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◆ Acta Pharmaceutica Sinica B2026-04-12· Computer science

Where and when to strike: Spatiotemporally controlled smart nanomedicines for precision antibacterial therapy

Zhipeng Li, Yutong Li, Zhiyong Liao, Jianliang Shen

原始摘要(英文原文)· Original abstract
The global rise of antimicrobial resistance calls for new therapeutic approaches that move beyond conventional broad-spectrum antibiotics toward precision-guided nanotherapeutics. This review examines how smart antibacterial nanomedicines achieve better therapeutic outcomes through two key control dimensions: Spatial precision (where) and temporal activation (when). We first discuss active targeting strategies that direct therapeutic payloads to infection sites while sparing healthy tissues. We then analyze microenvironment-responsive mechanisms that keep therapeutic agents inactive until they encounter specific pathological signals. Moving beyond a simple catalog of material properties, we propose a "Hierarchical Intelligence Framework" that organizes nanoparticles along a spectrum of increasing complexity-from basic ligand-guided systems to integrated, logic-responsive nanodevices operating through "Target-Trigger-Treat" protocols. By examining design principles and practical challenges in pharmaceutical development, this work outlines a path toward resistance-overcoming nanomedicines that may reshape infection management in the coming decades.
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Where and when to strike: Spatiotemporally controlled smart nanomedicines for precision antibacterial therapy — 科研速览 Science Skim