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1.
Chem Rev ; 123(22): 12371-12430, 2023 11 22.
Artículo en Inglés | MEDLINE | ID: mdl-37615679

RESUMEN

Nowadays, the increasing emergence of antibiotic-resistant pathogenic microorganisms requires the search for alternative methods that do not cause drug resistance. Phototherapy strategies (PTs) based on the photoresponsive materials have become a new trend in the inactivation of pathogenic microorganisms due to their spatiotemporal controllability and negligible side effects. Among those phototherapy strategies, photocatalytic antimicrobial therapy (PCAT) has emerged as an effective and promising antimicrobial strategy in recent years. In the process of photocatalytic treatment, photocatalytic materials are excited by different wavelengths of lights to produce reactive oxygen species (ROS) or other toxic species for the killing of various pathogenic microbes, such as bacteria, viruses, fungi, parasites, and algae. Therefore, this review timely summarizes the latest progress in the PCAT field, with emphasis on the development of various photocatalytic antimicrobials (PCAMs), the underlying antimicrobial mechanisms, the design strategies, and the multiple practical antimicrobial applications in local infections therapy, personal protective equipment, water purification, antimicrobial coatings, wound dressings, food safety, antibacterial textiles, and air purification. Meanwhile, we also present the challenges and perspectives of widespread practical implementation of PCAT as antimicrobial therapeutics. We hope that as a result of this review, PCAT will flourish and become an effective weapon against pathogenic microorganisms and antibiotic resistance.


Asunto(s)
Antiinfecciosos , Antiinfecciosos/farmacología , Antibacterianos/farmacología , Fototerapia , Bacterias , Hongos
2.
J Am Chem Soc ; 143(43): 17891-17909, 2021 11 03.
Artículo en Inglés | MEDLINE | ID: mdl-34677069

RESUMEN

The emergence of multi-drug-resistant pathogens threatens the healthcare systems world-wide. Recent advances in phototherapy (PT) approaches mediated by photo-antimicrobials (PAMs) provide new opportunities for the current serious antibiotic resistance. During the PT treatment, reactive oxygen species or heat produced by PAMs would react with the cell membrane, consequently leaking cytoplasm components and effectively eradicating different pathogens like bacteria, fungi, viruses, and even parasites. This Perspective will concentrate on the development of different organic photo-antimicrobials (OPAMs) and their application as practical therapeutic agents into therapy for local infections, wound dressings, and removal of biofilms from medical devices. We also discuss how to design highly efficient OPAMs by modifying the chemical structure or conjugating with a targeting component. Moreover, this Perspective provides a discussion of the general challenges and direction for OPAMs and what further needs to be done. It is hoped that through this overview, OPAMs can prosper and will be more widely used for microbial infections in the future, especially at a time when the global COVID-19 epidemic is getting more serious.


Asunto(s)
Antiinfecciosos/química , Diseño de Fármacos , Fototerapia/métodos , Animales , Antiinfecciosos/farmacología , Antiinfecciosos/uso terapéutico , Bacterias/efectos de los fármacos , Biopelículas/efectos de los fármacos , Biopelículas/efectos de la radiación , Colorantes/química , Colorantes/farmacología , Equipos y Suministros/microbiología , Equipos y Suministros/virología , Escherichia coli/efectos de los fármacos , Escherichia coli/fisiología , Oftalmopatías/tratamiento farmacológico , Oftalmopatías/patología , Hongos/efectos de los fármacos , Grafito/química , Luz , Nanopartículas/química , Nanopartículas/toxicidad , Fármacos Fotosensibilizantes/química , Fármacos Fotosensibilizantes/farmacología , Fármacos Fotosensibilizantes/uso terapéutico , Teoría Cuántica , Especies Reactivas de Oxígeno/metabolismo , Virus/efectos de los fármacos
3.
Adv Healthc Mater ; 13(6): e2302490, 2024 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-37909241

RESUMEN

The emergence of drug-resistant bacteria, particularly resistant strains of Gram-negative bacteria, such as Pseudomonas aeruginosa, poses a significant threat to public health. Although antibacterial photodynamic therapy (APDT) is a promising strategy for combating drug-resistant bacteria, actively targeted photosensitizers (PSs) remain unknown. In this study, a PS based on dipicolylamine (DPA), known as WZK-DPA-Zn, is designed for the selective identification of P. aeruginosa and drug-resistant Gram-positive bacteria. WZK-DPA-Zn exploits the synergistic effects of DPA-Zn2+ coordination and cellular uptake, which could effectively anchor P. aeruginosa within a brief period (10 min) without interference from other Gram-negative bacteria. Simultaneously, the cationic nature of WZK-DPA-Zn enhances its interaction with Gram-positive bacteria via electrostatic forces. Compared to traditional clinical antibiotics, WZK-DPA-Zn shows exceptional antibacterial activity without inducing drug resistance. This effectiveness is achieved using the APDT strategy when irradiated with white light or sunlight. The combination of WZK-DPA-Zn with Pluronic-based thermosensitive hydrogel dressings (WZK-DPA-Zn@Gel) effectively eliminates mixed bacterial infections and accelerates wound healing, thereby achieving a synergistic effect where "1+1>2." In summary, this study proposes a precise strategy employing DPA-Zn as the targeting moiety of a PS, facilitating the rapid elimination of P. aeruginosa and drug-resistant Gram-positive bacteria using APDT.


Asunto(s)
Aminas , Ácidos Picolínicos , Infecciones por Pseudomonas , Pseudomonas aeruginosa , Humanos , Antibacterianos/farmacología , Antibacterianos/uso terapéutico , Infecciones por Pseudomonas/tratamiento farmacológico , Bacterias Grampositivas , Zinc/farmacología
4.
Biomaterials ; 308: 122571, 2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-38636132

RESUMEN

The abuse and overuse of antibiotics let drug-resistant bacteria emerges. Antibacterial photodynamic therapy (APDT) has shown outstanding merits to eliminate the drug-resistant bacteria via cytotoxic reactive oxygen species produced by irradiating photosensitizer. However, most of photosensitizers are not effective for Gram-negative bacteria elimination. Herein conjugates of NBS, a photosensitizer, linked with one (NBS-DPA-Zn) or two (NBS-2DPA-Zn) equivalents of zinc-dipicolylamine (Zn-DPA) have been designed to achieve the functional recognition of different bacteria. Due to the cationic character of NBS and metal transfer channel effect of Zn-DPA, NBS-DPA-Zn exhibited the first regent to distinguish P. aeruginosa from other Gram-negative bacteria. Whereas NBS-2DPA-Zn showed broad-spectrum antibacterial effect because the two arm of double Zn-DPA enhanced interactions with anionic membranes of bacteria, led the bacteria aggregation and thus provided the efficacy of APDT to bacteria and corresponding biofilm. In combination with a hydrogel of Pluronic, NBS-2DPA-Zn@gel shows promising clinical application in mixed bacterial diabetic mouse model infection. This might propose a new method that can realize functional identification and elimination of bacteria through intelligent regulation of Zn-DPA, and shows excellent potential for antibacterial application.


Asunto(s)
Antibacterianos , Bacterias Gramnegativas , Fotoquimioterapia , Fármacos Fotosensibilizantes , Picolinas , Ácidos Picolínicos , Animales , Fotoquimioterapia/métodos , Fármacos Fotosensibilizantes/farmacología , Fármacos Fotosensibilizantes/química , Antibacterianos/farmacología , Bacterias Gramnegativas/efectos de los fármacos , Ratones , Ácidos Picolínicos/química , Compuestos Organometálicos/química , Compuestos Organometálicos/farmacología , Biopelículas/efectos de los fármacos , Zinc/química , Pseudomonas aeruginosa/efectos de los fármacos , Pruebas de Sensibilidad Microbiana , Infecciones por Bacterias Gramnegativas/tratamiento farmacológico
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