Curcumin as a photosensitizer: From molecular structure to recent advances in antimicrobial photodynamic therapy
Куркумин как фотосенсибилизатор: от молекулярной структуры до последних достижений в антимикробной фотодинамической терапии
2020-09-09
SCID: 54.1/7s2k7aej
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antimicrobial photodynamic therapycurcumin photosensitizermultidrug-resistant microorganismspharmaceutical formulationsphotodynamic decontamination
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Abstract (AI)
• Antimicrobial photodynamic therapy is effective against pathogenic microorganisms. • Recent insights into the application of curcumin as photosensitizer was discussed. • Curcumin is highly active in decontamination processes and infections treatment. • This review will provide guidance for designing antimicrobial photodynamic protocol. • The article highlighted the challenges and further development. Nowadays multi-drug resistant microorganisms is a serious public health problem worldwide. To overcome it, new antimicrobial strategies have been developed. Among them, antimicrobial photodynamic therapy is an efficient tool against various micro-organisms in different medical and healthcare fields. The antimicrobial photodynamic protocol is based on the interaction of a photosensitizer, molecular oxygen, and an appropriate light source. Herein, we described the main physical and chemical proprieties of curcumin , an useful natural photosensitizer, including its degradation pathways, analytical methods for quantification, extraction method, synthetic methodologies, and pharmaceutical formulations used. Moreover, a comprehensive review of the past 10 years (2010−2019) concerning the application of curcumin as photosensitizer against microorganisms is described and discussed.
Key Findings
1
Antimicrobial photodynamic therapy combines a photosensitizer, molecular oxygen, and suitable light to combat diverse pathogenic microorganisms.
2
Curcumin is characterized as a useful natural photosensitizer with high activity in microbial decontamination and infection treatment.
3
Evidence from studies published during 2010–2019 is comprehensively reviewed regarding curcumin-mediated photodynamic applications against microorganisms.
4
The article identifies challenges and future development needs while providing guidance for designing antimicrobial photodynamic therapy protocols, particularly amid multidrug resistance.
5
The review examines curcumin’s physical and chemical properties, degradation pathways, quantification methods, extraction, synthesis, and pharmaceutical formulations.
Research Object
Curcumin-based antimicrobial photodynamic therapy against pathogenic microorganisms
Research Subject
Curcumin’s physicochemical properties, photosensitizing activity, and therapeutic application in microorganism decontamination and infection treatment
Publication Details
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2020-09-09
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