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April 1, 2026ACS Applied Materials & Interfaces0 citations

pH-Responsive Micelles as Theranostic Agents for Sonodynamic Therapy and MR Imaging of Liver Abscesses

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HZHong ZhangZCZhichao CaoHCHuichao Chen

Key Points

  • The research aims to develop pH-responsive micelles for enhanced sonodynamic therapy and MRI imaging of liver abscesses.
  • Developed PC7A micelles co-loaded with levofloxacin and manganese porphyrin
  • Conducted in vitro tests for biofilm inhibition and drug resistance suppression
  • Used an in vivo murine model for imaging-guided treatment
  • Monitored bacterial burden and inflammatory markers via MRI
  • Micelles effectively inhibited biofilm formation and eradicated LEV-resistant K. pneumoniae in vitro
  • In vivo treatment significantly reduced bacterial load and inflammation in liver abscesses
  • MRI showed real-time localization of lesions and facilitated monitoring of treatment outcomes

Abstract

Pyogenic liver abscess (PLA) caused by Klebsiella pneumoniae(K. pneumoniae) remains challenging to treat due to the lesion microenvironment that fosters biofilm formation and compromises antibiotic efficacy. Herein, we develop pH-responsive PC7A micelles co-loaded with levofloxacin (LEV) and manganese porphyrin (MnTPP) for imaging-guided, microenvironment-triggered sonodynamic–antibiotic therapy. The micelles remain stable under physiological conditions but selectively disassemble in mildly acidic infection niches, enabling the on-demand release of therapeutic payloads. Upon ultrasound (US) exposure, MnTPP acts as an efficient sonosensitizer to generate reactive oxygen species for biofilm disruption, while its paramagnetic property concurrently enhances T1-weighted MRI for real-time lesion localization and longitudinal treatment monitoring. In vitro, this platform effectively inhibits biofilm formation and eradicates LEV-resistant K. pneumoniae while also suppressing the emergence of drug-resistant variants compared to monotherapy. In vivo, MRI-guided treatment in a murine Klebsiella pneumoniae-associated liver abscess (K. pneumoniae liver abscess, KLA) model significantly reduces intra-abscess bacterial burden and inflammatory markers while promoting hepatic tissue repair. By integrating microenvironment sensing, controlled release, SDT potentiation, and MRI navigation, this theranostic system addresses key challenges in managing deep-seated, drug-resistant infections and offers a promising precision strategy for KLA.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69cd79e15652765b073a6ab9https://doi.org/10.1021/acsami.6c01840
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