Quantum dots as a platform for nanoparticle drug delivery vehicle design.
暂无分享,去创建一个
Pavel Zrazhevskiy | Xiaohu Gao | Xiaohu Gao | Vaishali Bagalkot | C. Probst | P. Zrazhevskiy | Vaishali Bagalkot | Christine E Probst
[1] Rui Hu,et al. A pilot study in non-human primates shows no adverse response to intravenous injection of quantum dots. , 2012, Nature nanotechnology.
[2] Seung-Man Yang,et al. Nanowire-based single-cell endoscopy. , 2012, Nature nanotechnology.
[3] Robert Langer,et al. Nanoparticle delivery of cancer drugs. , 2012, Annual review of medicine.
[4] S. Gambhir,et al. A novel clinically translatable fluorescent nanoparticle for targeted molecular imaging of tumors in living subjects. , 2012, Nano letters.
[5] Robert Langer,et al. Engineering of targeted nanoparticles for cancer therapy using internalizing aptamers isolated by cell-uptake selection. , 2012, ACS nano.
[6] George Coukos,et al. Cancer immunotherapy comes of age , 2011, Nature.
[7] S. Feng,et al. Multifunctional silica nanoparticles for targeted delivery of hydrophobic imaging and therapeutic agents. , 2011, International journal of pharmaceutics.
[8] Duyang Gao,et al. A fast synthesis of near-infrared emitting CdTe/CdSe quantum dots with small hydrodynamic diameter for in vivo imaging probes. , 2011, Nanoscale.
[9] Xiaohu Gao,et al. siRNA-aptamer chimeras on nanoparticles: preserving targeting functionality for effective gene silencing. , 2011, ACS nano.
[10] A. Riedinger,et al. A general synthetic approach for obtaining cationic and anionic inorganic nanoparticles via encapsulation in amphiphilic copolymers. , 2011, Small.
[11] L. J. Lee,et al. Uptake and intracellular fate of multifunctional nanoparticles: a comparison between lipoplexes and polyplexes via quantum dot mediated Förster resonance energy transfer. , 2011, Molecular pharmaceutics.
[12] Young Keun Kim,et al. A multifunctional core-shell nanoparticle for dendritic cell-based cancer immunotherapy. , 2011, Nature nanotechnology.
[13] C. Drake,et al. Ipilimumab: An Anti-CTLA-4 Antibody for Metastatic Melanoma , 2011, Clinical Cancer Research.
[14] K. Ahn,et al. Simultaneous in vivo tracking of dendritic cells and priming of an antigen-specific immune response. , 2011, Biomaterials.
[15] Kyung-Han Lee,et al. 99mTc-Hydrazinonicotinamide Epidermal Growth Factor–Polyethylene Glycol–Quantum Dot Imaging Allows Quantification of Breast Cancer Epidermal Growth Factor Receptor Expression and Monitors Receptor Downregulation in Response to Cetuximab Therapy , 2011, The Journal of Nuclear Medicine.
[16] Daisuke Kokuryo,et al. Chemical nature and structure of organic coating of quantum dots is crucial for their application in imaging diagnostics , 2011, International journal of nanomedicine.
[17] J. Gore,et al. Multimodal imaging of dendritic cells using a novel hybrid magneto-optical nanoprobe. , 2011, Nanomedicine : nanotechnology, biology, and medicine.
[18] T. Minko,et al. Tumor targeted quantum dot-mucin 1 aptamer-doxorubicin conjugate for imaging and treatment of cancer. , 2011, Journal of controlled release : official journal of the Controlled Release Society.
[19] A. Jemal,et al. Cancer statistics, 2011 , 2011, CA: a cancer journal for clinicians.
[20] Duane E. Prasuhn,et al. Reactive semiconductor nanocrystals for chemoselective biolabeling and multiplexed analysis. , 2011, ACS nano.
[21] Kunihito Koumoto,et al. Magnetoresponsive on-demand release of hybrid liposomes formed from Fe3 O4 nanoparticles and thermosensitive block copolymers. , 2011, Small.
[22] Igor L. Medintz,et al. Spatiotemporal multicolor labeling of individual cells using peptide-functionalized quantum dots and mixed delivery techniques. , 2011, Journal of the American Chemical Society.
[23] Tingting Xu,et al. Water-dispersed near-infrared-emitting quantum dots of ultrasmall sizes for in vitro and in vivo imaging. , 2011, Angewandte Chemie.
[24] D. Maysinger,et al. Short ligands affect modes of QD uptake and elimination in human cells. , 2011, ACS nano.
[25] Igor L. Medintz,et al. Multifunctional compact zwitterionic ligands for preparing robust biocompatible semiconductor quantum dots and gold nanoparticles. , 2011, Journal of the American Chemical Society.
[26] Zhen Gu,et al. Enhanced real-time monitoring of adeno-associated virus trafficking by virus-quantum dot conjugates. , 2011, ACS nano.
[27] Liang-Nian Ji,et al. Targeted cellular uptake and siRNA silencing by quantum-dot nanoparticles coated with β-cyclodextrin coupled to amino acids. , 2011, Chemistry.
[28] Leone Spiccia,et al. Nanomaterials: Applications in Cancer Imaging and Therapy , 2011, Advanced materials.
[29] D. Hanahan,et al. Hallmarks of Cancer: The Next Generation , 2011, Cell.
[30] Dai Fukumura,et al. Multistage nanoparticle delivery system for deep penetration into tumor tissue , 2011, Proceedings of the National Academy of Sciences.
[31] Shaker A Mousa,et al. Emerging nanomedicines for early cancer detection and improved treatment: current perspective and future promise. , 2010, Pharmacology & therapeutics.
[32] R. Jain,et al. Delivering nanomedicine to solid tumors , 2010, Nature Reviews Clinical Oncology.
[33] C. Röcker,et al. Endo- and exocytosis of zwitterionic quantum dot nanoparticles by live HeLa cells. , 2010, ACS nano.
[34] Xiaohu Gao,et al. Designing multifunctional quantum dots for bioimaging, detection, and drug delivery. , 2010, Chemical Society reviews.
[35] Dai Fukumura,et al. A nanoparticle size series for in vivo fluorescence imaging. , 2010, Angewandte Chemie.
[36] Jin Xie,et al. Nanoparticle-based theranostic agents. , 2010, Advanced drug delivery reviews.
[37] Igor L. Medintz,et al. Quantum-dot/dopamine bioconjugates function as redox coupled assemblies for in vitro and intracellular pH sensing. , 2010, Nature materials.
[38] T. Jovin,et al. Targeted cellular delivery of quantum dots loaded on and in biotinylated liposomes. , 2010, Bioconjugate chemistry.
[39] Igor L. Medintz,et al. Delivering quantum dot-peptide bioconjugates to the cellular cytosol: escaping from the endolysosomal system. , 2010, Integrative biology : quantitative biosciences from nano to macro.
[40] Fei Liu,et al. Intercellular transportation of quantum dots mediated by membrane nanotubes. , 2010, ACS nano.
[41] W. Hur,et al. Bioimaging for targeted delivery of hyaluronic Acid derivatives to the livers in cirrhotic mice using quantum dots. , 2010, ACS nano.
[42] Anthony K. L. Leung,et al. Effect of Nanoparticle Conjugation on Gene Silencing by RNA Interference , 2010, Journal of the American Chemical Society.
[43] S. Filetti,et al. Gemcitabine-loaded PEGylated unilamellar liposomes vs GEMZAR: biodistribution, pharmacokinetic features and in vivo antitumor activity. , 2010, Journal of controlled release : official journal of the Controlled Release Society.
[44] Yvonne Bordon. Therapeutic cancer vaccine approved , 2010, Nature reviews. Immunology.
[45] Yvonne Bordon. T cell responses: PU.1 in time saves nine , 2010, Nature reviews. Immunology.
[46] Adela C. Bonoiu,et al. Gold nanorod delivery of an ssRNA immune activator inhibits pandemic H1N1 influenza viral replication , 2010, Proceedings of the National Academy of Sciences.
[47] Cui Tang,et al. Effects of particle size and surface charge on cellular uptake and biodistribution of polymeric nanoparticles. , 2010, Biomaterials.
[48] Iseult Lynch,et al. What the cell "sees" in bionanoscience. , 2010, Journal of the American Chemical Society.
[49] Shoji Tajima,et al. Evaluation of pH-responsive liposomes containing amino acid-based zwitterionic lipids for improving intracellular drug delivery in vitro and in vivo. , 2010, Journal of controlled release : official journal of the Controlled Release Society.
[50] Tae Gwan Park,et al. Intracellular trafficking and unpacking of siRNA/quantum dot-PEI complexes modified with and without cell penetrating peptide: confocal and flow cytometric FRET analysis. , 2010, Bioconjugate chemistry.
[51] Duane E. Prasuhn,et al. Combining chemoselective ligation with polyhistidine-driven self-assembly for the modular display of biomolecules on quantum dots. , 2010, ACS nano.
[52] Kathryn A. Whitehead,et al. Lipid-like materials for low-dose, in vivo gene silencing , 2010, Proceedings of the National Academy of Sciences.
[53] H. Tseng,et al. Selective inhibition of human brain tumor cells through multifunctional quantum-dot-based siRNA delivery. , 2010, Angewandte Chemie.
[54] Susan Newbigging,et al. In vivo quantum-dot toxicity assessment. , 2010, Small.
[55] Dai Fukumura,et al. InAs(ZnCdS) quantum dots optimized for biological imaging in the near-infrared. , 2009, Journal of the American Chemical Society.
[56] R. Jain,et al. Compact biocompatible quantum dots via RAFT-mediated synthesis of imidazole-based random copolymer ligand. , 2009, Journal of the American Chemical Society.
[57] Andrey L Rogach,et al. Drug nanocarriers labeled with near-infrared-emitting quantum dots (quantoplexes): imaging fast dynamics of distribution in living animals. , 2009, Molecular therapy : the journal of the American Society of Gene Therapy.
[58] Marilena Loizidou,et al. Liposomes and nanoparticles: nanosized vehicles for drug delivery in cancer. , 2009, Trends in pharmacological sciences.
[59] Igor L. Medintz,et al. Quantum dots: a powerful tool for understanding the intricacies of nanoparticle-mediated drug delivery , 2009, Expert opinion on drug delivery.
[60] Xiaohu Gao,et al. Plasmonic fluorescent quantum dots. , 2009, Nature nanotechnology.
[61] T. Park,et al. siRNA delivery systems for cancer treatment. , 2009, Advanced drug delivery reviews.
[62] A. Anas,et al. Clathrin-mediated endocytosis of quantum dot-peptide conjugates in living cells. , 2009, ACS nano.
[63] Sanjiv S Gambhir,et al. Cys-diabody quantum dot conjugates (immunoQdots) for cancer marker detection. , 2009, Bioconjugate chemistry.
[64] Nancy A Monteiro-Riviere,et al. Mechanisms of quantum dot nanoparticle cellular uptake. , 2009, Toxicological sciences : an official journal of the Society of Toxicology.
[65] W. Law,et al. Aqueous-phase synthesis of highly luminescent CdTe/ZnTe core/shell quantum dots optimized for targeted bioimaging. , 2009, Small.
[66] Hak Soo Choi,et al. Tissue- and organ-selective biodistribution of NIR fluorescent quantum dots. , 2009, Nano letters.
[67] Ning Wang,et al. Mechanochemical delivery and dynamic tracking of fluorescent quantum dots in the cytoplasm and nucleus of living cells. , 2009, Nano letters.
[68] C. Tzeng,et al. Microfluidic assisted synthesis of multi-functional polycaprolactone microcapsules: incorporation of CdTe quantum dots, Fe3O4 superparamagnetic nanoparticles and tamoxifen anticancer drugs. , 2009, Lab on a chip.
[69] Kostas Kostarelos,et al. Tumor targeting of functionalized quantum dot-liposome hybrids by intravenous administration. , 2009, Molecular pharmaceutics.
[70] Sangjin Park,et al. Carbon nanosyringe array as a platform for intracellular delivery. , 2009, Nano letters.
[71] Igor L. Medintz,et al. Polyethylene glycol-based bidentate ligands to enhance quantum dot and gold nanoparticle stability in biological media , 2009, Nature Protocols.
[72] Xiaohu Gao,et al. Encapsulation of Single Quantum Dots with Mesoporous Silica , 2009, Annals of Biomedical Engineering.
[73] James F Rusling,et al. Targeted killing of cancer cells in vivo and in vitro with EGF-directed carbon nanotube-based drug delivery. , 2009, ACS nano.
[74] Kaushal Rege,et al. Cancer-cell-phenotype-dependent differential intracellular trafficking of unconjugated quantum dots. , 2009, Small.
[75] B. Goldman,et al. The cancer vaccine roller coaster , 2009, Nature Biotechnology.
[76] Neus G Bastús,et al. Peptides conjugated to gold nanoparticles induce macrophage activation. , 2009, Molecular immunology.
[77] Igor L. Medintz,et al. Delivering quantum dots into cells: strategies, progress and remaining issues , 2009, Analytical and bioanalytical chemistry.
[78] Daniel G. Anderson,et al. Knocking down barriers: advances in siRNA delivery , 2009, Nature Reviews Drug Discovery.
[79] V. Josserand,et al. Effect of poly(ethylene glycol) length on the in vivo behavior of coated quantum dots. , 2009, Langmuir : the ACS journal of surfaces and colloids.
[80] Igor L. Medintz,et al. Quantum dot-based resonance energy transfer and its growing application in biology. , 2009, Physical chemistry chemical physics : PCCP.
[81] Christine Jérôme,et al. Paclitaxel-loaded PEGylated PLGA-based nanoparticles: in vitro and in vivo evaluation. , 2009, Journal of controlled release : official journal of the Controlled Release Society.
[82] Edward Chu,et al. A history of cancer chemotherapy. , 2008, Cancer research.
[83] Xinguo Jiang,et al. Quantum dots bearing lectin-functionalized nanoparticles as a platform for in vivo brain imaging. , 2008, Bioconjugate chemistry.
[84] T. Deerinck,et al. Quantum Dots for Tracking Dendritic Cells and Priming an Immune Response In Vitro and In Vivo , 2008, PloS one.
[85] Yuliang Zhang,et al. Transmembrane delivery of the cell-penetrating peptide conjugated semiconductor quantum dots. , 2008, Langmuir : the ACS journal of surfaces and colloids.
[86] Betty Y. S. Kim,et al. Biodegradable quantum dot nanocomposites enable live cell labeling and imaging of cytoplasmic targets. , 2008, Nano letters.
[87] Kenneth A. Dawson,et al. Nanoparticle size and surface properties determine the protein corona with possible implications for biological impacts , 2008, Proceedings of the National Academy of Sciences.
[88] Stefan Diez,et al. Quantum-dot-assisted characterization of microtubule rotations during cargo transport. , 2008, Nature nanotechnology.
[89] Kostas Kostarelos,et al. Functionalized-quantum-dot-liposome hybrids as multimodal nanoparticles for cancer. , 2008, Small.
[90] Thomas Pons,et al. Fluorine-18-labeled phospholipid quantum dot micelles for in vivo multimodal imaging from whole body to cellular scales. , 2008, Bioconjugate chemistry.
[91] Shuming Nie,et al. Minimizing the hydrodynamic size of quantum dots with multifunctional multidentate polymer ligands. , 2008, Journal of the American Chemical Society.
[92] Kevin C Weng,et al. Targeted tumor cell internalization and imaging of multifunctional quantum dot-conjugated immunoliposomes in vitro and in vivo. , 2008, Nano letters.
[93] Shuming Nie,et al. Proton-sponge coated quantum dots for siRNA delivery and intracellular imaging. , 2008, Journal of the American Chemical Society.
[94] Cheuk Y. Tang,et al. Improved biocompatibility and pharmacokinetics of silica nanoparticles by means of a lipid coating: a multimodality investigation. , 2008, Nano letters.
[95] Leaf Huang,et al. Pharmacokinetics and biodistribution of nanoparticles. , 2008, Molecular pharmaceutics.
[96] Xiaohu Gao,et al. Quantum dot-amphipol nanocomplex for intracellular delivery and real-time imaging of siRNA. , 2008, ACS nano.
[97] R. Weissleder,et al. Imaging in the era of molecular oncology , 2008, Nature.
[98] Jinming Gao,et al. Theranostic nanomedicine for cancer. , 2008, Nanomedicine.
[99] Kostas Kostarelos,et al. Lipid-quantum dot bilayer vesicles enhance tumor cell uptake and retention in vitro and in vivo. , 2008, ACS nano.
[100] Brad A. Kairdolf,et al. Minimizing nonspecific cellular binding of quantum dots with hydroxyl-derivatized surface coatings. , 2008, Analytical chemistry.
[101] Warren C W Chan,et al. Nanoparticle-mediated cellular response is size-dependent. , 2008, Nature nanotechnology.
[102] Xiaohu Gao,et al. Emerging application of quantum dots for drug delivery and therapy , 2008 .
[103] M. Caligiuri,et al. Bortezomib induces DNA hypomethylation and silenced gene transcription by interfering with Sp1/NF-kappaB-dependent DNA methyltransferase activity in acute myeloid leukemia. , 2008, Blood.
[104] C. Russell Middaugh,et al. Nanotechnology in vaccine delivery☆ , 2008, Advanced Drug Delivery Reviews.
[105] K. Leong,et al. Quantitative comparison of intracellular unpacking kinetics of polyplexes by a model constructed from quantum dot-FRET. , 2008, Molecular therapy : the journal of the American Society of Gene Therapy.
[106] David L. Schwartz,et al. Imaging Epidermal Growth Factor Receptor Expression In vivo: Pharmacokinetic and Biodistribution Characterization of a Bioconjugated Quantum Dot Nanoprobe , 2008, Clinical Cancer Research.
[107] Moungi G Bawendi,et al. Compact biocompatible quantum dots functionalized for cellular imaging. , 2008, Journal of the American Chemical Society.
[108] A. Marcus,et al. Imaging and tracking of tat peptide-conjugated quantum dots in living cells: new insights into nanoparticle uptake, intracellular transport, and vesicle shedding. , 2007, Journal of the American Chemical Society.
[109] M. Bawendi,et al. Renal clearance of quantum dots , 2007, Nature Biotechnology.
[110] Robert Langer,et al. Quantum dot-aptamer conjugates for synchronous cancer imaging, therapy, and sensing of drug delivery based on bi-fluorescence resonance energy transfer. , 2007, Nano letters.
[111] B. Cui,et al. One at a time, live tracking of NGF axonal transport using quantum dots , 2007, Proceedings of the National Academy of Sciences.
[112] Erkki Ruoslahti,et al. Targeted quantum dot conjugates for siRNA delivery. , 2007, Bioconjugate chemistry.
[113] Tristan Barrett,et al. Simultaneous multicolor imaging of five different lymphatic basins using quantum dots. , 2007, Nano letters.
[114] Shuming Nie,et al. Bioconjugated quantum dots for multiplexed and quantitative immunohistochemistry , 2007, Nature Protocols.
[115] Anna Moore,et al. In vivo imaging of siRNA delivery and silencing in tumors , 2007, Nature Medicine.
[116] Shan Jiang,et al. Quantum-dot based nanoparticles for targeted silencing of HER2/neu gene via RNA interference. , 2007, Biomaterials.
[117] Shuming Nie,et al. Cell-penetrating quantum dots based on multivalent and endosome-disrupting surface coatings. , 2007, Journal of the American Chemical Society.
[118] Noriaki Ohuchi,et al. In vivo real-time tracking of single quantum dots conjugated with monoclonal anti-HER2 antibody in tumors of mice. , 2007, Cancer research.
[119] Steffen Hackbarth,et al. Long-term exposure to CdTe quantum dots causes functional impairments in live cells. , 2007, Langmuir : the ACS journal of surfaces and colloids.
[120] R. Steinman,et al. Differential Antigen Processing by Dendritic Cell Subsets in Vivo , 2007, Science.
[121] K. Leong,et al. Evaluating the intracellular stability and unpacking of DNA nanocomplexes by quantum dots-FRET. , 2006, Journal of controlled release : official journal of the Controlled Release Society.
[122] F. Dosio,et al. Stealth liposomes: review of the basic science, rationale, and clinical applications, existing and potential , 2006, International journal of nanomedicine.
[123] Warren C. W. Chan,et al. Quantum Dots in Biological and Biomedical Research: Recent Progress and Present Challenges , 2006 .
[124] Igor L. Medintz,et al. Proteolytic activity monitored by fluorescence resonance energy transfer through quantum-dot–peptide conjugates , 2006, Nature materials.
[125] Igor L. Medintz,et al. Self-assembled quantum dot-peptide bioconjugates for selective intracellular delivery. , 2006, Bioconjugate chemistry.
[126] Yohanns Bellaiche,et al. Tracking individual kinesin motors in living cells using single quantum-dot imaging. , 2006, Nano letters.
[127] Sanjiv S Gambhir,et al. Peptide-labeled near-infrared quantum dots for imaging tumor vasculature in living subjects. , 2006, Nano letters.
[128] Arezou A Ghazani,et al. Determining the size and shape dependence of gold nanoparticle uptake into mammalian cells. , 2006, Nano letters.
[129] Hans C. Fischer,et al. Design and characterization of lysine cross-linked mercapto-acid biocompatible quantum dots , 2006 .
[130] Thomas J Deerinck,et al. Correlated light and electron microscopic imaging of multiple endogenous proteins using Quantum dots , 2005, Nature Methods.
[131] Igor L. Medintz,et al. Quantum dot bioconjugates for imaging, labelling and sensing , 2005, Nature materials.
[132] S. Nie,et al. In vivo cancer targeting and imaging with semiconductor quantum dots , 2004, Nature Biotechnology.
[133] Sangeeta N. Bhatia,et al. Intracellular Delivery of Quantum Dots for Live Cell Labeling and Organelle Tracking , 2004 .
[134] Daniele Gerion,et al. Fluorescent CdSe/ZnS nanocrystal-peptide conjugates for long-term, nontoxic imaging and , 2004 .
[135] Joachim O. Rädler,et al. Hydrophobic Nanocrystals Coated with an Amphiphilic Polymer Shell: A General Route to Water Soluble Nanocrystals , 2004 .
[136] C. Leaf,et al. Why we're losing the war on cancer (and how to win it). , 2004, Fortune.
[137] J. Post,et al. Quantum dot ligands provide new insights into erbB/HER receptor–mediated signal transduction , 2004, Nature Biotechnology.
[138] Graham Dellaire,et al. Application of Quantum Dots as Probes for Correlative Fluorescence, Conventional, and Energy-filtered Transmission Electron Microscopy , 2004, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[139] Igor L. Medintz,et al. Fluorescence resonance energy transfer between quantum dot donors and dye-labeled protein acceptors. , 2003, Journal of the American Chemical Society.
[140] J. Frangioni. In vivo near-infrared fluorescence imaging. , 2003, Current opinion in chemical biology.
[141] F Tokumasu,et al. Development and application of quantum dots for immunocytochemistry of human erythrocytes , 2003, Journal of microscopy.
[142] Igor L. Medintz,et al. Self-assembled nanoscale biosensors based on quantum dot FRET donors , 2003, Nature materials.
[143] S. Nie,et al. Molecular profiling of single cells and tissue specimens with quantum dots. , 2003, Trends in biotechnology.
[144] Yong Taik Lim,et al. Selection of Quantum Dot Wavelengths for Biomedical Assays and Imaging , 2003, Molecular imaging.
[145] Vincent Noireaux,et al. In Vivo Imaging of Quantum Dots Encapsulated in Phospholipid Micelles , 2002, Science.
[146] Erkki Ruoslahti,et al. Nanocrystal targeting in vivo , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[147] Hedi Mattoussi,et al. Avidin: a natural bridge for quantum dot-antibody conjugates. , 2002, Journal of the American Chemical Society.
[148] Mark E. Davis,et al. Non-viral gene delivery systems. , 2002, Current opinion in biotechnology.
[149] Xiaogang Peng,et al. Nearly monodisperse and shape-controlled CdSe nanocrystals via alternative routes: nucleation and growth. , 2002, Journal of the American Chemical Society.
[150] Xiaogang Peng,et al. Control of photoluminescence properties of CdSe nanocrystals in growth. , 2002, Journal of the American Chemical Society.
[151] S. Nie,et al. Luminescent quantum dots for multiplexed biological detection and imaging. , 2002, Current opinion in biotechnology.
[152] R K Jain,et al. Delivery of molecular medicine to solid tumors: lessons from in vivo imaging of gene expression and function. , 2001, Journal of controlled release : official journal of the Controlled Release Society.
[153] Shimon Weiss,et al. Synthesis and Properties of Biocompatible Water-Soluble Silica-Coated CdSe/ZnS Semiconductor Quantum Dots† , 2001 .
[154] Andreas Kornowski,et al. Highly Luminescent Monodisperse CdSe and CdSe/ZnS Nanocrystals Synthesized in a Hexadecylamine-Trioctylphosphine Oxide-Trioctylphospine Mixture. , 2001, Nano letters.
[155] Xiaogang Peng,et al. Formation of high-quality CdTe, CdSe, and CdS nanocrystals using CdO as precursor. , 2001, Journal of the American Chemical Society.
[156] J. Matthew Mauro,et al. Self-Assembly of CdSe−ZnS Quantum Dot Bioconjugates Using an Engineered Recombinant Protein , 2000 .
[157] S. Nie,et al. Quantum dot bioconjugates for ultrasensitive nonisotopic detection. , 1998, Science.
[158] D. Balding,et al. HLA Sequence Polymorphism and the Origin of Humans , 2006 .
[159] R. Jain,et al. Regulation of transport pathways in tumor vessels: role of tumor type and microenvironment. , 1998, Proceedings of the National Academy of Sciences of the United States of America.
[160] A. Alivisatos. Perspectives on the Physical Chemistry of Semiconductor Nanocrystals , 1996 .
[161] M. Sporn. The war on cancer , 1996, The Lancet.
[162] A. Alivisatos. Semiconductor Clusters, Nanocrystals, and Quantum Dots , 1996, Science.
[163] R. Rubin. The war on cancer. , 1996, U.S. news & world report.
[164] Gil U. Lee,et al. Direct measurement of the forces between complementary strands of DNA. , 1994, Science.
[165] M. Bawendi,et al. Synthesis and characterization of nearly monodisperse CdE (E = sulfur, selenium, tellurium) semiconductor nanocrystallites , 1993 .
[166] F. Baclesse. Roentgen therapy as the sole method of treatment of cancer of the breast. , 1949, The American journal of roentgenology and radium therapy.
[167] David A. Williams,et al. Diffusion Dynamics of Glycine Receptors Revealed by Single – Quantum Dot Tracking , 2012 .
[168] Kenneth A. Dawson,et al. Role of cell cycle on the cellular uptake and dilution of nanoparticles in a cell population. , 2011, Nature nanotechnology.
[169] K. Polyak,et al. Tumor heterogeneity: causes and consequences. , 2010, Biochimica et biophysica acta.
[170] Hak Soo Choi,et al. Design considerations for tumour-targeted nanoparticles. , 2010, Nature nanotechnology.
[171] C. Fan,et al. The cytotoxicity of cadmium based, aqueous phase - synthesized, quantum dots and its modulation by surface coating. , 2009, Biomaterials.
[172] David M Cutler,et al. Are we finally winning the war on cancer? , 2008, The journal of economic perspectives : a journal of the American Economic Association.
[173] D. Choquet,et al. [Surface mobility of postsynaptic AMPARs tunes synaptic transmission]. , 2008, Medecine sciences : M/S.
[174] Sha Jin,et al. Nanoparticle‐Mediated Drug Delivery and Gene Therapy , 2007, Biotechnology progress.
[175] Christopher B. Murray,et al. Synthesis and characterization of nearly monodisperse CdE (E = S, Se, Te) semiconductor nanocrystallites , 2005 .
[176] Byron Ballou,et al. Noninvasive imaging of quantum dots in mice. , 2004, Bioconjugate chemistry.
[177] Igor Nabiev,et al. Biocompatible fluorescent nanocrystals for immunolabeling of membrane proteins and cells. , 2004, Analytical biochemistry.
[178] S. Bhatia,et al. Probing the Cytotoxicity Of Semiconductor Quantum Dots. , 2004, Nano letters.
[179] I. Zuhorn,et al. Size-dependent internalization of particles via the pathways of clathrin- and caveolae-mediated endocytosis. , 2004, The Biochemical journal.
[180] M. Bruchez,et al. Immunofluorescent labeling of cancer marker Her2 and other cellular targets with semiconductor quantum dots , 2003, Nature Biotechnology.
[181] J. Matthew Mauro,et al. Long-term multiple color imaging of live cells using quantum dot bioconjugates , 2003, Nature Biotechnology.
[182] Epstein,et al. The politics of cancer , 2000, JAMA.
[183] R K Jain,et al. Transport of molecules, particles, and cells in solid tumors. , 1999, Annual review of biomedical engineering.