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使用注塑塑料微流控装置高通量合成脂质体

High-Throughput Synthesis of Liposome Using an Injection-Molded Plastic Micro-Fluidic Device.

作者信息

Woo Sang-Won, Jo Yun Kyong, Yoo Yeong-Eun, Kim Sun Kyoung

机构信息

Korea Institute of Machinery and Materials, 156 Gajeongbuk-ro, Yusung-Gu, Daejeon 34103, Korea.

Department of Mechanical System Design Engineering, Seoul National University of Science and Technology, 232 Gongreung-Ro, Nowon-Gu, Seoul 01811, Korea.

出版信息

Micromachines (Basel). 2021 Feb 9;12(2):170. doi: 10.3390/mi12020170.

Abstract

For mass production of liposomes, we designed a plastic micro-channel device on the basis of 5 μm of micro-nozzle array forming T-junction with 100 μm depth of micro-channel. A micro-channel unit for synthesizing liposomes consisted of two micro-nozzle arrays for mixing two solutions as well as delivery and recovery channels for supplying solutions and collecting liposome suspension. The number of micro-nozzles was approximately 2400 for a micro-channel unit, and seven units were applied independently on a micro-channel plate. The plastic micro-channel plate was injection-molded for mass production using a micro-channel stamper previously fabricated by UV lithography and nickel electroforming process. A plastic cover plate with seven pairs of inlet and outlet ports was machined by mechanical milling and drilling and was assembled with a micro-channel plate using a holder to form a liposome synthesizing device. Flow and mixing of solutions in the micro-channels were tested using colored water to check the micro-fluidic characteristics of the device. Finally, a L-α-phosphatidylcholine (SOY PC) liposome was synthesized using EtOH solution of SOY PC (95%) and saline (0.85% NaOH solution) to find that the liposomes were around 230 and 260 nm in diameter, depending on the flow rate of the lipid solution.

摘要

为了大规模生产脂质体,我们基于5μm的微喷嘴阵列设计了一种塑料微通道装置,该微喷嘴阵列形成了深度为100μm的微通道的T型结。用于合成脂质体的微通道单元由两个用于混合两种溶液的微喷嘴阵列以及用于供应溶液和收集脂质体悬浮液的输送和回收通道组成。一个微通道单元的微喷嘴数量约为2400个,七个单元独立应用于一个微通道板上。使用先前通过紫外光刻和镍电铸工艺制造的微通道压模对塑料微通道板进行注塑成型以进行大规模生产。通过机械铣削和钻孔加工一个带有七对进出口端口的塑料盖板,并使用固定器将其与微通道板组装在一起以形成脂质体合成装置。使用有色水测试微通道中溶液的流动和混合情况,以检查该装置的微流体特性。最后,使用大豆磷脂酰胆碱(SOY PC)(95%)的乙醇溶液和盐水(0.85% NaOH溶液)合成了L-α-磷脂酰胆碱(SOY PC)脂质体,结果发现脂质体的直径约为230至260nm,这取决于脂质溶液的流速。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32a5/7915932/35a7a9771754/micromachines-12-00170-g001.jpg

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