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Merck

High-Performance Silicon Nanopore Hemofiltration Membranes.

Journal of membrane science (2010-01-08)
William H Fissell, Anna Dubnisheva, Abigail N Eldridge, Aaron J Fleischman, Andrew L Zydney, Shuvo Roy
摘要

Silicon micromachining provides the precise control of nanoscale features that can be fundamentally enabling for miniaturized, implantable medical devices. Concerns have been raised regarding blood biocompatibility of silicon-based materials and their application to hemodialysis and hemofiltration. A high-performance ultrathin hemofiltration membrane with monodisperse slit-shaped pores was fabricated using a sacrificial oxide technique and then surface-modified with poly(ethylene glycol) (PEG). Fluid and macromolecular transport matched model predictions well. Protein adsorption, fouling, and thrombosis were significantly inhibited by the PEG. The membrane retained hydraulic permeability and molecular selectivity during a 90 hour hemofiltration experiment with anticoagulated bovine whole blood. This is the first report of successful prolonged hemofiltration with a silicon nanopore membrane. The results demonstrate feasibility of renal replacement devices based on these membranes and materials.

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Sigma-Aldrich
甲状腺球蛋白 来源于牛甲状腺, powder, ≥90% (agarose gel electrophoresis)
Sigma-Aldrich
白蛋白 来源于鸡蛋白, lyophilized powder, ≥90% (agarose gel electrophoresis)