National Nanotechnology Research Center (UNAM)- Bilkent University, Cankaya-Ankara, 06800, Türkiye.
Institute of Material Science and Nanotechnology, Bilkent University, Cankaya-Ankara, 06800, Türkiye.
Small. 2024 Nov;20(48):e2403463. doi: 10.1002/smll.202403463. Epub 2024 Sep 26.
Liposomes are widely utilized in therapeutic nanosystems as promising drug carriers for cancer treatment, which requires a meticulous synthesis approach to control the nanoprecipitation process. Acoustofluidic platforms offer a favorable synthesis environment by providing robust agitation and rapid mixing. Here, a novel high-throughput acoustofluidic micromixer is presented for a solvent and solvent-free synthesis of ultra-small and size-tunable liposomes. The size-tunability is achieved by incorporating glycerol as a new technique into the synthesis reagents, serving as a size regulator. The proposed device utilizes the synergistic effects of vibrating trapped microbubbles and an oscillating thin elastic membrane to generate vigorous acoustic microstreaming. The working principle and mixing mechanism of the device are explored numerically and experimentally. The platform exhibits remarkable mixing efficacy for aqueous and viscous solutions at flow rates up to 8000 µL/h, which makes it unique for high-throughput liposome formation and preventing aggregation. As a proof of concept, this study investigates the impact of phospholipid type and concentration, flow rate, and glycerol on the size and size distribution of liposomes. The results reveal a significant size reduction, from ≈900 nm to 40 nm, achieved by merely introducing 75% glycerol into the synthesis reagents, highlighting an innovative approach toward size-tunable liposomes.
脂质体作为治疗纳米系统中用于癌症治疗的有前途的药物载体被广泛应用,这需要一种细致的合成方法来控制纳米沉淀过程。声流控平台通过提供强大的搅拌和快速混合提供了有利的合成环境。在这里,提出了一种新颖的高通量声流微混合器,用于无溶剂和无溶剂合成超小且尺寸可调的脂质体。通过将甘油纳入合成试剂中作为尺寸调节剂,可以实现尺寸可调性。所提出的装置利用振动捕获微泡和振荡薄弹性膜的协同作用来产生强烈的声微流。通过数值和实验研究了该装置的工作原理和混合机理。该平台在高达 8000 μL/h 的流速下对水相和粘性溶液具有显著的混合效果,这使其成为高通量脂质体形成和防止聚集的独特选择。作为概念验证,本研究探讨了磷脂类型和浓度、流速和甘油对脂质体大小和尺寸分布的影响。结果表明,仅通过在合成试剂中引入 75%的甘油即可显著减小尺寸,从约 900nm 减小至 40nm,这突出了一种用于尺寸可调脂质体的创新方法。