Ultrasensitive SERS immunoassay based on diatom biosilica for detection of interleukins in blood plasma

Springer Science and Business Media LLC - Tập 409 Số 27 - Trang 6337-6347 - 2017
Agnieszka Kamińska1, Myroslav Sprynskyy2, Katarzyna Winkler1, Tomasz Szymborski1
1Institute of Physical Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224 Warsaw, Poland
2Department of Environmental Chemistry and Bioanalytics, Faculty of Chemistry, Nicolaus Copernicus University, 7 Gagarina Str., 87-100, Toruń, Poland

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Brocker C, Thompson D, Matsumoto A, Nebert DW, Vasiliou V. Evolutionary divergence and functions of the human interleukin (IL) gene family. Hum Genomics. 2010;5(1):30–55.

Commins SP, Borish L, Steinke JW. Immunologic messenger molecules: cytokines, interferons, and chemokines. J Allergy Clin Immunol. 2010;125:S53–72.

Aziz N, Nishanian P, Fahey JL. Levels of cytokines and immune activation markers in plasma in human immunodeficiency virus infection: quality control procedures. Clin Diagn Lab Immunol. 1998;5(6):755–61.

Maciel R. Standard curve fitting in immunodiagnostics: a primer. J Clin Immunoass. 1985;8:98–106.

Mosmann TR, Fong TA. Specific assays for cytokine production by T cells. J Immunol Methods. 1989;116(2):151–8.

Naylor MS, Relf M, Balkwill F. Northern analysis, ribonuclease protection, and in situ analysis of cytokine messenger RNA. Cytokines: a practical approach. Oxford: Oxford University Press; 1995. p. 35–6.

Sander B, Hoiden I, Andersson U, Moller E, Abrams JS. Similar frequencies and kinetics of cytokine producing cells in murine peripheral blood and spleen. Cytokine detection by immunoassay and intracellular immunostaining. J Immunol Methods. 1993;166(2):201–14.

Carson RT, Vignali DA. Simultaneous quantitation of 15 cytokines using a multiplexed flow cytometric assay. J Immunol Methods. 1999;227(1–2):41–52.

Gearing A, Cartwright J, Wadhwa M. Biological and immunological assays for cytokines. In: Thomson A, editor. The cytokine handbook. London: Academic Press; 1991. p. 339–55.

Whicher J, Ingham E. Cytokine measurements in body fluids. Eur Cytokine Netw. 1990;1(4):239–43.

Mire-Sluis AR, Gaines-Das R, Thorpe R. Immunoassays for detecting cytokines: what are they really measuring? J Immunol Methods. 1995;186(2):157–60.

Cannon JG, Nerad JL, Poutsiaka DD, Dinarello CA. Measuring circulating cytokines. J Appl Physiol. 1993;75(4):1897–902.

Sharma B, Frontiera RR, Henry A-I, Ringe E, Van Duyne RP. SERS: materials, applications, and the future. Mater Today. 2012;15(1–2):16–25.

Campion A, Kambhampati P. Surface-enhanced Raman scattering. Chem Soc Rev. 1998;27(4):241–50.

Camden JP, Dieringer JA, Wang Y, Masiello DJ, Marks LD, Schatz GC, et al. Probing the structure of single-molecule surface-enhanced Raman scattering hot spots. J Am Chem Soc. 2008;130(38):12616–7.

Stiles PL, Dieringer JA, Shah NC, Van Duyne RP. Surface-enhanced Raman spectroscopy. Annu Rev Anal Chem. 2008;1:601–26.

Le Ru EC, Etchegoin PG. Single-molecule surface-enhanced raman spectroscopy. Annu Rev Phys Chem. 2012;63:65–87.

El-Ansary A, Faddah LM. Nanoparticles as biochemical sensors. Nanotechnol Sci Appl. 2010;3:65–76.

Beier HT, Cowan CB, Chou IH, Pallikal J, Henry JE, Benford ME, et al. Application of surface-enhanced Raman spectroscopy for detection of beta amyloid using nanoshells. Plasmonics. 2007;2(2):55–64.

An J-H, El-Said WA, Yea C-H, Kim T-H, Choi J-W. Surface-enhanced Raman scattering of dopamine on self-assembled gold nanoparticles. J Nanosci Nanotechno. 2011;11(5):4424–9.

Jun BH, Kim JH, Park H, Kim JS, Yu KN, Lee SM, et al. Surface-enhanced Raman spectroscopic-encoded beads for multiplex immunoassay. J Comb Chem. 2007;9(2):237–44.

Wang Z, Zong S, Li W, Wang C, Xu S, Chen H, et al. SERS-fluorescence joint spectral encoding using organic-metal-QD hybrid nanoparticles with a huge encoding capacity for high-throughput biodetection: putting theory into practice. J Am Chem Soc. 2012;134(6):2993–3000.

Wang Y, Salehi M, Schutz M, Schlucker S. Femtogram detection of cytokines in a direct dot-blot assay using SERS microspectroscopy and hydrophilically stabilized Au-Ag nanoshells. Chem Commun. 2014;50(21):2711–4.

Wang Y, Salehi M, Schutz M, Rudi K, Schlucker S. Microspectroscopic SERS detection of interleukin-6 with rationally designed gold/silver nanoshells. Analyst. 2013;138(6):1764–71.

Kaminska A, Witkowska E, Winkler K, Dziecielewski I, Weyher JL, Waluk J. Detection of hepatitis B virus antigen from human blood: SERS immunoassay in a microfluidic system. Biosens Bioelectron. 2015;66:461–7.

Xu X, Hasan D, Wang L, Chakravarty S, Chen RT, Fan DL, et al. Guided-mode-resonance-coupled plasmonic-active SiO2 nanotubes for surface enhanced Raman spectroscopy. Appl Phys Lett. 2012;100(19):191114.

De Stefano M, De Stefano L. Nanostructures in diatom frustules: functional morphology of valvocopulae in cocconeidacean monoraphid taxa. J Nanosci Nanotechno. 2005;5(1):15–24.

Ferrara MA, Dardano P, De Stefano L, Rea I, Coppola G, Rendina I, et al. Optical properties of diatom nanostructured biosilica in Arachnoidiscus sp.: micro-optics from Mother Nature. PLoS One. 2014;9(7):e103750.

Bismuto A, Setaro A, Maddalena P, De Stefano L, De Stefano M. Marine diatoms as optical chemical sensors: a time-resolved study. Sens Actuator B Chem. 2008;130(1):396–9.

Gale DK, Gutu T, Jiao J, Chang CH, Rorrer GL. Photoluminescence detection of biomolecules by antibody-functionalized diatom biosilica. Adv Funct Mater. 2009;19(6):926–33.

Kong XM, Xi YT, Le Duff P, Chong XY, Li EW, Ren FH, et al. Detecting explosive molecules from nanoliter solution: a new paradigm of SERS sensing on hydrophilic photonic crystal biosilica. Biosens Bioelectron. 2017;88:63–70.

Yokoe T, Iino Y, Morishita Y. Trends of IL-6 and IL-8 levels in patients with recurrent breast cancer: preliminary report. Breast Cancer (Tokyo, Japan). 2000;7(3):187–90.

Yang J, Zhen L, Ren F, Campbell J, Rorrer GL, Wang AX. Ultra-sensitive immunoassay biosensors using hybrid plasmonic-biosilica nanostructured materials. J Biophotonics. 2015;8(8):659–67.

Fernandez-Lopez C, Mateo-Mateo C, Alvarez-Puebla RA, Perez-Juste J, Pastoriza-Santos I, Liz-Marzan LM. Highly controlled silica coating of PEG-capped metal nanoparticles and preparation of SERS-encoded particles. Langmuir. 2009;25(24):13894–9.

Enustun BV, Turkevich J. Coagulation of colloidal gold. J Am Chem Soc. 1963;85(21):3317–28.

Han XX, Kitahama Y, Itoh T, Wang CX, Zhao B, Ozaki Y. Protein-mediated sandwich strategy for surface-enhanced Raman scattering: application to versatile protein detection. Anal Chem. 2009;81(9):3350–5.

Sprynskyy M, Pomastowski P, Hornowska M, Król A, Rafińska K, Buszewski B. Naturally organic functionalized 3D biosilica from diatom microalgae. Mater Des. 2017;132:22–9.

Mie G. Beiträge zur Optik trüber Medien, speziell kolloidaler Metallösungen. Ann Phys. 1908;330(3):377–445.

Song CY, Wang ZY, Yang J, Zhang RH, Cui YP. Effects of solid substrate on the SERS-based immunoassay: a comparative study. J Raman Spectrosc. 2011;42(3):313–8.

Ni J, Lipert RJ, Dawson GB, Porter MD. Immunoassay readout method using extrinsic Raman labels adsorbed on immunogold colloids. Anal Chem. 1999;71(21):4903–8.

Guven B, Basaran-Akgul N, Temur E, Tamer U, Boyaci IH. SERS-based sandwich immunoassay using antibody coated magnetic nanoparticles for Escherichia coli enumeration. Analyst. 2011;136(4):740–8.

Grubisha DS, Lipert RJ, Park HY, Driskell J, Porter MD. Femtomolar detection of prostate-specific antigen: an immunoassay based on surface-enhanced Raman scattering and immunogold labels. Anal Chem. 2003;75(21):5936–43.

Shrivastava A, Gupta V. Methods for the determination of limit of detection and limit of quantitation of the analytical methods. Chron Young Sci. 2011;2(1):21–5.

Fuhrmann T, Landwehr S, El Rharbi-Kucki M, Sumper M. Diatoms as living photonic crystals. Appl Phys B. 2004;78(3–4):257–60.

Ren FH, Campbell J, Wang XY, Rorrer GL, Wang AX. Enhancing surface plasmon resonances of metallic nanoparticles by diatom biosilica. Opt Express. 2013;21(13):15308–13.

Deng Y, Qi D, Deng C, Zhang X, Zhao D. Superparamagnetic high-magnetization microspheres with an Fe3O4@SiO2 core and perpendicularly aligned mesoporous SiO2 shell for removal of microcystins. J Am Chem Soc. 2008;130(1):28–9.

Ko H, Singamaneni S, Tsukruk VV. Nanostructured surfaces and assemblies as SERS media. Small. 2008;4(10):1576–99.

Buffone C, Sefiane K. Investigation of thermocapillary convective patterns and their role in the enhancement of evaporation from pores. Int J Multiphas Flow. 2004;30(9):1071–91.

De Angelis F, Gentile F, Mecarini F, Das G, Moretti M, Candeloro P, et al. Breaking the diffusion limit with super-hydrophobic delivery of molecules to plasmonic nanofocusing SERS structures. Nat Photonics. 2011;5(11):682–7.

DeForge LE, Remick DG. Sandwich ELISA for detection of picogram quantities of interleukin-8. Immunol Investig. 1991;20(1):89–97.