Lọc theo danh mục
  • Năm xuất bản
    Xem thêm
  • Lĩnh vực
liên kết website
Lượt truy cập
 Lượt truy cập :  22,334,443
  • Công bố khoa học và công nghệ Việt Nam

Kỹ thuật và thiết bị y học

Đỗ Bá Quốc Thái, Lê Thanh Nguyên, Trần Văn Hiếu(1)

Cố định kháng thể lên hạt latex và ứng dụng phân tích miễn dịch

Antibody immobilization technique onto latex beads and its immunoassay applications

Tạp chí Khoa học và Công nghệ - ĐH Công nghiệp TP. Hồ Chí Minh

2022

01

116-133

2525-2267

Gắn định hướng kháng thể/protein lên bề mặt hạt latex là một trong những giai đoạn chính, quyết định hiệu quả của xét nghiệm ngưng kết huyết thanh. Hiện nay, ba phương pháp chính được sử dụng bao gồm hấp thụ thụ động, gắn định hướng qua liên kết cộng hóa trị và liên kết ái lực đã có thể giúp cải thiện đáng kể chất lượng của sản phẩm. Chưa dừng lại ở đó, sự phát triển của các kỹ thuật sinh học phân tử hiện đại, đặc biệt là công nghệ protein tái tổ hợp, đã giúp tạo ra các loại protein ngoại lai có khả năng gắn đặc hiệu với bề mặt hạt latex. Bài tổng quan này sẽ điểm qua các yếu tố ảnh hưởng đến quá trình hoạt hóa hạt latex cũng như ưu, nhược điểm của các phương pháp gắn định hướng kháng thể/protein lên bề mặt hạt latex đang được sử dụng rộng rãi. Qua đó, bài viết cũng giới thiệu các phương pháp gắn định hướng kháng thể mới có thể thay thế như sử dụng kháng thể dung hợp đuôi peptide gắn đặc hiệu polystyrene và sử dụng protein cầu nối.

Orientation of antibody/protein onto the latex surface is one of the most important steps, which determines the effectiveness of agglutination test. Currently, three well-known methods are used, including passive absorption, covalent coupling, and affinity immobilization. Besides, improvements in the field of molecular biology, especially the recombination protein technology, help to create a lot of novel proteins which have ability to affinity bind to the material surface. In this review, parameters effecting the latex activation process were summarized. Advantages and disadvantages of each common method were also indicated. In addition, this review also introduced some new methods that could supplant the old ones, including polystyrene-binding peptide conjugated antibody, and adapter protein.

TTKHCNQG, CVv 449

  • [1] Doris Urlaub, and Carsten Watzl (2020), "Coated Latex Beads as Artificial Cells for Quantitative Investigations of Receptor/Ligand Interactions",Current Protocols in Immunology, vol. 131, no. 1, 2020
  • [2] Y. Kumada, K. Hamasaki, Y. Shiritani,… and M. Kishimoto (2009), "Direct immobilization of functional single-chain variable fragment antibodies (scFvs) onto a polystyrene plate by genetic fusion of a polystyrene-binding peptide (PStag)",,Analytical and bioanalytical chemistry, vol. 395, no. 3, pp. 759–765, 2009.
  • [3] Wang L. (2020), "C-reactive protein levels in the early stage of COVID-19",Medecine et maladies infectieuses, vol. 50, no. 4, pp. 332–334, 2020
  • [4] S. Esmail, M.J Knauer, H. Abdoh, and S.C Li (2021), "Rapid and accurate agglutination-based testing for SARS-CoV2 antibodies",Cell Reports Methods, vol. 1, no. 2, 2021.
  • [5] C. Chaimayo, B. Kaewnaphan, N. Tanlieng, and N. Horthongkham (2020), "Rapid SARS-CoV-2 antigen detection assay in comparison with real-time RT-PCR assay for laboratory diagnosis of COVID-19 in Thailand",Virology Journal, vol. 17, no. 1, p. 177, 2020.
  • [6] S.M Oh, H. Jeong, E. Chang,… N.J Kim (2021), "Clinical Application of the Standard Q COVID-19 Ag Test for the Detection of SARS-CoV-2 Infection",Journal of Korean Medical Science, vol. 36, no. 14, 2021.
  • [7] G.C Mak, S.S Lau, K.K Wong,… and D.N Tsang (2020), "Analytical sensitivity and clinical sensitivity of the three rapid antigen detection kits for detection of SARS-CoV-2 virus",Journal of clinical virology : the official publication of the Pan American Society for Clinical Virology, vol. 133, 2020.
  • [8] C. Chaimayo, B. Kaewnephan, N. Tanlieng, and N. Horthongkham (2020), "Rapid SARS-CoV-2 antigen detection assay in comparison with real-time RT-PCR assay for laboratory diagnosis of COVID-19 in Thailand",VirologyJournal, vol. 17, no. 1, pp. 177, 2020
  • [9] F. Amanat, D. Stadlnauer, and F. Krammer (2020), "A serological assay to detect SARS-CoV-2 seroconversion in humans",Nature Medicine, vol. 26, no. 7, pp. 1033–1036, 2020.
  • [10] K. Eía, K. Vesa, M.Ahava, and S.T Jokiranta (2021), "Real-life clinical sensitivity of SARS-CoV-2 RT-PCR test in symptomatic patients",PLoS One, vol. 16, no. 5, 2021.
  • [11] L.-Å. Nilsson (1998), Encyclopedia of Immunology,Elsevier, 1998.
  • [12] S. Hiraoka, S. Takashima, T. Inokuchi,… and H. Okada (2019), "The novel latex agglutination turbidimetric immunoassay system for simultaneous measurements of calprotectin and hemoglobin in feces",,Intestinal Research, vol. 17, no. 2, pp. 202–209, 2019.
  • [13] L. Xiao, J. Yang, Q. Li, Y. Wang,… and G. Zhang (2020), "A strip test for the optical determination of influenza virus H3 subtype using gold nanoparticle coated polystyrene latex microspheres",Mikrochimica Acta, vol. 187, no. 5, 2020.
  • [14] Bangs Laboratories Inc (2021), " Immunological Application TechNote 301", 2013. [Online].,Available: https://www.bangslabs.com/sites/default/files/imce/docs/TechNote%20301%20Web.pdf [Accessed 07 05 2021].
  • [15] S. Morais, Á. Maquieira, and R. Puchades (1999), "Immunofiltration: A methodology for preconcentration and determination of organic pollutants",Analytical Chemistry, vol. 71, no. 9, pp. 1905–1909, 1999.
  • [16] Bio-Techne (2021), "LUMINEX ASSAY USERS GUIDE", 2019. [Online].,Available: https://offers.thescientist.com/hubfs/downloads/TS/Bio-Techne/TS_PPL_Bio-Techne_Immunoassay_Guide/L-941.pdf [Accessed 07 05 2021].
  • [17] T. S. Tran-Nguyen, D. T. Ngo-Luong, K. H. Nguyen-Phuoc, T. L. Tran, and H. Tran-Van (2021), "Simultaneously targeting nitrocellulose and antibody by a dual-headed protein",Protein Expresion and Purification, vol. 177, 2021.
  • [18] J. B. Tang, X.F Sun, H.M Yang,… and Z.Q Gao (2013), "Well-oriented ZZ-PS-tag with high Fc-binding onto polystyrene surface for controlled immobilization of capture antibodies",Analytica Chimica Acta, vol. 776, pp. 74– 78, 2013
  • [19] Bangs Laboratories Inc (2021), "ProActive ® Microspheres", 2016. [Online].,Available: https://www.bangslabs.com/sites/default/files/imce/docs/TechNote%20101%20Web.pdf [Accessed 07 12 2021].
  • [20] W. Choe, T. A. Durgannavar, and S. J. Chung (2016), " Fc-Binding Ligands of Immunoglobulin G: An Overview of High Affinity Proteins and Peptides",Materials (Basel, Switzerland), vol. 9, no. 12, pp. 994, 2016.
  • [21] (2021), ISO 13099-1:2012, "Colloidal systems - Methods for Zeta- potential determination - Part 1: Electroacoustic and electrokinetic phenomena", 2012. [Online].,Available: https://www.iso.org/standard/52807.html [Accessed 07 12 2021
  • [22] Y. Kumada, D. Kuroki, H. Yasui, T. Ohse, and M. Kishimoto (2010), "C-haracterization of polystyrene-binding peptides (PS-tags) for site-specific immobilization of proteins",,Journal of Bioscience and Bioengeering, vol. 109, no. 6, pp. 583–587, 2010.
  • [23] Y. Kumada, Y. Shiritani, K. Hamasaki, T. Ohse, and M. Kishimoto (2009), "High biological activity of a recombinant protein immobilized onto polystyrene",Biotechnological Journal, vol. 4, no. 8, pp. 1178–1189, 2009.
  • [24] Y. Kumada, Y. Shiritani, K. Hamasaki, T. Ohse, and M. Kishimoto (2009), "High biological activity of a recombinant protein immobilized onto polystyrene",,Biotechnological Journal, vol. 4, no. 8, pp. 1178–1189, 2009.
  • [25] T. Sakiyama, S. Ueno, K. Imamura, and K. Nakanishi (2004), "Use of a novel affinity tag se-lected with a bacterial random peptide library for improving activity retention of glutathione S-transferase adsorbed on a polystyrene surface",,Journal of Molecular Catalysis B Enzymatic, vol. 28, no. 4–6, pp. 207–214, 2004.
  • [26] C. E. Chivers, A. L. Koner, E. D. Lowe, and M. Howarth (2011), "How the biotin-streptavidin interaction was made even stronger: Investigation via crystallography and a chimaeric tetramer",Biochemical Journal, vol. 435, no. 1, pp. 55–63, 2011.
  • [27] J. Sarobe, J. A. Molina-Bolívar, J. Forcada, F. Galisteo, and R. Hidalgo-A Ä Lvarez (1998), "Functionalized Monodisperse Particles with Chloromethyl Groups for the Covalent Coupling of Proteins",,Macromolecules, vol. 31, no. 13, pp. 4282–4287, 1998.
  • [28] M. J. Hortigüela, and J. G. Wall (2013), "Improved detection of domoic acid using covalently immobilised antibody fragments",Marine Drugs, vol. 11, no. 3, pp. 881–895, 2013
  • [29] J. M. J. M. Ravasco, and H. Faustino A. (2019), "Trindade, and P. M. P. Gois, Bioconjugation with Maleimides: A Useful Tool for Chemical Biology",Chemistry - A European Journal, vol. 25, no. 1, pp. 43–59, 2019.
  • [30] S. Roy, C. K. Dixit, R. Woolley, R. O’Kennedy, and C. McDonagh (2012), "Synthesis and c-haracterization of a Noble metal Enhanced Optical Nanohybrid (NEON): A high brightness detection platform based on a dye-doped silica nanoparticle",,Langmuir, vol. 28, no. 21, pp. 8244–8250, 2012.
  • [31] D.T Cheung, and M.E Nimni (1982), "Mechanism of crosslinking of proteins by glutaraldehyde I: reaction with model compounds",Connective Tissue Research, vol. 10, no. 2, pp. 187–199, 1982
  • [32] D. Sung, S. Yang, J. W. Park, and S. Jon (2013), "High-density immobilization of antibodies onto nanobead-coated cyclic olefin copolymer plastic surfaces for application as a sensitive immunoassay chip",Biomedical Microdevices, vol. 15, no. 4, pp. 691–698, 2013.
  • [33] Xiyan Deng, Min Zeng, Xuan Wang,… and Liang Xu (2021), "Preparation and c-haracterization of cyclic citrullinated peptide-immobilized latex beads for measurement of anti-citrillinated protein antibody through latex particleenhanced turbidimetric immunoassay",,Journal of Chromatography A, vol. 1642, 2021
  • [34] Bedabrata Saha, Pål Songe, T. H. Evers, and M. W. J. Prins (2017), "The influence of covalent immobilization conditions on antibody accessibility on nanoparticles",Analyst, vol. 142, no. 22, pp. 4247–4256, 2017.
  • [35] J. L. Ortega-Vinuesa, D. Bastos-González, and R. Hidalgo-Álvarez (1996), "Effect of storage time on the immunoreactivity of IgG physically adsorbed or chemically bound to latex beads",Journal of Colloid and Interface Science, vol. 184, no. 1, pp. 331–334, 1996.
  • [36] Y. Kumada, Y. Tokunaga, H. Imanaka,… and K. Nakanishi (2006), "Screening and c-haracterization of affinity peptide tags specific to polystyrene supports for the orientated immobilization of proteins",Biotechnology Progress, vol. 22, no. 2, pp. 401–405, 2006.
  • [37] Othman, and Abdulrazzag Abdulaziz (2021), "The Use of Antibody-Coated Latex Beads to Determine Single Positive and Double Positive Mouse Spleen Cells Expressing CD5 and/or CD19 Glycoproteins",(2015). Browse all Theses and Dissertations", 2018 [Online]. Available: https://corescholar.libraries.wright.edu/etd_all/1394/?utm_source=corescholar.libraries.wright.edu%2Fetd_all%2F1 394&utm_medium=PDF&utm_campaign=PDFCoverPages [Accessed 20 06 2021]
  • [38] T. López-León, A. B. Jódar-Reyes, J. L. Ortega-Vinuesa, and D. Bastos-González (2005), "Hofmeister effects on the colloidal stability of an IgG-coated polystyrene latex",Journal of Colloid and Interface Science, vol. 284, no. 1, pp. 139–148, 2005.
  • [39] A. B. Jódar-Reyes, J. L. Ortega-Vinuesa, and A. Martín-Rodríguez (2005), "Adsorption of different amphiphilic molecules onto polystyrene latices",Journal of Colloid and Interface Science, vol. 282, no. 2, pp. 439–447, 2005.
  • [40] J. J. Valle-Delgado, J. A. Molina-Bolívar, F. Galisteo-González, and M. J. Gálvez-Ruiz (2003), "Study of colloidal stability of an amphoteric latex",Colloid and Polymer Science, vol. 281, no. 8, pp. 708–715, 2003.
  • [41] J. A. Molina-Bolívar, F. Galisteo-González, and R. Hidalgo-Álvarez (1997), "Colloidal stability of protein-polymer systems: A possible explanation by hydration forces",,Physical Review E, vol. 55, no. 4, pp. 4522–4530, 1997.
  • [42] M. Galli, S. Sáringer, I. Szilágyi, and G. Trefalt (2020), "A simple method to determine critical coagulation concentration f-rom electrophoretic mobility",Colloids and Interfaces, vol. 4, no. 2, pp. 20, 2020.
  • [43] M. Jansson, D. Belić, J. Forsman, and M. Skepö (2020), "Nanoplatelet interactions in the presence of multivalent ions: The effect of overc-harging and stability",Journal of Colloid and Interface Science, vol. 579, pp. 573–581, 2020.
  • [44] E. A. Jemima, S. Manoharan, and K. Kumanan (2014), "Development and evaluation of a recombinant-glycoproteinbased latex agglutination test for rabies virus antibody assessment",Archives of Virology, vol. 159, no. 8, pp. 1987– 1993, 2014
  • [45] J. L. Ortega-Vinuesa, R. Hidalgo-Álvarez, F. J. De Las Nieves,… and C. P. Price (1998), "C-haracterization of immunoglobulin G bound to latex particles using surface plasmon resonance and electrophoretic mobility",Journal of Colloid and Interface Science, vol. 204, no. 2, pp. 300–311, 1998.
  • [46] Y. Kumada, K. Hamasaki, E. Sasaki,… and M. Kishimoto (2013), "Immobilization and functional reconstitution of antibody Fab fragment by solid-phase refolding",,Journal of Immunological Methods, vol. 400–401, no. 1, pp. 70–77, 2013.
  • [47] Y. Kumada, Y. Ishikawa, Y. Fujiwara,… and M. Kishimoto (2014), "Efficient refolding and immobilization of PMMAtag-fused single-chain Fv antibodies for sensitive immunological detection on a PMMA plate",Journal of Immunological Methods, vol. 411, pp. 1–10, 2014
  • [48] V. de Angelis and P. L. Meroni (2007), Autoantibodies, Second Edition.,Place of publication: Elsevier, 2007.
  • [49] F. Ingegnoli, R. Castelli, and R. Gualtierotti (2013), "Rheumatoid Factors: Clinical Applications",Disease Markers, vol. 35, no. 6, pp. 727-734, 2013.
  • [50] J. L. Ortega-Vinuesa, J. A. Molina-Bolívar, and R. Hidalgo-Álvarez (1996), "Particle enhanced immunoaggregation of F(ab′)2 molecules",Journal of Immunological Methods, vol. 190, no. 1, pp. 29–38, 1996.
  • [51] L. Dávalos-Pantoja, J. L. Ortega-Vinuesa, D. Bastos-González, and R. Hidalgo-A ´ Lvarez (2001), "Colloidal stability of IgG-and IgY-coated latex microspheres",Colloids Surfaces B: Biointerfaces, vol. 20, no. 2, pp. 165-175, 2001.
  • [52] Y. Kumada, Y. Miyamura, R. Tanibata,… and H. Jun-Ichi (2021), "Design and site-directed immobilization of singlechain Fv antibody to polystyrene latex beads via material-binding peptides and application to latex turbidimetric assay",,Journal of Bioscience and Bioengineering, vol. 131, no. 1, pp. 84–89, 2021.
  • [53] Y. Kumada (2014), "Site-specific immobilization of recombinant antibody fragments through material-binding peptides for the sensitive detection of antigens in enzyme immunoassays",Biochimica et Biophysica Acta - Proteins & Proteomics, vol. 1844, no. 11, pp. 1960–1969, 2014.
  • [54] M. Shen, J. Rusling, and C. K. Dixit (2017), "Site-Se-lective Orientated Immobilization of Antibodies and Conjugates for Immunodiagnostics Development",Methods (San Diego, Califonia), vol. 116, p. 95-111, 2017.
  • [55] W. Norde, and J. Lyklema (1978), "The adsorption of human plasma albumin and bovine pancreas ribonuclease at negatively c-harged polystyrene surfaces. I. Adsorption isotherms. Effects of c-harge, ionic strength, and temperature",,Journal of Colloid and Interface Science, vol. 66, no. 2, pp. 257–265, 1978
  • [56] ]P. JM, H.-A. R, and de las Nieves FJ (1995), "Coadsorption of IgG and BSA onto sulfonated polystyrene latex: II. Colloidal stability and immunoreactivity",Journal of Biomaterials Science Polymer Edition, vol. 7, no. 3, pp. 241– 251, 1995.
  • [57] Peter A. Lovell, and Mohamed S. El-Aasser (1997), Emulsion Polymerization and Emulsion Polymers, First Edition.,Place of publication: Wiley, 1997.
  • [58] K. Kim, K. Park, G. Kim,… and S. Q. Choi (2014), "Surface C-harge Regulation of Carboxyl Terminated Polystyrene Latex Particles and Their Interactions at the Oil/Water Interface",Langmuir, vol. 30, no. 41, pp. 12164-12170, 2014.
  • [59] J. Hierrezuelo, A. Sadeghpour, I. Szilagyi, A. Vaccaro, and M. Borkovec (2010), "Electrostatic stabilization of c-harged colloidal particles with adsorbed polyelectrolytes of opposite c-harge",Langmuir, vol. 26, no. 19, pp. 15109-15111, 2010.
  • [60] Jia Dongdong, Jonathan Hamilton, Lenu M. Zaman, and Anura Goonewardene (2007), "The time, size, viscosity, and temperature dependence of Brownian motion of polystyrene microspheres",,American Journal of Physics, vol. 75, no. 2, pp. 111-115, 2007.
  • [61] ThermoFisher Scientific (2021), "Latex Bead Technical Overview", 2018. [Online].,Available: http//www.thermofisher.com/id/en/home/life-science/cell-analysis/qdots-microspheres-nanospheres/idc-surfactantfree-latex-beads/latex-bead-technical-overview.html [Accessed 06 18 2021].
  • [62] A. B. Jódar-Reyes, J. L. Ortega-Vinuesa, and A. Martín-Rodríguez (2006), "Electrokinetic behavior and colloida stability of polystyrene latex coated with ionic surfactants",Journal of Colloid and Interface Science, vol. 297, no. 1, pp. 170–181, 2006.
  • [63] Bohuslav Dobias, Xueping Qiu, and Wolfgang von Rybinsky (1999), Solid - liquid dispersions, 1 st Edition.,Place of publication: CRC Press, 1999.
  • [64] L. Zhu, and L. Liu, M. Jiang (1996), "Synthesis of monodisperse hydroxyl-containing polystyrene via chemical modification",Macromolecular Rapid Communications, vol. 17, no. 1, pp. 37–42, 1996.
  • [65] D. H. Napper, and R. G. Gilbert (1990), An Introduction to Polymer Colloids, First Edition.,Place of publication: Springer Netherlands, 1990.
  • [66] A. Wanger, V. Chavez, R. S. P. Huang,… and A. Dasgupta (2017), Microbiology Molecular Diagnosis in Pathology,First Edition, Elsevier, 2017.
  • [67] A. M. van Herk (2013), Chemistry Technology Emulsion Polymerisation, 2 nd Edition.,Place of publication: John Wiley & Sons Ltd , 2013.
  • [68] Cho Young-Sang, Cheol Hwan Shin, and Sujin Han (2016), "Dispersion Polymerization of Polystyrene Particles Using Alcohol as Reaction Medium",Nanoscale research letters, vol. 11, no. 1, 2016.
  • [69] F. K. Hansen, and J. Ugelstad (1978), "Particle nucleation in emulsion polymerization-1.A Theory for homogenous nucleation",Journal Polymẻ Science Polymer Chemistry Edition, vol. 16, no. 8, pp. 1953–1979, 1978.
  • [70] W. D. Harkins (1947), "A General Theory of the Mechanism of Emulsion Polymerization",,Journal of American Chemistry Society, vol. 69, no. 6, pp. 1428–1444, 1947
  • [71] L. Yang and Y. Ke (2014), "Synthesis of polystyrene nanolatexes via emulsion polymerization using sodium dodecyl sulfonate as the emulsifier",High Performance Polymers, vol. 26, no. 8, pp. 900–905, 2014.
  • [72] S. Koltzenburg, M. Maskos, and O. Nuyken (2017), Polymer Chemistry, First Edition.,Place of publication: Springer Heidelberg, 2017
  • [73] P. Pladis, and C. Kiparissides (2014), Reference Module in Chemistry, Molecular Sciences and Chemical Engineering.,Place of publication: Elsevier, 2014
  • [74] Bangs Laboratories Inc (2021), "Polymer micropheres", 2016 . [Online].,Available: https://www.bangslabs.com/sites/default/files/imce/docs/TechNote%20100%20Web.pdf [Accessed 05 12 2021].
  • [75] Bangs Laboratories Inc (2021), "Absorption protocols", 2013 . [Online].,Available: https://www.bangslabs.com/sites/default/files/imce/docs/TechNote%20204%20Web.pdf [Accessed 05 12 2021].
  • [76] K. Nakanishi, T. Sakiyama, Y. Kumada, K. Imamura, and H. Imanaka (2008), "Recent Advances in Controlled Immobilization of Proteins onto the Surface of the Solid Substrate and Its Possible Application to Proteomics",Current Proteomics, vol. 5, no. 3, pp. 161–175, 2008.
  • [77] A. Mert, R. Ozaras, F. Tabak, Bilir M.,… and R. Ozturk (2003), "The sensitivity and specificity of Brucella agglutination tests",Diagnostic microbiology and infectious disease, vol. 46, no. 4, pp. 241–243, 2003.
  • [78] Attar Z. J, Chance M. L, el-Safi, S. Carney, …and Hommel M (2001), "Latex agglutination test for the detection of urinary antigens in visceral leishmaniasis",Acta tropica, vol. 78, no. 1, pp. 11–16, 2001.
  • [79] F. Önen (1998), "Prevalence of Rheumatoid Factor (RF) and Anti-native-DNA Antibodies (anti-n DNA) in Different",Turkish Journal of Medical Sciences, vol. 28, no. 1, pp. 85-88, 1998.
  • [80] J. M. Singer, and C. M. Plotz (1956), "The latex fixation test: I. Application to the serologic diagnosis of rheumatoid arthritis",The American journal of medicine, vol. 21, no. 6, pp. 888–892, 1956.