1 |
Houlihan D D, Armstrong M J, Newsome P N. Investigation of Jaundice[J]. Medicine, 2011, 39(9): 518⁃522.
|
2 |
赖芳芳,张丙宏.胆红素对新生儿神经系统影响的研究进展[J].医学综述, 2018, 24(9): 1704⁃1708.
|
3 |
李孟岩,鞠佳,谢磊,等.PVDF微滤膜的制备、改性及其血液净化应用初探[J]. 辽宁石油化工大学学报, 2019, 39(4): 7⁃10.
|
4 |
Cai N, Li Q, Zhang J, et al. Antifouling zwitterionic hydrogel coating improves hemocompatibility of activated carbon hemoadsorbent[J]. Journal of Colloid and Interface Science, 2017, 503: 168⁃177.
|
5 |
Baydemir G, Bereli N, Andac M, et al. Bilirubin recognition via molecularly imprinted supermacroporous cryogels[J]. Colloids and Surfaces B, 2009, 68: 33⁃38.
|
6 |
Wu K,Yang W, Liu X, et al. Electrospun porous polyethersulfone (PES) fiber mats with high bilirubin adsorption capacity[J]. Materials Letters, 2016, 185: 252⁃255.
|
7 |
Wu K, Yang W, Jiao Y, et al. A Surface molecularly imprinted electrospun polyethersulfone (PES) fiber mat for selective removal of bilirubin[J]. Journal of Materials Chemistry B, 2017, 5(29): 5763⁃5773.
|
8 |
Yola M L, Gode C, Atar N. Molecular imprinting polymer with polyoxometalate/carbon nitride nanotubes for electrochemical recognition of bilirubin[J]. Electrochimica Acta, 2017, 246: 135⁃140.
|
9 |
Ma C, Gao Q, Xia K, et al. Three⁃dimensionally porous graphene: A high⁃performance adsorbent for removal of albumin⁃bonded bilirubin[J]. Colloids and Surfaces B, 2017, 149: 146⁃153.
|
10 |
Muller B R. Effect of particle size and surface area on the adsorption of albumin⁃bonded bilirubin on activated carbon[J]. Carbon, 2010, 48(12): 3607⁃3615.
|
11 |
Zong W, Chen J, Han W, et al. Preparation of chitosan/amino multiwalled carbon nanotubes nanocomposite beads for bilirubin adsorption in hemoperfusion[J]. Journal of Biomedical Materials Research Part B, 2018, 106(1): 96⁃103.
|
12 |
Ou Y, Gong Q, Liang J. Carbon nanotube⁃chitosan composite beads with radially aligned channels and nanotube⁃exposed walls for bilirubin adsorption[J]. Advanced Engineering Materials, 2015, 17(4): 460⁃466.
|
13 |
Ju J, Liang F, Zhang X, et al. Advancement in separation materials for blood purification therapy[J]. Chinese Journal of Chemical Engineering, 2019, 27(6): 1383⁃1390.
|
14 |
张晖,刘国聪. N掺杂TiO2纳米膜吸附胆红素分子的石英晶体微天平研究[J].分析科学学报, 2011, 27(6): 24⁃29.
|
15 |
Yang Z, Si S, Fung Y. Bilirubin adsorption on nanocrystalline titania films[J]. Thin Solid Films, 2007, 515(7/8): 3344⁃3351.
|
16 |
Li Y, Ding J, Luan Z, et al. Competitive adsorption of Pb2+, Cu2+ and Cd2+ ions from aqueous solutions by multiwalled carbon nanotubes[J]. Carbon, 2003, 41(14): 2787⁃2792.
|
17 |
Wang S, Gao Q, Luo W, et al. Removal of methyl blue from aqueous solution by magnetic carbon nanotube[J]. Water Science and Technology, 2013, 68(3): 665⁃673.
|
18 |
Ramazani S, Ghaedi M, Mortazavi K. Multiwalled carbon nanotubes as efficient adsorbent for the removal of Congo red[J]. Fresenius Environmental Bulletin, 2011, 20(10): 2514⁃2520.
|
19 |
Shinke K, Ando K, Koyama T, et al. Properties of various carbon nanomaterial surfaces in bilirubin adsorption[J]. Colloids and Surfaces B, 2010, 77(1): 18⁃21.
|
20 |
Ju J, He G, Duan Z, et al. Improvement of bilirubin adsorption capacity of cellulose acetate/polyethyleneimine membrane using sodium deoxycholate[J]. Biochemical Engineering Journal, 2013, 79: 144⁃152.
|
21 |
鞠佳,聂飞,段志军,等.亲和膜配基的结构和密度对胆红素吸附的影响[J].化工学报, 2013, 64(1): 303⁃310.
|
22 |
Shi W, Zhang F, Zhang G. Adsorption of bilirubin with polylysine carrying chitosan⁃coated nylon affinity membranes[J]. Journal of Chromatography B, 2005, 819(2): 301⁃306.
|
23 |
Chen J, Ma Y, Wang L, et al. Preparation of chitosan/SiO2⁃loaded graphene composite beads for efficient removal of bilirubin[J]. Carbon, 2018, 143: 352⁃361.
|
24 |
Davies C R, Malchesky P S, Saidel G M. Temperature and albumin effects on adsorption of bilirubin from standard solution using anion⁃exchange resin[J]. Artificial Organs, 1990, 14(1): 14⁃19.
|
25 |
Ando K, Shinke K, Yamada S, et al. Fabrication of carbon nanotube sheets and their bilirubin adsorption capacity[J]. Colloids and Surfaces B, 2009, 71(2): 255⁃259.
|
26 |
Yang Z, Si S, Fung Y. Bilirubin adsorption on nanocrystalline titania films[J].Thin Solid Films, 2007, 515(7/8): 3344⁃3351.
|
27 |
Shi W, Cao H, Song C, et al. Poly (pyrrole⁃3⁃carboxylic acid)⁃alumina composite membrane for affinity adsorption of bilirubin[J]. Journal of Membrane Science, 2010, 353(1/2): 151⁃158.
|
28 |
Jacobsen J, Brodersen R. Albumin⁃bilirubin binding mechanism[J]. The Journal of Biological Chemistry, 1983, 258(10): 6319⁃6326.
|