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Critical flux behavior of ultrathin membranes in protein-rich solutions

机译:富含蛋白质溶液中超薄膜的临界通量行为

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Critical flux defines the ideal operating conditions in tangential flow filtration (TFF). Below this value a TFF process can, in principle, proceed indefinitely without membrane fouling. The critical flux behavior of ultrathin membranes, which are particularly valuable for small volume processing, has not yet been explored. Here we investigate the critical flux behavior of ultrathin nanoporous silicon nitride (NPN) membranes in concentrated protein solutions using a microfluidic TFF device. We find that NPN (similar to 19% porosity; 60 nm average pore size; 100 nm thick) has the ability to process bovine serum albumin (BSA) solutions as concentrated as 10 mg/mL at 30 mu L/min without exceeding a critical flux threshold. At 30 mg/mL and 60 mg/mL, NPN enables 40% and 20% of the supply to be filtered without fouling. In these experiments, NPN membranes achieve critical flux values as high as similar to 1200 LMH, which is 5x larger than 0.2 mu m polyethersulfone (PES) membranes processing 5 mg/mL BSA and an order of magnitude higher than track-etch polymeric membranes (10 mu m thick; 80 nm pores) in direct comparisons. The effects of nanoparticle capture on critical flux are also studied here, simulating the capture of small extracellular vesicles (sEVs) in forthcoming diagnostic applications. Our work not only demonstrates the utility of ultrathin membranes for processing concentrated protein solutions, it illustrates the value of applying membrane science principles developed for macroscale systems (e.g. critical flux, TFF) to the micro/nano scale.
机译:临界通量定义切向流过滤(TFF)的理想操作条件。下面这一价值原则上可以在没有膜污垢的情况下无限期地进行TFF过程。超薄膜的临界通量行为尚未探讨对小体积加工特别有价值。在这里,我们使用微流体TFF器件研究超薄纳米孔氮化硅(NPN)膜在浓蛋白质溶液中的临界通量行为。我们发现NPN(类似于19%的孔隙率; 60nm平均孔径; 100nm厚)具有在30μl/ min的30μl/ min下浓缩至10mg / ml的牛血清白蛋白(BSA)溶液的能力而不超过临界助焊剂阈值。在30mg / ml和60mg / ml下,NPN使40%和20%的供应能够过滤而不会结垢。在这些实验中,NPN膜实现高于1200LmH的临界助焊剂值,其为5倍,大于0.2μm聚醚砜(PES)膜处理5mg / ml BSA,比轨道蚀刻聚合物膜高出一个数量级( 10亩厚; 80 nm孔隙)直接比较。此处还研究了纳米粒子捕获对临界通量的影响,在即将到来的诊断应用中模拟了小细胞外囊(SEVS)的捕获。我们的工作不仅证明了超薄膜用于加工浓缩蛋白质溶液的实用性,它说明了应用于Macroscale Systems(例如临界通量,TFF)为微/纳米级开发的膜科学原理的价值。

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