Nanotechnology in drug discovery
Weerasinghe, Laksiri.

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  • Nanotechnology in drug discovery
  • Record Type: Electronic resources : Monograph/item
    Title/Author: Nanotechnology in drug discovery/ authored by Laksiri Weerasinghe, Imalka Munaweera & Senuri Kumarage.
    Author: Weerasinghe, Laksiri.
    other author: Munaweera, Imalka.
    Published: Singapore :Bentham Science Publishers, : 2024.,
    Description: 1 online resource (222 p.) :col. ill.
    [NT 15003449]: Cover -- Title -- Copyright -- End User License Agreement -- Contents -- Preface -- Fundamentals of Nanotechnology -- 1. INTRODUCTION TO NANOMATERIALS -- 1.1. Changes in Thermal Properties -- 1.2. Changes in Optical Properties -- 1.3. Changes in Electronic Properties -- 1.4. Changes in Electrical Properties -- 1.5. Changes in Magnetic Properties -- 1.6. Changes in Chemical Properties -- 2. SYNTHESIS AND CHARACTERIZATION METHODS OF NANOMATERIALS -- 2.1. Bottom-up Synthesis Methods -- 2.1.1. Chemical Vapour Deposition -- 2.1.2. Physical Vapour Deposition -- 2.1.3. Thermal Decomposition -- 2.1.4. Chemical Reduction -- 2.1.5. Photo-reduction -- 2.1.6. Biological Synthesis -- 2.1.7. Solvothermal -- 2.1.8. Sol-gel -- 2.1.9. Co-precipitation -- 2.2. Top-down Synthesis Methods -- 2.2.1. Mechanical Ball Milling -- 2.2.2. Nanolithography -- 2.2.3. Laser Ablation -- 2.2.4. Electrospinning -- 2.3. Characterisation of Nanomaterials -- 3. NANODEVICES -- 3.1. Atomic Force Microscopy -- 3.2. Nanoarrays/nanochips -- 3.3. Nanofluidics -- 3.4. Nano Biosensors -- 3.5. Nanobiopsy -- 4. ADVANTAGES OF EMPLOYING NANOMATERIALS AND NANODEVICES IN DRUG DISCOVERY -- 5. CHALLENGES AND OPPORTUNITIES IN NANOSCALE -- 5.1. Challenges -- 5.2. Opportunities -- CONCLUSION -- PRACTICE QUESTIONS -- REFERENCES -- Nanotechnology in Drug Development -- Development of Nanomaterials as Drug Candidates -- 1. INTRODUCTION -- 2. DENDRIMERS -- 3. CARBON BASED NANOPARTICLES -- 3.1. Carbon Nanotubes -- 3.2. Fullerenes -- 3.3. Graphene Oxide and Derivatives -- 3.4. Carbon Quantum Dots -- 4. NANOHYDROGEL -- 5. PEPTIDE NANOSTRUCTURES -- 6. MXENES -- 7. SILICENE -- 8. ANTIMONENE -- CONCLUSION -- PRACTICE QUESTIONS -- REFERENCES -- Nanotechnology for Drug Design and Drug Delivery -- 1. INTRODUCTION -- 2. ATTRIBUTES OF AN EFFECTIVE DELIVERY SYSTEM -- 3. UP-TO-DATE DRUG DELIVERY SYSTEMS.
    [NT 15003449]: 3.1. Liposomes -- 3.2. Polymeric Micelles -- 3.3. Nanogels -- 3.4. Nanoemulsions -- 3.5. Solid Lipid Nanoparticles -- 3.6. Dendrimers -- 3.7. Inorganic Nanoparticles -- 3.8. Electrospun Polymeric Nanofiber -- CONCLUSION -- PRACTICE QUESTIONS -- REFERENCES -- Fate of Nanoparticles -- 1. INTRODUCTION -- 2. CELL UPTAKE AND METABOLISM -- 2.1. Endocytosis -- 2.1.1. Clathrin-mediated Endocytosis -- 2.1.2. Caveolin-dependent Endocytosis -- 2.1.3. Clathrin and Caveolin-independent Endocytosis -- 2.1.4. Phagocytosis -- 2.1.5. Macropinocytosis -- 2.2. Direct Fusion with the Plasma Membrane -- 2.2.1. Cytoplasmic Entry by Direct Translocation -- 2.2.2. Cytoplasmic Entry by Lipid Fusion -- 2.2.3. Electroporation -- CONCLUSION -- PRACTICE QUESTIONS -- REFERENCES -- Regulation, Development, and Commercialization of Nano-Based Drugs -- 1. INTRODUCTION -- CONCLUSION -- REFERENCES -- Future of Nanotechnology-Based Drug Discovery -- 1. INTRODUCTION -- 2. FUTURE OF NANOTECHNOLOGY IN DISEASE DIAGNOSIS AND THERAPY -- 3. PATIENT FOLLOW-UP AFTER TREATMENTS -- 4. NANOTECHNOLOGY IN OVERCOMING CANCER DRUG RESISTANCE -- 5. TRANSLATION OF NANOMEDICINE INTO SOLID DOSAGES -- CONCLUSION -- REFERENCES -- Subject Index -- Back Cover.
    Subject: Nanotechnology. -
    Online resource: https://www.eurekaselect.com/ebook_volume/3730
    ISBN: 9789815238815
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