参考文献/References:
[1]DOBOSZ P, MORAIS S, BONET E, et al. Massive immuno multiresidue screening of water pollutants[J]. Anal Chem, 2015, 87(19):9817-9824.
[2]YU S C, YU F, LI Y P, et al. Magnetic nanoparticles replacing microplate as immobile phase could greatly improve the sensitivity of chemiluminescence enzymatic immunoassay for deoxynivalenol[J]. Food Control, 2016, 60: 500-504.
[3]ZAWORSKI P, VON HERRMANN K M, TAYLOR S, et al. SMN protein can be reliably measured in whole blood with an electrochemiluminescence (ECL) immunoassay: implications for clinical trials[J]. PLoS One, 2016, 11(3): e0150640.
[4]TU Z, CHEN Q, LI Y, et al. Identification and characterization of species-specific nanobodies for the detection of Listeria monocytogenes in milk[J]. Anal Biochem, 2016, 493: 1-7.
[5]ZHU L, HE J, CAO X, et al. Development of a double-antibody sandwich ELISA for rapid detection of Bacillus Cereus in food[J]. Sci Rep, 2016, 6:16092. DOI: 10.1038/srep16092
[6]李小宇,张春雨,郭东全,等 . 双抗夹心ELISA检测转Bar基因抗除草剂大豆[J]. 食品科学,2016,37(4):222-225.
[7]KUMADA Y, SASAKI E, KISHIMOTO M. Preparation of scFv-immobilized quartz crystal microbalance sensor by PS-tag-mediated solid-phase refolding[J]. J Biosci Bioeng, 2011, 111(4): 459-464.
[8]NOBUYUKI T, MADOKA T, KAZUHIKO I. Significance of antibody orientation unraveled: well-oriented antibodies recorded high binding affinity[J]. Anal Chem, 2011, 83(6): 1969-1976.
[9]TANG J B, SUN X F, YANG H M, et al. Well-oriented ZZ-PS-tag with high Fc-binding onto polystyrene surface for controlled immobilization of capture antibodies[J]. Anal Chim Acta, 2013, 776(9): 74-78.
[10]KUMADA Y, OHIGASHI Y, EMORI Y, et al. Improved lectin ELISA for glycosylation analysis of biomarkers using PS-tag-fused single-chain Fv[J]. J Immuno Methods, 2012, 385(1): 15-22.
[11]EVEN-DESRUMEAUX K, BATY D, CHAMES P. Strong and oriented immobilization of single domain antibodies from crude bacterial lysates for high-throughput compatible cost-effective antibody array generation[J]. Mol Bio Syst, 2010, 6: 2241-2248.
[12]KUMADA Y, TOKUNAGA Y, IMANAKA H, et al. Screening and characterization of affinity peptide tags specific to polystyrene supports for the orientated immobilization of proteins[J]. Biotechnol Progr, 2006, 22(2): 401-405.
[13]刘儒平,王程,徐万帮,等. 基于生物素-亲和素放大的SPR传感器检测大肠杆菌研究[J]. 传感技术学报,2013,26(6):757-761.
[14]李超辉,熊勇华,郭亮,等. 纳米免疫磁珠富集猪肉中的盐酸克伦特罗[J]. 食品科学,2013,34(14):182-186.
[15]沙莎,殷赟,高晓莲,等. 基于核酸分子杂交的免疫芯片抗体固定新方法[J]. 分析化学,2013,41(2):199-204.
[16]LIN P C, CHEN S H, WANG K Y, et al. Fabrication of oriented antibody-conjugated magnetic nanoprobes and their immunoaffinity application[J]. Anal Chem, 2009, 81(21): 8774-8782.
[17]VIJAYENDRAN R A, LECKBAND D E. A quantitative assessment of heterogeneity for surface-immobilized proteins[J]. Anal Chem, 2001, 73 (3): 471-480.
[18]KOGOT J M, SARKES D A, VALADDO I, et al. Increased affinity and solubility of peptides used for direct peptide ELISA on polystyrene surfaces through fusion with a polystyrene-binding peptide tag[J]. Biotechniques, 2012, 52(2): 95-102.
[19]BROGAN K L, WOLFE K N, JONES P A, et al. Direct oriented immobilization of F (ab′) antibody fragments on gold[J]. Anal Chim Acta, 2003, 496(1): 73-80.
[20]LEE W, OH B K, LEE W H, et al. Immobilization of antibody fragment for immunosensor application based on surface plasmon resonance[J]. Surface B, 2005, 40(3): 143-148.
[21]WU S S, HUANG X, DU X Z. Glucose- and pH-responsive controlled release of cargo from protein-gated carbohydrate-functionalized mesoporous silica nanocontainers[J]. Angew Chem Int Edit, 2013, 52(21): 5580-5584.
[22]OUERGHI O, TOUHAMI A, JAFFREZIC-RENAULT N, et al. Impedimetric immunosensor using avidin–biotin for antibody immobilization[J]. Bioelectrochemistry, 2002, 56(1): 131-133.
[23]CHO I H, PAEK E H, LEE H, et al. Site-directed biotinylation of antibodies for controlled immobilization on solid surfaces[J]. Anal Biochem, 2007, 365(1): 14-23.
[24]DUTRA R F, KUBOTA L T. An SPR immunosensor for human cardiac troponin T using specific binding avidin to biotin at carboxymethyldextran-modified gold chip[J]. Clin Chim Acta, 2007, 376(1): 114-120.
[25]陈艺心,赵树铭. 蛋白质芯片构建技术的研究进展[J]. 国际检验医学杂志,2013,34(8): 989-991.
[26]WACKER R, SCHRDER H, NIEMEYER C M. Performance of antibody microarrays fabricated by either DNA-directed immobilization, direct spotting, or streptavidin-biotin attachment: a comparative study[J]. Anal Biochem, 2004, 330(2): 281-287.
[27]BOOZER C, LADD J, CHEN S, et al. DNA directed protein immobilization on mixed ssDNA/oligo (ethylene glycol) self-assembled monolayers for sensitive biosensors[J]. Anal Chem, 2004, 76(23): 6967-6972.
[28]JUNG Y W, LEE J M, JUNG H G, et al. Self-directed and self-oriented immobilization of antibody by protein G-DNA conjugate[J]. Anal Chem, 2007, 79(17): 6534-6541.
[29]SCHROEDER H, ADLER M, GERIGK K, et al. User configurable microfluidic device for multiplexed immunoassays based on DNA-directed assembly[J]. Anal Chem, 2009, 81(3): 1275-1279.
[30]HOFFMAN W L, O'SHANNESSY D J. Site-specific immobilization of antibodies by their oligosaccharide moieties to new hydrazide derivatized solid supports[J]. J Immunol Methods, 1988, 112(1): 113-120.
[31]O'SHANNESSY D J, QUARLES R H. Specific conjugation reactions of the oligosaccharide moieties of immunoglobulins[J]. J Appl Biochem, 1985, 7(4/5): 347-355.
[32]BATALLA P, FUENTES M, GRAZU V, et al. Oriented covalent immobilization of antibodies on physically inert and hydrophilic support surfaces through their glycosidic chains[J]. Biomacromolecules, 2008, 9(2): 719-723.
[33]PUERTAS S, MOROS M, FERNNDEZ-PACHECO R, et al. Designing novel nano-immunoassays: antibody orientation versus sensitivity[J]. J Phys D Appl Phys, 2010, 43(47): 474012.
[34]任志敏,聂熹,艾胜书. 保护蛋白对聚苯乙烯微珠表面抗体固定化的影响[J].长春工程学院学报(自然科学版),2012,13(4):126-128.
[35]李莎. 基于聚苯乙烯微敏感元件的表面改性、抗体分子定向固定化及催化信号放大分析研究[D]. 厦门:厦门大学,2013.
[36]JOHNSON C P, JENSEN I E, PRAKASAM A, et al. Engineered protein A for the orientational control of immobilized proteins[J]. Bioconjugate Chem, 2003, 14(5): 974-978.
[37]孟艳丽,王战会,靳刚. A蛋白定向固定抗体用于椭偏光学生物传感器免疫检测[J]. 生物工程学报,2004,20(1):112-114.
[38]PELUSO P, WILSON D S, DO D, et al. Optimizing antibody immobilization strategies for the construction of protein microarrays[J]. Anal Biochem, 2003, 312(2): 113-124.
[39]SOH N, TOKUDA T, WATANABE T, et al. A surface plasmon resonance immunosensor for detecting a dioxin precursor using a gold binding polypeptide[J]. Talanta, 2003, 60(4): 733-745.
[40]OH B K, LEE W, KIM Y K, et al. Surface plasmon resonance immunosensor using self-assembled protein G for the detection of Salmonella paratyphi[J]. J Biotechnol, 2004, 111(1): 1-8.
[41]LEE J M, PARK H K, JUNG Y, et al. Direct immobilization of protein G variants with various numbers of cysteine residues on a gold surface[J].Anal Chem, 2007, 79(7): 2680-2687.
[42]NAKANISHI K, MUGURUMA H, KARUBE I. A novel method of immobilizing antibodies on a quartz crystal microbalance using plasma-polymerized films for immunosensors[J]. Anal Chem, 1996, 68(10): 1695-1700.
[43]FASSINA G, VERDOLIVA A, PALOMBO G, et al. Immunoglobulin specificity of TG 19318: a novel synthetic ligand for antibody affinity purification[J]. J Mol Recognit, 1998, 11(16): 128-133.
[44]JUNG Y, KANG H J, LEE J M, et al. Controlled antibody immobilization onto immunoanalytical platforms by synthetic peptide[J]. Anal Biochem, 2008, 374(1): 99-105.
[45]YANG H O, GURGEL P V, CARBONELL R G J. Hexamer peptide affinity resins that bind the Fc region of human immunoglobulin G[J]. Peptide Res, 2006, 66(1): 120-137.
[46]YANG H O, GURGEL P V, CARBONELL R G J. Purification of human immunoglobulin G via Fc-specific small peptide ligand affinity chromatography[J]. J Chromatogra A, 2009, 1216(6): 910-918.
[47]朱俐燕,白姝,孙彦,等. 肽配基纳米亲和载体定向固定化抗体[J]. 离子交换与吸附,2014,30(3):193-202.
[48]黄波. 抗体亲和肽配基的理性设计和色谱表征[D]. 天津:天津大学,2011.
[49]KUMADA Y, HAMASAKI K, SHIRITANI Y, et al. Efficient immobilization of a ligand antibody with high antigen-binding activity by use of a polystyrene-binding peptide and an intelligent microtiter plate[J]. J Biotechnol, 2009, 142 (12): 135-141.
[50]KUMADA Y, SHIRITANI Y, HAMASAKI K, et al. Novel solid-phase refolding method for preparation of scFv-immobilized polystyrene plates with high-antigen-binding activity[J]. Anal Bioanal Chem, 2010, 398(3): 1295-1303.
[51]KUMADA Y, HAMASAKI K, SHIRITANI Y, et al. Direct immobilization of functional single-chain variable fragment antibodies (scFvs) onto a polystyrene plate by genetic fusion of a polystyrene-binding peptide (PS-tag)[J]. Anal Bioanal Chem, 2009, 395(3): 759-765.
[52]PRISYAZHNOY V S, FUSEK M, ALAKHOV Y B. Synthesis of high-capacity immunoaffinity sorbents with oriented immobilized immunoglobulins or their F ab′ fragments for isolation of proteins[J]. J Chromatogr B, 1988, 424: 243-253.
[53]LU B, XIE J, LU C, et al. Oriented immobilization of Fab'fragments on silica surfaces[J]. Anal Chem, 1995, 67(1): 83-87.
[54]ZHANG X, TRETJAKOV A, HOVESTAEDT M, et al. Electrochemical functionalization of gold and silicon surfaces by a maleimide group as a biosensor for immunological application[J]. Acta Biomater, 2013, 9(3): 5838-5844.
[55]MAKARAVICIUTE A, RAMANAVICIENE A. Site-directed antibody immobilization techniques for immunosensors[J]. Biosens Bioelectron, 2013, 50: 460-471.
[56]谭瑞芬,马雪梅.生物传感器芯片抗体固定的方法研究现状[J]. 北京生物医学工程,2014,33(4):434-438.
[57]KANNO S, YANAGIDA Y, HARUYAMA T, et al. Assembling of engineered IgG-binding protein on gold surface for highly oriented antibody immobilization[J]. J Biotechnol, 2000, 76(2): 207-214.
[58]DE JUAN-FRANCO E, CARUZ A, PEDRAJAS J R, et al. Site-directed antibody immobilization using a protein A-gold binding domain fusion protein for enhanced SPR immunosensing[J]. Analyst, 2013, 138(7): 2023-2031.
[59]YUAN Y, HE H, LEE L J. Protein A-based antibody immobilization onto polymeric microdevices for enhanced sensitivity of enzyme-linked immunosorbent assay[J]. Biotechnol Bioeng, 2009, 102(3): 891-901.
[60]周稳稳,廉洁,胡科家,等. 硅基芯片表面化学性质对蛋白质固定化的影响[J]. 物理化学学报,2010,26(10):2821-2827.