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Weizmann Group

Synthetic nucleic acids and photothermal nanomaterials design group

Engineered exosome hybrid copper nanoscale antibiotics facilitate simultaneous self-assembly imaging and elimination of intracellular multidrug-resistant superbugs

Zengchao Guo, Weiwei Liu, Tengfei Liu, Jinpeng Wang, Hui Jiang, Xiaohui Liu, Yossi Weizmann, Xuemei Wang

With the increasing emergence of bacterial infections, especially multidrug-resistant (MDR) bacteria, poses an urgent threat. This study demonstrated a novel multifunctional nanotheranostics platform developed by the strategic integration of both in-situ bio-assembly imaging and target bacteria inactivation. Through the introduction of copper ions into bacteria, the Cu2+ could spontaneously bio-self-assembled into a multifunctional copper nanoclusters (NCs) which efficiently enhanced epigallocatechin gallate (EGCG) uptake into bacteria. While visualizing the bacteria, the developed theranostic nanoplatform exhibited highly efficient disinfection activities with negligible side effects as reflected by higher cell viability and insignificant hemolytic effects. Furthermore, the exosomal formulation of EGCG integrated with Cu2+ showed an increased intracellular antibacterial activity, which could eliminate most of the methicillin-resistant Staphylococcus aureus (MRSA) phagocytosed by macrophages, guide macrophages toward M2-like phenotype polarization and alleviate inflammation, without exhibiting obvious cytotoxicity on host RAW264.7. The regimen could be viewed as an effective strategy for the sterilization of intractable bacterial infections.

Publication language English
Journal Chinese Chemical Letters
Volume 35
Issue number 7
Publication status Published - 01.07.2024
109060

Keywords

Antibacterial agents
Bioimaging
Exosome
In situ self-assembled
Intracellular infection

ASJC Scopus subject areas

General Chemistry

Sustainable Development Goals

SDG 3 - Good Health and Well-being
Other files and links
Link to publication in Scopus