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通过水包水液滴微流控技术制备磁性聚电解质微胶囊

Magnetic polyelectrolyte microcapsules via water-in-water droplet microfluidics.

作者信息

Navi Maryam, Kieda Jennifer, Tsai Scott S H

机构信息

Graduate Program in Biomedical Engineering, Ryerson University, Toronto M5B 2K3, Canada.

出版信息

Lab Chip. 2020 Aug 21;20(16):2851-2860. doi: 10.1039/d0lc00387e. Epub 2020 Jun 18.

Abstract

Polyelectrolyte microcapsules (PEMCs) have biocompatible microcompartments. Therefore, PEMCs are useful for applications in cosmetics, food, pharmaceutics, and other industries. The fabrication of PEMCs often involves the use of harsh chemicals or cytotoxic organic phases that make biomedical applications of the microcapsules challenging. In this report, we present an all-aqueous droplet microfluidics platform for the generation of magnetic PEMCs. In the platform, we use an aqueous-two-phase system (ATPS) of polyethylene glycol (PEG) and dextran (Dex), to generate water-in-water droplets, which are magnetically functionalized with ferrofluid. Strong polyelectrolytes (PEs) with opposite charges are used in each ATPS phase. We make emulsion templates of magnetic Dex, containing the polycations, in a continuous phase of PEG. We then apply a magnetic field to move the magnetic droplets to a second PEG phase, which contains the polyanions. By careful tuning of the fluxes of the two PEs in their respective phases, we trigger the formation of a shell at the droplet interface. Owing to the presence of the ferrofluid, the resulting microcapsules are magnetically responsive. We show that the magnetic PEMCs are capable of passive release of large pseudo-drugs as well as triggered release using external stimuli such as osmotic shock and pH change. We expect that magnetic PEMCs from this biocompatible all-aqueous platform will find utility in the fabrication of functionalized drug carriers for targeted drug delivery.

摘要

聚电解质微胶囊(PEMCs)具有生物相容性微隔室。因此,PEMCs在化妆品、食品、制药和其他行业的应用中很有用。PEMCs的制备通常涉及使用苛刻的化学物质或细胞毒性有机相,这使得微胶囊的生物医学应用具有挑战性。在本报告中,我们提出了一种用于生成磁性PEMCs的全水相液滴微流控平台。在该平台中,我们使用聚乙二醇(PEG)和葡聚糖(Dex)的水两相系统(ATPS)来生成水包水液滴,并用铁磁流体对其进行磁性功能化。在每个ATPS相中使用带相反电荷的强聚电解质(PEs)。我们在PEG的连续相中制备含有聚阳离子的磁性Dex乳液模板。然后,我们施加磁场将磁性液滴移动到含有聚阴离子的第二个PEG相中。通过仔细调节两个PEs在各自相中通量,我们触发液滴界面处壳层的形成。由于铁磁流体的存在,所得微胶囊具有磁响应性。我们表明,磁性PEMCs能够被动释放大的假药物,以及使用渗透压冲击和pH变化等外部刺激触发释放。我们期望来自这个生物相容性全水相平台的磁性PEMCs将在用于靶向药物递送的功能化药物载体的制造中找到用途。

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