Seite - 27 - in Cancer Nanotheranostics - What Have We Learnd So Far?
Bild der Seite - 27 -
Text der Seite - 27 -
Condeetal. Biofunctionalizationandsurfacechemistryof inorganicnanoparticles
Alivisatos,A. P. (1996). Semiconductor clusters, nanocrystals, andquantumdots.
Science271,933–937.doi:10.1126/science.271.5251.933
Alivisatos, A. P., Gu, W. W., and Larabell, C. (2005). Quantum dots as
cellular probes. Annu. Rev. Biomed. Eng. 7, 55–76. doi: 10.1146/annurev.
bioeng.7.060804.100432
Arruebo, M., Valladares, M., and Gonzalez-Fernandez, A. (2009). Antibody-
conjugated nanoparticles for biomedical applications. J. Nanomater.
2009:439389.doi:10.1155/2009/439389
Aslan, K., Luhrs, C. C., and Perez-Luna, V.H. (2004). Controlled and reversible
aggregationofbiotinylatedgoldnanoparticleswith streptavidin. J.Phys.Chem.
B108,15631–15639.doi:10.1021/jp036089n
Ba, H. J., Rodriguez-Fernandez, J., Stefani, F. D., and Feldmann, J. (2010).
Immobilizationofgoldnanoparticlesonlivingcellmembranesuponcontrolled
lipidbinding.NanoLett.10,3006–3012.doi:10.1021/nl101454a
Ballou, B., Lagerholm, B. C., Ernst, L. A., Bruchez, M. P., andWaggoner, A. S.
(2004). Noninvasive imaging of quantum dots in mice. Bioconjug.Chem. 15,
79–86.doi:10.1021/bc034153y
Baptista, P. (2009).Cancernanotechnology -prospects for cancerdiagnostics and
therapy.Curr.CancerTher.Rev. 5,80–88.doi:10.2174/157339409788166733
Baptista, P., Doria, G., Henriques, D., Pereira, E., and Franco, R. (2005).
Colorimetric detection of eukaryotic gene expression with DNA-
derivatized gold nanoparticles. J. Biotechnol. 119, 111–117. doi: 10.1016/
j.jbiotec.2005.02.019
Baptista, P., Pereira, E., Eaton, P.,Doria,G.,Miranda,A.,Gomes, I., et al. (2008).
Gold nanoparticles for the development of clinical diagnosis methods.Anal.
Bioanal.Chem.391,943–950.doi:10.1007/s00216-007-1768-z
Barakat, N. S. (2009). Magnetically modulated nanosystems: a unique
drug-delivery platform. Nanomedicine (Lond.) 4, 799–812. doi: 10.2217/
nnm.09.66
Barrientos, A. G., de la Fuente, J. M., Rojas, T. C., Fernandez, A., and Penades,
S. (2003). Gold glyconanoparticles: synthetic polyvalent ligands mimick-
ing glycocalyx-like surfaces as tools for glycobiological studies. Chemistry 9,
1909–1921.doi:10.1002/chem.200204544
Bartczak, D., and Kanaras, A. G. (2011). Preparation of peptide-functionalized
gold nanoparticles using one pot edc/sulfo-nhs coupling. Langmuir 27,
10119–10123.doi:10.1021/la2022177
Bastus, N. G., Sanchez-Tillo, E., Pujals, S., Farrera, C., Lopez, C., Giralt, E.,
et al. (2009). Homogeneous conjugation of peptides onto gold nanopar-
ticles enhances macrophage response. ACS Nano 3, 1335–1344. doi:
10.1021/nn8008273
Beaune,G., Tamang, S., Bernardin, A., Bayle-Guillemaud, P., Fenel, D., Schoehn,
G., et al. (2011). Luminescence of polyethylene glycol coated cdsete/zns and
inp/zns nanoparticles in the presence of copper cations. Chemphyschem 12,
2247–2254.doi:10.1002/cphc.201100266
Bellucci,S. (2009).NanoparticlesandNanodevices inBiologicalApplications.Berlin;
Heidelberg:Springer.
Berry, C. C. (2009). Progress in functionalization of magnetic nanoparticles
for applications in biomedicine. J. Phys. D Appl. Phys. 42:224003. doi:
10.1088/0022-3727/42/22/224003
Berry,C.C., de la Fuente, J.M.,Mullin,M.,Chu, S.W., andCurtis, A. S. (2007).
Nuclear localizationofHIV-1tat functionalizedgoldnanoparticles. IEEETrans.
Nanobiosci.6,262–269.doi:10.1109/TNB.2007.908973
Bertrand,N., andLeroux, J.C. (2012).The journeyof adrug-carrier in thebody:
an anatomo-physiological perspective. J. Control. Release 161, 152–163. doi:
10.1016/j.jconrel.2011.09.098
Bhadra,D.,Bhadra,S., Jain,P.,andJain,N.K.(2002).Pegnology:areviewofPEG-
ylatedsystems.Pharmazie57,5–29.
Bhang,S.H.,Won,N.,Lee,T. J., Jin,H.,Nam, J.,Park, J., et al. (2009).Hyaluronic
acid-quantumdotconjugates for invivo lymphaticvessel imaging.ACSNano3,
1389–1398.doi:10.1021/nn900138d
Boeneman, K., Deschamps, J. R., Buckhout-White, S., Prasuhn, D. E., Blanco-
Canosa, J. B., Dawson, P. E., et al. (2010). QuantumdotDNAbioconjugates:
attachment chemistry strongly influences the resulting composite architecture.
ACSNano4,7253–7266.doi:10.1021/nn1021346
Boisselier, E., Salmon, L., Ruiz, J., andAstruc, D. (2008).How to very efficiently
functionalizegoldnanoparticlesby“click”chemistry.Chem.Commun.(Camb.)
5788–5790.doi:10.1039/b812249k
Bonasio, R., Carman, C. V., Kim, E., Sage, P. T., Love, K. R., Mempel, T. R.,
et al. (2007). Specific and covalent labeling of a membrane protein with organic fluorochromes and quantum dots. Proc. Natl. Acad. Sci. U.S.A. 104,
14753–14758.doi:10.1073/pnas.0705201104
Brancolini, G., Kokh, D. B., Calzolai, L., Wade, R. C., and Corni, S. (2012).
Docking of ubiquitin to gold nanoparticles. ACS Nano 6, 9863–9878. doi:
10.1021/nn303444b
Brennan, J. L., Hatzakis, N. S., Tshikhudo, T. R., Dirvianskyte, N., Razumas, V.,
Patkar, S., et al. (2006). Bionanoconjugation via click chemistry: the creation
of functional hybrids of lipases and gold nanoparticles. Bioconjug. Chem. 17,
1373–1375.doi:10.1021/bc0601018
Brewer, S. H., Glomm, W. R., Johnson, M. C., Knag, M. K., and Franzen, S.
(2005).ProbingBSAbinding tocitrate-coatedgoldnanoparticles andsurfaces.
Langmuir21,9303–9307.doi:10.1021/la050588t
Brinkley,M. (1992). A brief survey ofmethods for preparing protein conjugates
with dyes, haptens, and cross-linking reagents.Bioconjug. Chem. 3, 2–13. doi:
10.1021/bc00013a001
Bruchez, M., Moronne, M., Gin, P., Weiss, S., and Alivisatos, A. P. (1998).
Semiconductor nanocrystals as fluorescent biological labels. Science 281,
2013–2016.doi:10.1126/science.281.5385.2013
Cai, W. B., and Chen, X. Y. (2008). Preparation of peptide-conjugated quan-
tum dots for tumor vasculature-targeted imaging.Nat. Protoc. 3, 89–96. doi:
10.1038/nprot.2007.478
Cai,W.B.,Shin,D.W.,Chen,K.,Gheysens,O.,Cao,Q.Z.,Wang,S.X.,etal.(2006).
Peptide-labelednear-infraredquantumdots for imaging tumor vasculature in
livingsubjects.NanoLett.6,669–676.doi:10.1021/nl052405t
Cai, X. J., Li, X. H., Liu, Y. W., Wu, G. N., Zhao, Y. C., Chen, F., et al.
(2012). Galactose decorated acid-labile nanoparticles encapsulating quantum
dots for enhanced cellular uptake and subcellular localization.Pharm.Res.29,
2167–2179.doi:10.1007/s11095-012-0745-1
Cao,Y.,Jin,R.,andMirkin,C.A.(2001).DNA-modifiedcore-shellAg/Aunanopar-
ticles. J.Am.Chem.Soc.123,7961–7962.doi:10.1021/ja011342n
Cao, Y.C., Jin, R., andMirkin, C.A. (2002).NanoparticleswithRaman spectro-
scopic fingerprints forDNAandRNAdetection. Science 297, 1536–1540. doi:
10.1126/science.297.5586.1536
Cao, Y. C., Jin, R., Thaxton, C. S., and Mirkin, C. A. (2005). A two-color-
change, nanoparticle-basedmethod forDNAdetection.Talanta 67, 449–455.
doi:10.1016/j.talanta.2005.06.063
Cardenas,M., Barauskas, J., Schillen,K., Brennan, J. L., Brust,M., andNylander,
T. (2006). Thiol-specific and nonspecific interactions betweenDNAand gold
nanoparticles.Langmuir22,3294–3299.doi:10.1021/la0530438
Chang, J., Paillard, A., Passirani, C.,Morille,M., Benoit, J. P., Betbeder, D., et al.
(2012).TransferrinadsorptionontoPLGAnanoparticles governs their interac-
tionwithbiologicalsystemsfrombloodcirculationtobraincancercells.Pharm.
Res.29,1495–1505.doi:10.1007/s11095-011-0624-1
Chen, F. Q., and Gerion, D. (2004). Fluorescent CdSe/ZnS nanocrystal-peptide
conjugates for long-term,nontoxic imagingandnucleartargetinginlivingcells.
NanoLett.4,1827–1832.doi:10.1021/nl049170q
Chen, Y. F., Ji, T. H., and Rosenzweig, Z. (2003). Synthesis of glyconanospheres
containing luminescent CdSe-ZnS quantumdots.Nano Lett. 3, 581–584. doi:
10.1021/nl034086g
Chithrani, D. B. (2010). Intracellular uptake, transport, and processing
of gold nanostructures. Mol. Membr. Biol. 27, 299–311. doi: 10.3109/
09687688.2010.507787
Cho, I. H., Paek, E. H., Lee, H., Kang, J. Y., Kim, T. S., and Paek, S. H. (2007).
Site-directedbiotinylationofantibodies forcontrolled immobilizationonsolid
surfaces.Anal.Biochem.365,14–23.doi:10.1016/j.ab.2007.02.028
Choi, Y., Kim,H. P., Hong, S.M., Ryu, J. Y., Han, S. J., and Song, R. (2009). In
situvisualizationof gene expressionusingpolymer-coatedquantum-dot-DNA
conjugates.Small5,2085–2091.doi:10.1002/smll.200900116
Conde, J., Ambrosone,A., Sanz,V.,Hernandez, Y.,Marchesano,V., Tian, F., et al.
(2012a).Design ofmultifunctional gold nanoparticles for in vitro and in vivo
genesilencing.ACSNano6,8316–8324.doi:10.1021/nn3030223
Conde, J., Bao, C., Cui, D., Baptista, P. V., and Tian, F. (2014a). Antibody–drug
gold nanoantennaswithRaman spectroscopic fingerprints for in vivo tumour
theranostics. J.Control.Release183,87–93.doi:10.1016/j.jconrel.2014.03.045
Conde, J., Baptista, P.V.,Hernandez,Y., Sanz,V., andde laFuente, J.M. (2012b).
ModificationofplasmidDNAtopologyby “histone-mimetic” goldnanoparti-
cles.Nanomedicine(Lond.)7,1657–1666.doi:10.2217/nnm.12.21
Conde, J.,Doria,G., andBaptista, P. (2012c).Noblemetal nanoparticles applica-
tions incancer. J.DrugDeliv.2012:751075.doi:10.1155/2012/751075
Frontiers inChemistry | ChemicalEngineering July2014 |Volume2 |Article48 | 27
Cancer Nanotheranostics
What Have We Learnd So Far?
- Titel
- Cancer Nanotheranostics
- Untertitel
- What Have We Learnd So Far?
- Autoren
- JoĂŁo Conde
- Pedro Viana Baptista
- JesĂşs M. De La Fuente
- Furong Tian
- Herausgeber
- Frontiers in Chemistry
- Datum
- 2016
- Sprache
- englisch
- Lizenz
- CC BY 4.0
- ISBN
- 978-2-88919-776-7
- Abmessungen
- 21.0 x 27.7 cm
- Seiten
- 132
- Schlagwörter
- Nanomedicine, Nanoparticles, nanomaterials, Cancer, heranostics, Immunotherapy, bioimaging, Drug delivery, Gene Therapy, Phototherapy
- Kategorien
- Naturwissenschaften Chemie