1,148
Views
36
CrossRef citations to date
0
Altmetric
Articles

A comparison of nanoparticle-antibody conjugation strategies in sandwich immunoassays

, , , , , , ORCID Icon & ORCID Icon show all

References

  • Wen, T.H.; Lin, M.H.; Teng, H.J.; Chang, N.T. Incorporating the Human-Aedes Mosquito Interactions into Measuring the Spatial Risk of Urban Dengue Fever. Appl. Geogr. 2015, 62, 256–266.
  • Naish, S.; Dale, P.; Mackenzie, J.S.; McBride, J.; Mengersen, K.; Tong, S. Climate Change and Dengue: A Critical and Systematic Review of Quantitative Modelling Approaches. BMC Infect. Dis. 2014, 14.
  • Zhou, Y.R.; Coleman, W.D. Accelerated Contagion and Response: Understanding the Relationships among Globalization, Time, and Disease. Globalizations 2016, 13(3), 285–299.
  • Tatem, A.J. Mapping Population and Pathogen Movements. Int. Health 2014, 6(1), 5–11.
  • Bhatt, S.; Gething, P.W.; Brady, O.J.; Messina, J.P.; Farlow, A.W.; Moyes, C.L.; Drake, J.M.; Brownstein, J.S.; Hoen, A.G.; Sankoh, O.; Myers, M.F.; George, D.B.; Jaenisch, T.; Wint, G.R.W.; Simmons, C.P.; Scott, T.W.; Farrar, J.J.; Hay, S.I.; The Global Distribution and Burden of Dengue. Nature, 2013, 496, 504–507.
  • George, S.L.; Wong, M.A.; Dube, T.J.T.; Boroughs, K.L.; Stovall, J.L.; Luy, B.E.; Haller, A.A.; Osorio, J.E.; Eggemeyer, L.M.; Irby-Moore, S.; Frey, S.E.; Huang, C.Y.-H.; Stinchcomb, D.T. Safety and Immunogenicity of a Live Attenuated Tetravalent Dengue Vaccine Candidate in Flavivirus-Naive Adults: A Randomized, Double-Blinded Phase 1 Clinical Trial. J. Infect. Dis. 2015, 212(7), 1032–1041.
  • Kirkpatrick, B.D.; Durbin, A.P.; Pierce, K.K.; Carmolli, M.P.; Tibery, C.M.; Grier, P.L.; Hynes, N.; Diehl, S.A.; Elwood, D.; Jarvis, A. P.; Sabundayo, B.P.; Lyon, C.E.; Larsson, C.J.; Jo, M.; Lovchik, J.M.; Luke, C. J.; Walsh, M.C.; Fraser, E.A.; Subbarao, K.; Whitehead, S.S. Robust and Balanced Immune Responses to All 4 Dengue Virus Serotypes Following Administration of a Single Dose of a Live Attenuated Tetravalent Dengue Vaccine to Healthy, Flavivirus-Naive Adults. J. Infect. Dis. 2015, 212(5), 702–710.
  • Martinez, A.W.; Phillips, S.T.; Whitesides, G.M.; Carrilho, E. Diagnostics for the Developing World: Microfluidic Paper-based Analytical Devices. Anal. Chem. 2010, 82(1), 3–10.
  • Ahmed, V.; Kumar, J.; Kumar, M.; Chauhan, M.B.; Dahiya, P.; Chauhan, N.S. Functionalised Iron Nanoparticle-penicillin G Conjugates: A Novel Strategy to Combat the Rapid Emergence of b-lactamase Resistance Among Infectious Micro-organism. J. Exper. Nanosci. 2015, 10(9), 718–728.
  • Galbiati, E.; Cassani, M.; Verderio, P.; Martegani, E.; Colombo, M.; Tortora, P.; Mazzucchelli, S.; Prosperi, D., Peptide-nanoparticle Ligation Mediated by Cutinase Fusion for the Development of Cancer Cell-targeted Nanoconjugates. Bioconj. Chem. 2015, 26(4), 680–689.
  • Parolo, C.; de la Escosura-Muniz, A.; Polo, E.; Grazu, V.; de la Fuente, J.M.; Merkoci, A. Design, Preparation, and Evaluation of a Fixed-Orientation Antibody/Gold-Nanoparticle Conjugate as an Immunosensing Label. ACS Appl. Mater. Interf. 2013, 5(21), 10753–10759.
  • Lee, I.H.; Lee, J.M.; Jung, Y. Controlled Protein Embedment onto Au/Ag Core-Shell Nanoparticles for Immuno-Labeling of Nanosilver Surface. ACS Appl. Mater. Interf. 2014, 6(10), 7659–7664.
  • Kato, K.; Lian, L.Y.; Barsukov, I.L.; Derrick, J.P.; Kim, H.H.; Tanaka, R.; Yoshino, A.; Shiraishi, M.; Shimada, I.; Arata, Y.; Roberts, G.C.K. Model for the Complex Between Protein-G and an Antibody FC Fragment in Solution. Structure 1995, 3(1), 79–85.
  • Abbas, A.; Brimer, A.; Slocik, J.M.; Tian, L.M.; Naik, R.R.; Singamaneni, S. Multifunctional Analytical Platform on a Paper Strip: Separation, Preconcentration, and Subattomolar Detection. Analyt. Chem. 2013, 85(8), 3977–3983.
  • He, J.; Boegli, M.; Bruzas, I.; Lum, W.; Sagle, L., Patterned Plasmonic Nanoparticle Arrays for Microfluidic and Multiplexed Biological Assays. Analyt. Chem. 2015, 87(22), 11407–11414.
  • Amorim, J.H.; Alves, R.P.; Boscardin, S.B.; Ferreira, L.C. The Dengue Virus Non-Structural 1 Protein: Risks and Benefits. Virus Res. 2014, 181, 53–60.
  • Chung, K.M.; Nybakken, G.E.; Thompson, B.S.; Engle, M.J.; Marri, A.; Fremont, D.H.; Diamond, M.S. Antibodies against West Nile Virus Nonstructural Protein NS1 Prevent Lethal Infection through FC Gamma Receptor-dependent and -independent Mechanisms. J. Virol. 2006, 80(3), 1340–1351.
  • Frens, G. Controlled Nucleation for the Regulation of the Particle Size in Monodisperse Gold Suspensions. Nat. Phys. Sci. 1973, 241, 20–22.
  • Kumar, S.; Aaron, J.; Sokolov, K. Directional Conjugation of Antibodies to Nanoparticles for Synthesis of Multiplexed Optical Contrast Agents with Both Delivery and Targeting Moieties. Nat. Protoc. 2008, 3(2), 314–320.
  • Hunter, R.J. Zeta Potential in Colloid Science: Principles and Applications. Academic Press Limited: London, 1981.
  • Ciaurriz, P.; Bravo, E.; Hamad-Schifferli, K., Effect of architecture on the activity of glucose oxidase/horseradish peroxidase/carbon nanoparticle conjugates. J. Colloid Interf. Sci. 2014, 414, 73–81.
  • Haiss, W.; Thanh, N. T.; Aveyard, J.; Fernig, D. G., Determination of Size and Concentration of Gold Nanoparticles from UV-vis Spectra. Anal. Chem. 2007, 79(11), 4215–4221.
  • Liu, X.; Atwater, M.; Wang, J.; Huo, Q. Extinction Coefficient of Gold Nanoparticles with Different Sizes and Different Capping Ligands. Colloids Surf. B-Biointerf. 2007, 58(1), 3–7.
  • Parolo, C.; Medina-Sánchez, M.; de la Escosura-Muñiz, A.; Merkoçi, A., Simple Paper Architecture Modifications Lead to Enhanced Sensitivity in Nanoparticle based Lateral Flow Immunoassays. Lab Chip 2013, 13(3), 386–390.
  • Abramoff, M.D.; Magalhães, P.J.; Ram, S.J. Image Processing with Image. J. Biophotonics International 2004, 11(7), 36–42.
  • Badu-Tawiah, A.K.; Lathwal, S.; Kaastrup, K.; Al-Sayah, M.; Christodouleas, D.C.; Smith, B.S.; Whitesides, G.M.; Sikes, H.D. Polymerization-based Signal Amplification for Paper-based Immunoassays. Lab Chip 2015, 15(3), 655–659.
  • Libraty, D.H.; Young, P.R.; Pickering, D.; Endy, T.P.; Kalayanarooj, S.; Green, S.; Vaughn, D.W.; Nisalak, A.; Ennis, F.A.; Rothman, A.L. High Circulating Levels of the Dengue Virus Nonstructural Protein NS1 Early in Dengue Illness Correlate with the Development of Dengue Hemorrhagic Fever. J. Infect. Dis. 2002, 186(8), 1165–1168.
  • Aaron, J.; Nitin, N.; Travis, K.; Kumar, S.; Collier, T.; Park, S.Y.; José-Yacamán, M.; Coghlan, L.; Follen, M.; Richards-Kortum, R.; Sokolov, K. Plasmon Resonance Coupling of Metal Nanoparticles for Molecular Imaging of Carcinogenesis in vivo. J. Biomed. Opt. 2007, 12(3), 034007.
  • Huang, X.; Jain, P.K.; El-Sayed, I.H.; El-Sayed, M.A. Gold Nanoparticles: Interesting Optical Properties and Recent Applications in Cancer Diagnostics and Therapy. Nanomedicine (Lond) 2007, 2(5), 681–693.
  • Mallidi, S.; Larson, T.; Tam, J.; Joshi, P. P.; Karpiouk, A.; Sokolov, K.; Emelianov, S., Multiwavelength Photoacoustic Imaging and Plasmon Resonance Coupling of Gold Nanoparticles for Selective Detection of Cancer. Nano Lett. 2009, 9(8), 2825–2831.
  • Sokolov, K.; Follen, M.; Aaron, J.; Pavlova, I.; Malpica, A.; Lotan, R.; Richards-Kortum, R. Real-time Vital Optical Imaging of Precancer using Anti-epidermal Growth Factor Receptor Antibodies Conjugated to Gold Nanoparticles. Cancer Res. 2003, 63(9), 1999–2004.
  • Tallury, P.; Malhotra, A.; Byrne, L.M.; Santra, S. Nanobioimaging and Sensing of Infectious Diseases. Adv. Drug Deliv. Rev. 2010, 62(4–5), 424–437.
  • Zhao, L.L.; Blackburn, J.; Brosseau, C.L. Quantitative Detection of Uric Acid by Electrochemical-Surface Enhanced Raman Spectroscopy Using a Multi layered Au/Ag Substrate. Analyt. Chem. 2015, 87(1), 441–447.
  • Aubin-Tam, M.E.; Hamad-Schifferli, K. Gold Nanoparticle Cytochrome C Complexes: The Effect of Nanoparticle Ligand Charge on Protein Structure. Langmuir 2005, 21(26), 12080–12084.
  • Park, S.; Hamad-Schifferli, K. Enhancement of In Vitro Translation by Gold Nanoparticle-DNA Conjugates. ACS Nano. 2010, 4(5), 2555–2560.
  • Tobio, M.; Sanchez, A.; Vila, A.; Soriano, I.; Evora, C.; Vila-Jato, J.L.; Alonso, M.J. The Role of PEG on the Stability in Digestive Fluids and in vivo Fate of PEG-PLA Nanoparticles Following Oral Administration. Colloids Surf. B-Biointerf. 2000, 18(3–4), 315–323.
  • Li, C.Z.; Vandenberg, K.; Prabhulkar, S.; Zhu, X.N.; Schneper, L.; Methee, K.; Rosser, C.J.; Almeide, E. Paper based Point-of-care Testing Disc for Multiplex Whole Cell Bacteria Analysis. Biosens. Bioelectron. 2011, 26(11), 4342–4348.
  • Lutz, B.R.; Trinh, P.; Ball, C.; Fu, E.; Yager, P. Two-dimensional Paper Networks: Programmable Fluidic Disconnects for Multi-step Processes in Shaped Paper. Lab Chip 2011, 11(24), 4274–4278.
  • Yen, C.-W.; de Puig, H.; Tam, J.O.; Gomez-Marquez, J.; Bosch, I.; Hamad-Schifferli, K.; Gehrke, L. Multicolored Silver Nanoparticles for Multiplexed Disease Diagnostics: Distinguishing Dengue, Yellow Fever, and Ebola Viruses. Lab Chip 2015, 15(7), 1638–1641.
  • de Puig, H.; Federici, S.; Baxamusa, S.H.; Bergese, P.; Hamad-Schifferli, K. Quantifying the Nanomachinery of the Nanoparticle-Biomolecule Interface. Small 2011, 7(17), 2477–2484.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.