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Highly Efficient Photodynamic Hydrogel with AIE-Active Photosensitizers toward Methicillin-Resistant Ultrafast Imaging and Killing. | LitMetric

AI Article Synopsis

  • * A new photosensitizer, APNO, has been developed, capable of rapidly identifying different types of bacteria and generating reactive oxygen species to combat bacteria when exposed to light.
  • * When combined with a PHEAA hydrogel to form APNO@gel, this innovative approach effectively inhibits MRSA growth and promotes wound healing, showing promise for faster treatment in clinical settings.

Article Abstract

Methicillin-resistant (MRSA) causes great health hazards to society because most antibiotics are ineffective. Photodynamic treatment (PDT) has been proposed to combat MRSA due to the advantage of imaging-guided no-drug resistance therapy. However, the traditional photosensitizers for PDT are limited by aggregation-caused quenching for imaging and low photodynamic antibacterial efficiency. In this work, we synthesize a new aggregation-induced emission (AIE) photosensitizer (APNO), which can ultrafast distinguish between Gram-positive and Gram-negative bacteria within 3 s by AIE-active photosensitizer imaging. Meanwhile, APNO can generate antibacterial reactive oxygen species under light irradiation, which holds potential for antibacterial PDT. Then, APNO is loaded by PHEAA hydrogel to obtain a highly efficient photodynamic hydrogel (APNO@gel). In vitro results show complete inhibition of MRSA by APNO@gel under lower-power light irradiation. Transcriptome analysis is performed to investigate antibacterial mechanism of APNO@gel. Most importantly, APNO@gel also exhibits significant inhibition and killing ability of MRSA in the MRSA wound infection model, which will further promote rapid wound healing. Therefore, the photodynamic hydrogel provides a promising strategy toward MRSA ultrafast imaging and killing.

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Source
http://dx.doi.org/10.1021/acsbiomaterials.4c00056DOI Listing

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