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体外血液透析应用中超薄纳米多孔硅膜的清除率和血液相容性评估:用人全血进行。

In vitro clearance and hemocompatibility assessment of ultrathin nanoporous silicon membranes for hemodialysis applications using human whole blood.

机构信息

Department of Systems Design Engineering and Waterloo Institute for Nanotechnology, University of Waterloo, Waterloo, Ont., Canada.

出版信息

Blood Purif. 2013;35(4):305-13. doi: 10.1159/000350613. Epub 2013 Jul 31.

Abstract

BACKGROUND/AIMS: Recent advances in nanotechnology have made it possible to mass-produce ultrathin silicon membranes with pore sizes in the range of nanometers. In this study, we investigate the possibility of employing ultrathin nanoporous silicon membranes with pore diameters of 5 and 20 nm for dialysis of human whole blood by performing in vitro clearance and hemocompatibility assessments.

METHODS

A mini blood dialyzer is fabricated by mounting nanoporous silicon membranes on a Teflon structure. Clearance is calculated based on the concentration of sodium, chloride, ionized calcium, total CO2, glucose, creatinine and hematocrit measured before and after dialysis. Blood activation is assessed by flow cytometry.

RESULTS

Blood contact with the nanoporous membranes induces considerable leukocyte activation. Coating of the membranes with polyethylene glycol significantly improves hemocompatibility without blocking the nanopores.

CONCLUSION

Silicon nanoporous membranes are potential candidates for fabrication of miniaturized blood dialyzers. Their mechanical strength and hemocompatibility can be further improved.

摘要

背景/目的:纳米技术的最新进展使得大规模生产孔径在纳米范围内的超薄硅膜成为可能。在这项研究中,我们通过体外清除率和血液相容性评估,研究了具有 5nm 和 20nm 孔径的超薄纳米多孔硅膜用于人全血透析的可能性。

方法

通过将纳米多孔硅膜安装在聚四氟乙烯结构上,制造出微型血液透析器。根据透析前后测量的钠、氯、离子钙、总二氧化碳、葡萄糖、肌酐和血细胞比容的浓度计算清除率。通过流式细胞术评估血液激活。

结果

血液与纳米多孔膜接触会引起白细胞的大量激活。用聚乙二醇对膜进行涂层处理可显著改善血液相容性,而不会堵塞纳米孔。

结论

硅纳米多孔膜是制造微型血液透析器的潜在候选材料。其机械强度和血液相容性可以进一步提高。

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