4.7 Article

Structure design and performance study on filtration-adsorption bifunctional blood purification membrane

期刊

JOURNAL OF MEMBRANE SCIENCE
卷 636, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.memsci.2021.119535

关键词

Bifunctional blood purification membrane; Bilirubin adsorption; Biocompatibility; One-step filtration-adsorption

资金

  1. National Natural Science Foundation of China [21776216]
  2. Tianjin Key Laboratory Project [16PTSYJC00210]
  3. Program for Innovative Research Team in University of Tianjin [TD135044]
  4. Science and technology support project of Tianjin [20YFZCSY00310]
  5. Natural Science Foundation of Shandong Province [ZR2019LFG007]

向作者/读者索取更多资源

A novel bifunctional blood purification membrane structure is proposed to remove toxins safely by filtration-adsorption. The membrane has excellent biocompatibility on the internal surface and can adsorb toxins on the external surface. This membrane design provides a new blood purification treatment for clinical hepatic failure.
Plasma perfusion is one of the primary therapies for hepatic failure. However, biocompatibility and toxins removal of plasma perfusion adsorbents are mutual constraints. Herein, a novel bifunctional blood purification membrane structure is proposed, which can remove toxins via filtration-adsorption. The internal surface of membrane has excellent biocompatibility. Meanwhile, the external surface can adsorb toxins. When blood flows in internal surface, toxins in plasma can be filtrated through membrane and adsorbed on the external surface. Herein, plasma separation membrane with excellent biocompatibility was prepared firstly. Then, the external surface was modified by beta-cyclodextrin to construct bilirubin adsorption functional layer. XPS, ATR-FTIR and FESEM demonstrated that beta-cyclodextrin was grafted on the external surface without modifying the internal surface. The bovine serum albumin sieving coefficient of membrane reached (97.8 +/- 1.9)%. The water flux reached (1084 +/- 30)L.m2.h-1. Bilirubin adsorption capacity of the external surface reached 12.8 mg/g via filtrationadsorption. Bilirubin competitive adsorption coefficient was 9.1. The internal surface was similar to original plasma separation membrane, which had excellent biocompatibility due to low hemolysis and blood cells adsorption. Thus, the bifunctional blood purification membrane can remove bilirubin safely via one-step filtration-adsorption. The structure design of membrane provides a new blood purification treatment scheme for clinical hepatic failure.

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