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Published on: July 2, 2013
Bactericidal effects of hematoporphyrin monomethyl ether-mediated photosensitization against pathogenic communities
Yi Sun1, Defeng Xing, Lanhua Shen
1Department of Stomatology, The Fourth Affiliated Hospital, Harbin Medical University, P.O. Box 31, YinHang Street, Nangang District, Harbin, China.
Abstract:
Photodynamic antimicrobial chemotherapy (PACT) is proposed as a potential candidate to inactivate pathogens in localized infections due to the rapid evolution of bacterial resistance. The treatment modality utilizes nontoxic agents called photosensitizers and harmless visible light to generate reactive oxygen species which result in microbial cells' killing. Hematoporphyrin monomethyl ether (HMME) as a novel and affordable photosensitizer has been used in treating various clinical diseases for years, but few applications in infection. In this report, we studied the bactericidal effects of the HMME-mediated photodynamic reaction on the pathogenic microbes in supragingival plaque which can lead to many oral infectious diseases such as caries, gingivitis, and so on. Our findings demonstrated that HMME promoted an effective action in bacterial reduction with the application of laser energy. Moreover, the antimicrobial activities were dramatically enhanced as the HMME concentration and exposure time were increased, but reached a plateau when matched the appropriate agent concentration and illumination. It was found that the survival fraction of microorganisms is exponentially dependent on the product of HMME concentration and irradiation time. These promising results suggest the HMME may be an excellently cost-effective photosensitizing agent for mediating PACT in the treatment of supragingival plaque-related diseases. An optimized HMME concentration and irradiation time has been found to achieve the best results under our experimental conditions. The high HMME concentration matching short curative time, or vice versa, can achieve the similar therapeutic effect, which may provide more flexible treatment plans according to specific conditions.
Insights
Hematoporphyrin monomethyl ether (HMME) effectively reduces bacteria in oral plaque via photodynamic antimicrobial chemotherapy (PACT). Optimized HMME concentration and light exposure time offer flexible treatment for oral infections.
Area of Science:
- Biomedical Engineering
- Microbiology
- Photochemistry
Background:
- Bacterial resistance necessitates novel antimicrobial strategies like Photodynamic Antimicrobial Chemotherapy (PACT).
- Hematoporphyrin monomethyl ether (HMME) is an affordable photosensitizer with potential in infection treatment.
- Supragingival plaque harbors pathogens causing oral diseases like caries and gingivitis.
Purpose of the Study:
- To investigate the bactericidal efficacy of HMME-mediated PACT against pathogenic microbes in supragingival plaque.
- To determine the optimal HMME concentration and irradiation time for effective bacterial reduction.
Main Methods:
- Application of HMME as a photosensitizer.
- Exposure to visible light (laser energy) to generate reactive oxygen species.
- Quantification of bacterial reduction in supragingival plaque samples.
Main Results:
- HMME-mediated photodynamic reactions significantly reduced bacterial load in supragingival plaque.
- Antimicrobial activity increased with HMME concentration and exposure time, reaching a plateau.
- Microorganism survival fraction showed exponential dependence on the product of HMME concentration and irradiation time.
Conclusions:
- HMME is a cost-effective photosensitizer for PACT in treating supragingival plaque-related oral infections.
- Optimized HMME concentration and irradiation time can achieve effective bacterial reduction.
- Flexible treatment plans are possible by balancing HMME concentration and exposure duration.
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