Lab on a chip

Using ultrasound to prevent buildup during continuous microfluidic production of RNA lipid nanoparticles

Updated

Abstract

Continuous RNA-loaded lipid nanoparticle production via a microfluidic platform can achieve uninterrupted operation for over six hours.

  • Microfluidic platforms produce RNA-loaded lipid nanoparticles with superior uniformity and encapsulation efficiency.
  • Traditional antifouling coatings have been ineffective for preventing fouling in RNA-LNP production.
  • An ultrasound-based strategy using acoustic forces can reduce deposition on microchannel walls without chemical modifications.
  • Integrating back-pressure regulation allows for extended usable acoustic intensity range and stable operation.
  • The ultrasound-enhanced microfluidic system demonstrated a >36-fold increase in operational lifetime compared to systems without acoustic actuation.
  • RNA-LNPs produced after six hours of operation maintained similar physicochemical properties and in vitro performance compared to those produced without acoustic actuation.

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