Choi Inseong, Cho Mincheol, Song Minseo, Ryu Byeong Wook, Kang Bo Mi, Kim Joonyeong, Ryu Tae-Kyung, Choi Sung-Wook
Biomedical and Chemical Engineering, Department of Biotechnology, The Catholic University of Korea, 43 Jibong-ro, Wonmi-gu, Bucheon-si 14662, Gyeonggi-do, Republic of Korea.
Department of Neurology, Institute for Cell Engineering, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.
Micromachines (Basel). 2025 Apr 25;16(5):501. doi: 10.3390/mi16050501.
A spiral microfluidic chip (SMC) and multi-spiral microfluidic chip (MSMC) for lipid nanoparticle (LNP) production were fabricated using a CO laser engraving method, using perfluoropolyether (PFPE) and poly(ethylene glycol) diacrylate as photopolymerizable base materials. The SMC includes a spiral microchannel that enables rapid fluid mixing, thereby facilitating the production of small and uniform LNPs with a size of 72.82 ± 24.14 nm and a PDI of 0.111 ± 0.011. The MSMC integrates multiple parallel SMC structures, which enables high-throughput LNP production without compromising quality and achieves a maximum production capacity of 960 mL per hour. The LNP fabrication technology using SMC and MSMC has potential applications in the pharmaceutical field due to the ease of chip fabrication, the simplicity and cost-effectiveness of the process, and the ability to produce high-quality LNPs.
采用CO激光雕刻法,以全氟聚醚(PFPE)和聚乙二醇二丙烯酸酯作为可光聚合的基础材料,制备了用于生产脂质纳米颗粒(LNP)的螺旋微流控芯片(SMC)和多螺旋微流控芯片(MSMC)。SMC包含一个螺旋微通道,可实现快速流体混合,从而有助于生产尺寸为72.82±24.14 nm、多分散指数(PDI)为0.111±0.011的小而均匀的LNP。MSMC集成了多个平行的SMC结构,能够在不影响质量的情况下实现LNP的高通量生产,最大生产能力为每小时960 mL。由于芯片制造简便、工艺简单且具有成本效益,以及能够生产高质量的LNP,使用SMC和MSMC的LNP制造技术在制药领域具有潜在应用。