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Janus-shell liquid metal nanorobots for targeted bacterial eradication via microenvironment-triggered ion release

  • Huiru Guo
  • , Long Ren*
  • , Yuan Ji
  • , Fangzhi Mou
  • , Ningyan Cheng
  • , Xianghua Wu
  • , Zheng Zhao*
  • , Yi Du
  • , Jianguo Guan
  • *Corresponding author for this work
  • Wuhan University of Technology
  • Shanghai University
  • Institutes of Physical Science and Information Technology
  • Wuhan Institute of Photochemistry and Technology

Research output: Contribution to journalArticlepeer-review

Abstract

Metal ions are potent antibacterial agents, but suffer from uncontrolled ion release and toxicity. Here, we present Janus liquid metal nanorobots (J-LMNRs) with microenvironment-responsive ion release for precise antibacterial therapy. The J-LMNRs feature a gallium-based liquid metal (Ga-LM) core encapsulated in a Janus platinum (Pt)-polymer shell. The polymer shell modulates ion release thresholds from Ga-LM nanodroplet core, preventing premature activation in healthy tissues, while the asymmetric Pt in the shell amplifies subtle bacterial signals, such as acidic pH (~6.2) and trace hydrogen peroxide levels (~150 μM), into reactive oxide species (ROS) to trigger Ga3+ ion release. This design enables autonomous chemotaxis towards infection sites and achieves 95% Staphylococcus aureus eradication within 12 h. By coupling signal amplification with adaptive chemical responsiveness, J-LMNRs minimize off-target toxicity and offer a paradigm shift for intelligent antibacterial systems.

Original languageEnglish
Article number172988
JournalChemical Engineering Journal
Volume529
DOIs
StatePublished - 1 Feb 2026

Keywords

  • Antibacterial
  • Autonomously chemotaxis
  • Ga-liquid metal nanodroplets
  • Nanorobots
  • Stimuli-responsive

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