Ou Yang, Lv Chang-Jiang, Yu Wei, Mao Zheng-Wei, Wan Ling-Shu, Xu Zhi-Kang
MOE Key Laboratory of Macromolecular Synthesis and Functionalization, Department of Polymer Science and Engineering, and ‡State Key Laboratory of Chemical Engineering, Department of Chemical and Biochemical Engineering, Zhejiang University , Hangzhou 310027, People's Republic of China.
ACS Appl Mater Interfaces. 2014 Dec 24;6(24):22400-7. doi: 10.1021/am506419z. Epub 2014 Dec 3.
Thin perforated membranes with ordered pores are ideal barriers for high-resolution and high-efficiency selective transport and separation of biological species. However, for self-assembled thin membranes with a thickness less than several micrometers, an additional step of transferring the membranes onto porous supports is generally required. In this article, we present a facile transfer-free strategy for fabrication of robust perforated composite membranes via the breath figure process, and for the first time, demonstrate the application of the membranes in high-resolution cell separation of yeasts and lactobacilli without external pressure, achieving almost 100% rejection of yeasts and more than 70% recovery of lactobacilli with excellent viability. The avoidance of the transfer step simplifies the fabrication procedure of composite membranes and greatly improves the membrane homogeneity. Moreover, the introduction of an elastic triblock copolymer increases the interfacial strength between the membrane and the support, and allows the preservation of composite membranes in a dry state. Such perforated ordered membranes can also be applied in other size-based separation systems, enabling new opportunities in bioseparation and biosensors.
具有有序孔的薄穿孔膜是用于生物物种高分辨率和高效选择性传输与分离的理想屏障。然而,对于厚度小于几微米的自组装薄膜,通常需要额外的步骤将膜转移到多孔支撑体上。在本文中,我们提出了一种通过呼吸图案法制备坚固穿孔复合膜的简便无转移策略,并首次展示了该膜在无需外部压力的情况下用于酵母和乳酸菌高分辨率细胞分离的应用,实现了几乎100%的酵母截留率和超过70%的乳酸菌回收率,且乳酸菌具有优异的活力。避免转移步骤简化了复合膜的制备过程并极大地提高了膜的均匀性。此外,引入弹性三嵌段共聚物增加了膜与支撑体之间的界面强度,并使复合膜能够在干燥状态下保存。这种穿孔有序膜还可应用于其他基于尺寸的分离系统,为生物分离和生物传感器带来新机遇。