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Organelle-specific pharmaceutical nanotechnology [[electronic resource] /] / edited by Volkmar Weissig, Gerard G.M. D'Souza
Organelle-specific pharmaceutical nanotechnology [[electronic resource] /] / edited by Volkmar Weissig, Gerard G.M. D'Souza
Pubbl/distr/stampa Hoboken, NJ, : Wiley, 2010
Descrizione fisica 1 online resource (638 p.)
Disciplina 615/.19
Altri autori (Persone) WeissigVolkmar
D'SouzaGerard G. M
Soggetto topico Pharmaceutical technology
Nanotechnology
Drug targeting
ISBN 1-118-07434-3
1-299-18614-9
0-470-87578-X
0-470-87577-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto ORGANELLE-SPECIFIC PHARMACEUTICAL NANOTECHNOLOGY; CONTENTS; PREFACE; CONTRIBUTORS; CHAPTER 1: An Introduction to Subcellular Nanomedicine: Current Trends and Future Developments; CHAPTER 2: Delivery of Nanosensors to Measure the Intracellular Environment; CHAPTER 3: Cytoplasmic Diffusion of Dendrimers and Dendriplexes; CHAPTER 4: Endocytosis and Intracellular Trafficking of Quantum Dot-Ligand Bioconjugates; CHAPTER 5: Synthesis of Metal Nanoparticle-Based Intracellular Biosensors and Therapeutic Agents; CHAPTER 6: Subcellular Fate of Nanodelivery Systems
CHAPTER 7: Intracellular Fate of Plasmid DNA PolyplexesCHAPTER 8: Intracellular Traffi cking of Membrane Receptor-Mediated Uptake of Carbon Nanotubes; CHAPTER 9: Real-Time Particle Tracking for Studying Intracellular Transport of Nanotherapeutics; CHAPTER 10: Tracking Intracellular Polymer Localization Via Fluorescence Microscopy; CHAPTER 11: Can QSAR Models Describing Small-Molecule Xenobiotics Give Useful Tips for Predicting Uptake and Localization of Nanoparticles in Living Cells? And If Not, Why Not?; CHAPTER 12: Self-Unpacking Gene Delivery Scaffolds
CHAPTER 13: Cellular Trafficking of DendrimersCHAPTER 14: Endolysosomolytically Active pH-Sensitive Polymeric Nanotechnology; CHAPTER 15: Uptake and Intracellular Dynamics of Proteins Internalized by Cell-Penetrating Peptides; CHAPTER 16: Cargo Transport by Teams of Molecular Motors: Basic Mechanisms for Intracellular Drug Delivery; CHAPTER 17: The Potential of Photochemical Internalization (PCI) for the Cytosolic Delivery of Nanomedicines; CHAPTER 18: Peptide-Based Nanocarriers for Intracellular Delivery of Biologically Active Proteins
CHAPTER 19: Organelle-Specific Pharmaceutical Nanotechnology: Active Cellular Transport of Submicro- and Nanoscale ParticlesCHAPTER 20: Subcellular Targeting of Virus-Envelope-Coated Nanoparticles; CHAPTER 21: Mitochondria-Targeted Pharmaceutical Nanocarriers; CHAPTER 22: Cell-Penetrating Peptides for Cytosolic Delivery of Biomacromolecules; CHAPTER 23: Therapeutic Nano-object Delivery to Subdomains of Cardiac Myocytes; CHAPTER 24: Design Parameters Modulating Intracellular Drug Delivery: Anchoring to Specific Cellular Epitopes, CarrierGeometry, and Use of Auxiliary Pharmacological Agents
CHAPTER 25: Uptake Pathways Dependent Intracellular Trafficking of DNA Carrying Nanodelivery SystemsCHAPTER 26: Cellular Interactions of Plasmon-Resonant Gold Nanorods; CHAPTER 27: Quantum Dot Labeling for Assessment of Intracellular Trafficking of Therapeutically Active Molecules; INDEX
Record Nr. UNINA-9910140835903321
Hoboken, NJ, : Wiley, 2010
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui
Organelle-specific pharmaceutical nanotechnology / / edited by Volkmar Weissig, Gerard G.M. D'Souza
Organelle-specific pharmaceutical nanotechnology / / edited by Volkmar Weissig, Gerard G.M. D'Souza
Edizione [1st ed.]
Pubbl/distr/stampa Hoboken, NJ, : Wiley, 2010
Descrizione fisica 1 online resource (638 p.)
Disciplina 615/.19
Altri autori (Persone) WeissigVolkmar
D'SouzaGerard G. M
Soggetto topico Pharmaceutical technology
Nanotechnology
Drug targeting
ISBN 1-118-07434-3
1-299-18614-9
0-470-87578-X
0-470-87577-1
Formato Materiale a stampa
Livello bibliografico Monografia
Lingua di pubblicazione eng
Nota di contenuto ORGANELLE-SPECIFIC PHARMACEUTICAL NANOTECHNOLOGY; CONTENTS; PREFACE; CONTRIBUTORS; CHAPTER 1: An Introduction to Subcellular Nanomedicine: Current Trends and Future Developments; CHAPTER 2: Delivery of Nanosensors to Measure the Intracellular Environment; CHAPTER 3: Cytoplasmic Diffusion of Dendrimers and Dendriplexes; CHAPTER 4: Endocytosis and Intracellular Trafficking of Quantum Dot-Ligand Bioconjugates; CHAPTER 5: Synthesis of Metal Nanoparticle-Based Intracellular Biosensors and Therapeutic Agents; CHAPTER 6: Subcellular Fate of Nanodelivery Systems
CHAPTER 7: Intracellular Fate of Plasmid DNA PolyplexesCHAPTER 8: Intracellular Traffi cking of Membrane Receptor-Mediated Uptake of Carbon Nanotubes; CHAPTER 9: Real-Time Particle Tracking for Studying Intracellular Transport of Nanotherapeutics; CHAPTER 10: Tracking Intracellular Polymer Localization Via Fluorescence Microscopy; CHAPTER 11: Can QSAR Models Describing Small-Molecule Xenobiotics Give Useful Tips for Predicting Uptake and Localization of Nanoparticles in Living Cells? And If Not, Why Not?; CHAPTER 12: Self-Unpacking Gene Delivery Scaffolds
CHAPTER 13: Cellular Trafficking of DendrimersCHAPTER 14: Endolysosomolytically Active pH-Sensitive Polymeric Nanotechnology; CHAPTER 15: Uptake and Intracellular Dynamics of Proteins Internalized by Cell-Penetrating Peptides; CHAPTER 16: Cargo Transport by Teams of Molecular Motors: Basic Mechanisms for Intracellular Drug Delivery; CHAPTER 17: The Potential of Photochemical Internalization (PCI) for the Cytosolic Delivery of Nanomedicines; CHAPTER 18: Peptide-Based Nanocarriers for Intracellular Delivery of Biologically Active Proteins
CHAPTER 19: Organelle-Specific Pharmaceutical Nanotechnology: Active Cellular Transport of Submicro- and Nanoscale ParticlesCHAPTER 20: Subcellular Targeting of Virus-Envelope-Coated Nanoparticles; CHAPTER 21: Mitochondria-Targeted Pharmaceutical Nanocarriers; CHAPTER 22: Cell-Penetrating Peptides for Cytosolic Delivery of Biomacromolecules; CHAPTER 23: Therapeutic Nano-object Delivery to Subdomains of Cardiac Myocytes; CHAPTER 24: Design Parameters Modulating Intracellular Drug Delivery: Anchoring to Specific Cellular Epitopes, CarrierGeometry, and Use of Auxiliary Pharmacological Agents
CHAPTER 25: Uptake Pathways Dependent Intracellular Trafficking of DNA Carrying Nanodelivery SystemsCHAPTER 26: Cellular Interactions of Plasmon-Resonant Gold Nanorods; CHAPTER 27: Quantum Dot Labeling for Assessment of Intracellular Trafficking of Therapeutically Active Molecules; INDEX
Record Nr. UNINA-9910821147803321
Hoboken, NJ, : Wiley, 2010
Materiale a stampa
Lo trovi qui: Univ. Federico II
Opac: Controlla la disponibilità qui