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Updated: Jul 5, 2026

Testing the In Vitro and In Vivo Efficiency of mRNA-Lipid Nanoparticles Formulated by Microfluidic Mixing
Published on: January 20, 2023
Toward accessible mRNA LNP formulation: systematic evaluation of mixing strategies and key parameters
Han Na Jung1,2, Somin Lee3,4,2, Eunice Hong5,4,2
1Department of Applied Bioengineering, Graduate School of Convergence Science and Technology, Seoul National University, Seoul, 08826, Republic of Korea.
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Although mRNA LNPs are a leading delivery platform, achieving reproducible, high-quality formulations across diverse fabrication techniques remains a challenge. This study systematically investigates the impact of microfluidic architectures - staggered herringbone (SS) and serpentine-only (S) channels - alongside T-junction and rapid pipetting methods. We evaluate how critical parameters, including total flow rate (TFR), flow rate ratio (FRR), and lipid-to-mRNA ratio (N/P ratio), govern LNP size, stability, and transfection efficiency. Our findings demonstrate that streamlined S-channel designs and non-microfluidic methods can yield LNPs functionally equivalent in quality and performance to complex staggered herringbone mixers through precise parameter tuning. Furthermore, in vivo assessment confirms the systemic biocompatibility of the optimized formulations, characterized by stable physiological growth, preserved hepatic and renal function, and an absence of adverse histological changes or tissue damage over 8 weeks. By bridging the gap between fluidic process optimization and long-term systemic tolerability, this work provides a foundational framework for the accessible and reproducible production of mRNA LNPs across varying laboratory environments and production scales.

