248
Views
1
CrossRef citations to date
0
Altmetric
Research Article

Submicron Polymer Particles Containing Fluorescent Semiconductor Nanocrystals Cdse/Zns for Bioassays

, , , , , , , & show all
Pages 195-209 | Published online: 21 Jun 2011

Bibliography

  • Kawaguchi H : Functional polymer microspheres.Progress Polymer Sci.25(8), 1171–1210 (2000).
  • Nakamura N , HashimotoK, MatsunagaT: Immunoassay method for the determination of immunoglobulin G using bacterial magnetic particles.Anal. Chem.63(3), 268–272 (1991).
  • Vener TI , TurchinskyMF, KnorreVDet al.: A novel approach to nonradioactive hybridization assay of nucleic acids using stained latex particles.Anal. Biochem.198(2), 308–311 (1991).
  • Katz LC , IaroviciDM: Green fluorescent latex microspheres: a new retrograde tracer.NeuroScience34(2), 511–520 (1990).
  • Medintz IL , UyedaHT, GoldmanER, ManttoussiH: Quantum dot bioconjugates for imaging, labeling and sensing.Nat. Mater.4(6), 435–446 (2005).
  • Alivisatos P : The use of nanocrystals in biological detection.Nat. Biotechnol.22, 47–52 (2004).
  • Arshady R : Microspheres for biomedical applications: preparation of reactive and labelled microspheres.Biomaterials14(1), 5–15 (1993).
  • Sukhorukov GB , RogachAL, GarstkaMet al.: Multifunctionalized polymer microcapsules: novel tools for biological and pharmacological applications.Small3(6), 944–955 (2007).
  • Bruchez M , MoronneM, GinP, WeissS, AlivisatosAP: Semiconductor nanocrystals as fluorescent biological labels.Science281, 2013–2015 (1998).
  • Chan WC , NieS: Quantum dot bioconjugates for ultrasensitive nonisotopic detection.Science281, 2016–2018 (1998).
  • Uyeda HT , MedintzIL, JaiswalJKet al.: Synthesis of compact multidentate ligands to prepare stable hydrophilic quantum dot fluorophores.J. Am. Chem. Soc.127, 3870–3878 (2005).
  • Nida DL , NitinN, YuWW, ColvinVL, Richards-KortumR: Photostability of quantum dots with amphiphilic polymer-based passivation strategies.Nanotechnology19, 1–6 (2008).
  • Chen Y , RosenzweigZ: Luminescent CdSe quantum dot doped stabilized micelles.Nano. Lett.2, 1299–1302 (2002).
  • Kelf TA , SreenivasanVK, SunJ, KimEJ, GoldysEM, ZvyaginAV: Non-specific cellular uptake of surface-functionalized quantum dots.Nanotechnology21, E285105 (2010).
  • Mattoussi H , MauroJM, GoldmanERet al.: Self-assembly of CdSe–ZnS quantum dot bioconjugates using an engineered recombinant protein.J. Am. Chem. Soc.122, 12142–12150 (2000).
  • Zhou M , NakataniE, GronenbergLSet al.: Peptide-labeled quantum dots for imaging GPCRs in whole cells and as single molecules.Bioconjugate Chem.18, 323–332 (2007).
  • Stsiapura V , SukhanovaA, ArtemyevMet al.: Biocompatible functionalized nanocrystal-tagged fluorescent polymer beads: synthesis, physicochemical characterization, and immunolabeling application.Anal. Biochem.334(2), 257–265 (2004).
  • Colvin M , SmolkaA, ChangM, RembaumA: Microspheres: Medical and Biological Applications. Rembaum A, Tokes Z (Eds). CRC Press, Boca Raton, FL, USA (1988).
  • Kuang M , WangD, BaoH, GaoM, MohwaldH, JiangM: Nanocrystals to hydrogel spheres.Adv. Mater.17, 267–270 (2005).
  • Rogach A , SushaA, CarusoFet al.: Nano- and microengineering: three-dimensional colloidal photonic crystals prepared from submicrometer-sized polystyrene latex spheres pre-coated with luminescent polyelectrolyte/nanocrystal shells.Adv. Mater.12, 333–337 (2000).
  • Wang DY , RogachAL, CarusoF: Semiconductor quantum dot-labeled microsphere bioconjugates prepared by stepwise self-assembly.Nano. Lett.2(8), 857–861 (2002).
  • Radtchenko IL , SukhorukovGB, MohwaldH: Incorporation of macromolecules into polyelectrolyte micro- and nanocapsules via surface controlled precipitation on colloidal particles.Colloid Surf. A. Physicochem. Eng. Aspects202, 127–133 (2002).
  • Radtchenko IL , GiersigM, SukhorukovGB: Inorganic particle synthesis in confined micron-sized polyelectrolyte capsules.Langmuir18, 8204–8208 (2002).
  • Sherman RL , FordWT: Semiconductor nanoparticle/polystyrene latex composite materials.Langmuir21, 5218–5222 (2005).
  • Hirai T , SaitoT, KomasawaI: Recovery and immobilization of metal sulfide nanoparticles from reverse micellar system onto thiol-modified polystyrene particles.J. Phys. Chem. B.104, 11639–11643 (2000).
  • Yang X , ZhangY: Encapsulation of quantum nanodots in polystyrene and silica micro-/nanoparticles.Langmuir20, 6071–6073 (2004).
  • Joumaa N , LansalotM, TheretzAet al.: Synthesis of quantum dot-tagged submicrometer polystyrene particles by miniemulsion polymerization.Langmuir22, 1810–1816 (2006).
  • Hirai T , WatanabeT, KomasawaI: Preparation of semiconductor nanoparticle-polymer composites by direct reverse micelle polymerization using polymerizable surfactants.J. Phys. Chem. B.104, 8962–8969 (2000).
  • Zhang H , CuiZ, WangYet al.: From water-soluble CdTe nanocrystals to fluorescent nanocrystal–polymer transparent composites using polymerizable surfactant.Adv. Mater.15, 777–780 (2003).
  • Han M , GaoX, SuJZ, NieS: Quantum-dot-tagged microbeads for multiplexed optical coding of biomolecules.Nat. Biotechnol.19, 631–635 (2001).
  • Margel S , WieselE: Acrolein polymerization: monodisperse, homo, and hybrido microspheres, synthesis, mechanism, and reactions.J. Polymer Sci. Polym. Chem. Ed.22, 145–158 (1984).
  • Rembaum A , ChangM, RichardsG, LiM: Structure and immunological properties of polyacrolein formed by means ionizing radiation and base catalysis.J. Polymer Sci. Polym. Chem. Ed.22, 609–617 (1984).
  • Lukin YV , GeneralovaAN, TyrtyshTV, EreminSA: Detection of 2,4- dichlorophenoxyacetic acid by noninstrumental latex immunoassay. In: Immunochemical Technology for Environmental Applications (Chapter 8). Aga DS, Thurman EM (Eds). ACS Symposium Series 657, American Chemistry Society, Washington, DC, USA, 97–105 (1997).
  • Bangs LB : Immunological applications of microspheres.Pure Appl. Chem.68, 1873–1877 (1996).
  • Bird RE , HardmanKD, JacobsonJWet al.: Single-chain antigen-binding proteins.Science242, 423–426 (1988).
  • Deyev SM , LebedenkoEN: Multivalency: the hallmark of antibodies used for optimization of tumor targeting by design.BioEssays30, 904–918 (2008).
  • Wu AM , SenterPD: Arming antibody: prospects and challenges for immunoconjugates.Nat. Biotechnol.23(9), 1137–1146 (2005).
  • Nikitin MP , ZdobnovaTA, LukashSV, StremovskiyOA, DeyevSM: Protein-assisted self-assembly of multifunctional nanoparticles.Proc. Natl Acad. Sci. USA107, 5827–5832 (2010).
  • Sukhanova A , VenteoL, DevyJet al.: Highly stable fluorescent nanocrystals as a novel class of labels for immunohistochemical analysis of paraffin embedded tissue section.Lab. Invest.82, 1259–1261 (2002).
  • Knappik A , PlückthunA: Engineered turns of a recombinant antibody improve its in vivo folding.Protein Eng.8(1), 81–89 (1995).
  • Slomkowski S : Polyacrolein containing microspheres: synthesis, properties and possible medical application.Prog. Polym. Sci.23, 815–878 (1998).
  • Ugelstad J , MorkPC, KaggerudKH, EllingsenT, BergeA: Swelling of oligomerpolymer particles. New methods of preparation.Adv. Colloid Interface Sci.13, 101–140 (1980).
  • Galian RE , GardiaM: The use of quantum dots in organic chemistry.Trends Anal. Chem.28, 279–291 (2009).
  • Cordero SR , CarsonPJ, EstabrookRA, StrouseGF, BurattoSK: Photo-activated luminescence of CdSe quantum dot monolayers modified with hexadecylamine.J. Phys. Chem. B.104, 12137–12140 (2000).
  • Patra MK , ManothM, SinghVKet al.: Synthesis of stable dispersion of quantum dots in aqueous medium showing visible emission from bluish green to yellow.J. Luminescence129, 320–324 (2008).
  • Li QA , ChenXJ, XuYet al.: Photoluminescence properties of the CdSe quantum dots accompanied with rotation of the defocused wide-field fluorescence images.J. Phys. Chem. C.114, 13427–13432 (2010).
  • Guo W , LiJJ, WangYA, PengX: Luminescent CdSe/CdS core/shell nanocrystals in dendron boxes: superior chemical, photochemical and thermal stability-modified with dendron ligands.J. Am. Chem. Soc.125, 3901–3905 (2003).
  • Lukin YV , PavlovaIS, GeneralovaAN, ZubovVP, ZhorovOV, MartsevSP: Immunoreagent based on polymer dispersions for immunochemical assays.J. Mol. Recog.11, 185–187 (1998).
  • Cherkasov VR , DementjevaIG, GeneralovaANet al.: Fast immunomagnetometric assay for dangerous pathogen identification.Int. J. Infect. Dis.10, S250 (2006).
  • Margel S : Polyaldehyde microspheres as probes for cell membranes.Ind. Eng. Chem. Prod. Res. Dev. Am. Chem. Soc.21(3), 343–348 (1982).

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.