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Heterogeneous Sensor-Carrier Microswarms for Collaborative Precise Drug Delivery toward Unknown Targets with Localized Acidosis

  • Shuming Zhang
  • , Fangzhi Mou*
  • , Zheng Yu
  • , Luolin Li
  • , Manyi Yang
  • , Di Zhang
  • , Huiru Ma
  • , Wei Luo
  • , Tianlong Li*
  • , Jianguo Guan*
  • *Corresponding author for this work
  • Wuhan University of Technology
  • Wuhan Institute of Photochemistry and Technology

Research output: Contribution to journalArticlepeer-review

Abstract

Micro/nanorobots hold the potential to revolutionize biomedicine by executing diverse tasks in hard-to-reach biological environments. Nevertheless, achieving precise drug delivery to unknown disease sites using swarming micro/nanorobots remains a significant challenge. Here we develop a heterogeneous swarm comprising sensing microrobots (sensor-bots) and drug-carrying microrobots (carrier-bots) with collaborative tasking capabilities for precise drug delivery toward unknown sites. Leveraging robust interspecific hydrodynamic interactions, the sensor-bots and carrier-bots spontaneously synchronize and self-organize into stable heterogeneous microswarms. Given that the sensor-bots can create real-time pH maps employing pH-responsive structural-color changes and the doxorubicin-loaded carrier-bots exhibit selective adhesion to acidic targets via pH-responsive charge reversal, the sensor-carrier microswarm, when exploring unknown environments, can detect and localize uncharted acidic targets, guide itself to cover the area, and finally deploy therapeutic carrier-bots precisely there. This versatile platform holds promise for treating diseases with localized acidosis and inspires future theranostic microsystems with expandability, task flexibility, and high efficiency.

Original languageEnglish
Pages (from-to)5958-5967
Number of pages10
JournalNano Letters
Volume24
Issue number20
DOIs
StatePublished - 22 May 2024

Keywords

  • drug delivery
  • heterogeneous swarms
  • micro/nanorobots
  • photonic crystals
  • sensing

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