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Updated: Jan 15, 2026

Rose Bengal-Mediated Photodynamic Therapy to Inhibit Candida albicans
Published on: March 24, 2022
Rational Design of β-Carboline Photosensitizers for Combating Multidrug-Resistant Bacterial Infections
Rui Cai1, Xiao Liu2, Yingxue Chang2
1Department of Pharmacy, Changzhou Maternal and Child Health Care Hospital, Changzhou Medical Center, Nanjing Medical University, Jiangsu, Changzhou 213000, China.
Abstract:
The misuse of antibiotics has accelerated the emergence of multidrug-resistant bacteria such as methicillin-resistant Staphylococcus aureus (MRSA), creating an urgent need for novel antimicrobial strategies. Antimicrobial photodynamic therapy, which employs light-activated photosensitizers to generate reactive oxygen species (ROS), is promising since it kills both sensitive and resistant pathogens without inducing resistance. β-Carbolines, a class of natural alkaloids with notable antimicrobial potential, have mostly been studied for cancer therapy and rarely adapted as antibacterial photosensitizers. Here, we report a β-carboline-derived photosensitizer (CabPT) incorporating a quaternary ammonium group for bacterial targeting and a triphenylamine moiety to enhance ROS generation. CabPT produced strong ROS under white-light irradiation, exhibited excellent photostability, and showed low dark cytotoxicity. In vivo, CabPT-mediated phototherapy effectively treated MRSA-infected wounds, accelerating healing and promoting collagen deposition. This work demonstrates the rational design of β-carboline photosensitizers for targeting drug-resistant bacterial infections, offering a promising path for next-generation antimicrobial therapeutics.
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