offer a promising, broad-spectrum alternative by attacking pathogens at multiple sites, circumventing resistance and minimizing toxicity.
Area of Science:
- Microbiology
- Photochemistry
- Infectious Diseases
Background:
- Conventional antimicrobial drugs face increasing resistance due to single-action mechanisms.
- Developing new conventional agents is unlikely to solve the escalating antimicrobial resistance crisis.
- Alternative strategies are urgently needed to combat drug-resistant pathogens.
Purpose of the Study:
- To raise awareness of photoantimicrobial technologies as a viable alternative to conventional antimicrobial agents.
- To highlight the potential of photoantimicrobials in overcoming drug resistance.
- To advocate for increased research and development in photoantimicrobial therapies.
Main Methods:
- Photoantimicrobials generate reactive oxygen species upon light activation.
- These reactive oxygen species attack multiple biomolecular sites on pathogens.
- This multi-target approach circumvents conventional resistance mechanisms.
Main Results:
- Photoantimicrobial therapy demonstrates broad-spectrum activity against bacteria, fungi, viruses, and protozoa.
- The non-specific, multi-site attack mechanism inhibits the development of resistance.
- Photoantimicrobial therapy is minimally toxic and safe to implement.
Conclusions:
- Photoantimicrobials represent a novel and effective strategy against drug-resistant infections.
- These light-activated agents offer a sustainable solution to the antimicrobial resistance challenge.
- Further clinical trials and funding are essential to realize the full potential of photoantimicrobial technologies.
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