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Microfluidic vortex focusing for high throughput synthesis of size-tunable liposomes
- Han, Jung Yeon;
- La Fiandra, Joseph N.;
- DeVoe, Don L.
WEB OF SCIENCE
104SCOPUS
107초록
Control over vesicle size during nanoscale liposome synthesis is critical for defining the pharmaceutical properties of liposomal nanomedicines. Microfluidic technologies capable of size-tunable liposome generation have been widely explored, but scaling these microfluidic platforms for high production throughput without sacrificing size control has proven challenging. Here we describe a microfluidic-enabled process in which highly vortical flow is established around an axisymmetric stream of solvated lipids, simultaneously focusing the lipids while inducing rapid convective and diffusive mixing through application of the vortical flow field. By adjusting the individual buffer and lipid flow rates within the system, the microfluidic vortex focusing technique is capable of generating liposomes with precisely controlled size and low size variance, and may be operated up to the laminar flow limit for high throughput vesicle production. The reliable formation of liposomes as small as 27 nm and mass production rates over 20 g/h is demonstrated, offering a path toward production-scale liposome synthesis using a single continuous-flow vortex focusing device. Liposomes are widely used in pharmaceuticals yet trade-offs between uniform size and mass production, limit production and application. Here, the authors report on the design of a microfluidic vortex focusing microfluidic technique which can mass produce liposomes with controlled size and low variability.
키워드
- 제목
- Microfluidic vortex focusing for high throughput synthesis of size-tunable liposomes
- 저자
- Han, Jung Yeon; La Fiandra, Joseph N.; DeVoe, Don L.
- 발행일
- 2022-11
- 유형
- Article
- 권
- 13
- 호
- 1