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Quantum Dots Applications in Biology / edited by Charles Z. Hotz, Marcel Bruchez.

Colaborador(es): Hotz, Charles Z, editor literario | Bruchez, Marcel, editor literario.
Tipo de material: materialTypeLabelE-bookSeries (Methods in Molecular Biology, 1940-6029; 374).Editor: Totowa, NJ : Humana Press, 2007Edición: 1st edition 2007.Descripción: 1 recurso en línea (XII, 257 páginas).ISBN: 9781597453691.Recursos en línea: (usuarios Universidad Europea de Valencia)Digital Resources
Contenidos:
Imaging of Fixed Cells and Tissues -- Immunofluorescent Labeling of Proteins in Cultured Cells With Quantum Dot Secondary Antibody Conjugates -- Immunohistochemical Detection With Quantum Dots -- Quantum Dots for Multicolor Tumor Pathology and Multispectral Imaging -- Light and Electron Microscopic Localization of Multiple Proteins Using Quantum Dots -- Human Metaphase Chromosome FISH Using Quantum Dot Conjugates -- Imaging of Live Cells -- Biotin-Ligand Complexes With Streptavidin Quantum Dots for In Vivo Cell Labeling of Membrane Receptors -- Single Quantum Dot Tracking of Membrane Receptors -- Optical Monitoring of Single Cells Using Quantum Dots -- Peptide-Mediated Intracellular Delivery of Quantum Dots -- Multiple Cell Lines Using Quantum Dots -- Measuring Cell Motility Using Quantum Dot Probes -- Imaging of Live Animals -- Quantum Dots for In Vivo Molecular and Cellular Imaging -- Sentinel Lymph Node Mapping With Type-II Quantum Dots -- Macrophage-Mediated Colocalization of Quantum Dots in Experimental Glioma -- Flow Cytometry Applications -- Application of Quantum Dots to Multicolor Flow Cytometry -- Quantum Dots in Flow Cytometry -- Biochemical Applications -- Luminescent Biocompatible Quantum Dots -- Fluorescence-Based Analysis of Cellular Protein Lysate Arrays Using Quantum Dots -- Application of Quantum Dots to Multicolor Microarray Experiments.
Resumen: Quantum Dots captures many diverse applications enabling utility in biological detection. Organized into five parts, the first two parts cover the use of QDs in imaging fixed and living cells (and tissues). Protocols are included for using QDs in routine (protein and structural cellular labeling), as well as enabling (single receptor trafficking, clinical pathology, correlative microscopy) applications. Part 3 shows early efforts aimed at using QDs in live animals. The final 2 parts demonstrate the versatility of QD technology in existing assay technology.
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Tipo de ítem Biblioteca actual Signatura topográfica Estado Fecha de vencimiento Código de barras Reserva de ítems
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Valencia Digital Acceso Electrónico (UEV) Acceso electrónico eBook.20124573
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Imaging of Fixed Cells and Tissues -- Immunofluorescent Labeling of Proteins in Cultured Cells With Quantum Dot Secondary Antibody Conjugates -- Immunohistochemical Detection With Quantum Dots -- Quantum Dots for Multicolor Tumor Pathology and Multispectral Imaging -- Light and Electron Microscopic Localization of Multiple Proteins Using Quantum Dots -- Human Metaphase Chromosome FISH Using Quantum Dot Conjugates -- Imaging of Live Cells -- Biotin-Ligand Complexes With Streptavidin Quantum Dots for In Vivo Cell Labeling of Membrane Receptors -- Single Quantum Dot Tracking of Membrane Receptors -- Optical Monitoring of Single Cells Using Quantum Dots -- Peptide-Mediated Intracellular Delivery of Quantum Dots -- Multiple Cell Lines Using Quantum Dots -- Measuring Cell Motility Using Quantum Dot Probes -- Imaging of Live Animals -- Quantum Dots for In Vivo Molecular and Cellular Imaging -- Sentinel Lymph Node Mapping With Type-II Quantum Dots -- Macrophage-Mediated Colocalization of Quantum Dots in Experimental Glioma -- Flow Cytometry Applications -- Application of Quantum Dots to Multicolor Flow Cytometry -- Quantum Dots in Flow Cytometry -- Biochemical Applications -- Luminescent Biocompatible Quantum Dots -- Fluorescence-Based Analysis of Cellular Protein Lysate Arrays Using Quantum Dots -- Application of Quantum Dots to Multicolor Microarray Experiments.

Quantum Dots captures many diverse applications enabling utility in biological detection. Organized into five parts, the first two parts cover the use of QDs in imaging fixed and living cells (and tissues). Protocols are included for using QDs in routine (protein and structural cellular labeling), as well as enabling (single receptor trafficking, clinical pathology, correlative microscopy) applications. Part 3 shows early efforts aimed at using QDs in live animals. The final 2 parts demonstrate the versatility of QD technology in existing assay technology.

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