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    Nanotechnology in Therapeutics

    Basics and Trends

    AvCostas Demetzos,Dennis Douroumis

    Inbunden, Engelska, 2024

    Del i serien Advances in Pharmaceutical Technology

    1 657 kr

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    E-bok

    1 861 kr

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    Beskrivning

    Nanotechnology in Therapeutics Comprehensive reference delivering a framework to develop and assess nanosystems that provide unique advantages in biomedical applications Nanotechnology in Therapeutics explores the idea that by studying in depth the behavior of living organisms, especially the functionality of their cell membranes, we can develop and evaluate innovative bio-inspired nanosystems that are able to deliver small molecules, biomolecules like proteins, peptides, and other genetic material in terms of the production of new therapies and vaccines. The main concept promoted in this book is an integrated approach for producing new medicines following the nanotoxicity, biotoxicity, regulatory, and ethical guidelines, which are also covered in the book. The book is divided into three parts. Part A provides an introduction and a historical overview of nanotechnology. Part B delves deeper into issues relating to lipid and polymeric nanostructures in medicine. Part C presents the regulatory landscape around nanotechnology and nanomedicine, while highlighting the need to keep an eye on emerging technologies such as artificial intelligence and machine learning. Overall, this book opens up biomedical applications for previously challenging drugs and drug targets. Written by a highly qualified professor with significant pertinent research experience, Nanotechnology in Therapeutics includes discussion on: Eukaryotic cell membranes, their structural properties, and the thermodynamic payload of their lipid bilayersThe DLVO (Derjaguin, Landau, Verwey and Overbeek) theory as a scientific tool for studying the stability and the behavior of nanoparticlesLiposomes, lipid nanoparticles, and solid lipid nanoparticles, as well as polymeric nanoparticles, like micelles, polymersomes, and dendrimersIssues in the approval process of nanomedicines by the regulatory agencies, such as complexity, chaos, and nonlinear dynamicsWith comprehensive coverage of novel concepts that have the potential to transform how new medicines are designed and developed, Nanotechnology in Therapeutics is an essential resource on the subject for chemists in industry, as well as biomedical and pharmaceutical engineers.

    Produktinformation

    • Utgivningsdatum:2024-08-29
    • Mått:175 x 251 x 23 mm
    • Vikt:737 g
    • Format:Inbunden
    • Språk:Engelska
    • Serie:Advances in Pharmaceutical Technology
    • Antal sidor:304
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781394274055

    Utforska kategorier

    • Teknik: allmänt inom Naturvetenskap och teknik
    • Behandling och behandlingsmetoder inom Medicin
    • Tillverkningsteknik inom Naturvetenskap och teknik

    Mer om författaren

    Costas Demetzos is Professor of Pharmaceutical Nanotechnology at the National and Kapodistrian University of Athens. Currently, Prof. Demetzos serves as Director of the Laboratory of Pharmaceutical Technology, and since 2008 he serves as President of the Hellenic Pharmaceutical Society (HPS). His research interests include pharmaceutical nanotechnology, nanomedicine, and thermodynamics.

    Innehållsförteckning

    • About the Author ixForeword xiiiAdvances in Pharmaceutical Technology: Series Preface xvPreface xviiAcknowledgments xxiList of Abbreviations xxiiiList of Figures xxixList of Tables xxxvPart A Nanotechnology: Introduction and Brief Historical Overview 11 Introduction and Applications of Nanotechnology 31.1 Nanotechnology: Introduction and Brief Historical Overview 31.2 An Overview of Nanomedicines 91.3 Nanomedicine 101.4 The Strategic Research and Innovation Agenda for Νanomedicine (SRIA) 2016– 2030 (www.etp- nanomedicine.eu) 312 Biophysics, Thermodynamics, and Stability of Colloidal Dispersion Nanosystems 372.1 The Eukaryotic Cell Membranes 372.1.1 Structure and Function of Cell Membranes 382.1.2 Thermodynamic Properties of the Lipid Bilayers of Cell Membranes 402.2 Liquid Crystals (LCs) 432.2.1 Thermotropic and Lyotropic Liquid Crystals 452.3 Liquid Crystals in Biological Systems 462.4 The Role of Lipidic Domains in Cell Membranes 512.4.1 Lipid Conformational and Motional Properties 562.5 Dispersion Nanosystems 572.6 Stability of Nanocolloidal Dispersion Systems 622.6.1 Fundamentals of DLVO Theory 622.7 The DLVO Theory 642.7.1 Historical Background in Brief 642.7.2 Extension of the Classic DLVO Theory 662.7.3 Classification of Hydration Forces During the Interaction of Nanoparticles of a Colloidal Dispersion System 672.7.4 Entropic Effect 702.7.5 Osmotic Effect 712.7.6 Enthalpic Stabilization 712.8 Introduction to Applied Thermodynamics and Biothermodynamics 722.8.1 Introduction to Thermodynamics 722.8.2 Small System Thermodynamics 732.8.3 Comparison of Thermal Analysis with Other Analytical Techniques 752.8.4 Classification of Thermal Analysis Techniques 752.8.5 Differential Scanning Calorimetry: Basic Principles 762.8.6 Polymorphism – Lyotropism 772.8.7 Differential Scanning Calorimetry (DSC) Types 782.9 Light Scattering Techniques 802.9.1 Photon Correlation Spectroscopy (PCS) 802.10 Microscopy 822.10.1 Optical Microscopy 832.10.2 Electron Microscopy 832.10.3 Scanning Probe Microscopy 83Part B Lipid and Polymeric Nanostructures in Medicine 873 Liposomes: An Overview 893.1 Introduction and Historical Issues of Liposomal Technology 893.2 Types of Liposomes 993.3 Entrapment of Bioactive Molecules in Multilamellar Lipid Vesicles and Liposomes 1013.4 Advantages of Liposomes 1033.5 Liposomes as Model of the Cell Membrane and Properties of Their Liquid Crystalline State of Matter 1053.6 Liposome Physicochemical Characterization and Their Physical Stability 1063.6.1 Summary of Liposome Preparation Methods 1103.7 Liposomes as Analytical Tool 1143.7.1 Biosensors Based on Liposome Technology 1153.7.2 Future Perspectives in Lipidic Drug Delivery Nanosystems 1184 Lipidic and Polymeric Nanomedicines in Clinical Applications 1234.1 Liposomal Nanomedicines 1234.1.1 Anticancer Liposomal Medicines 1234.1.2 Antifungal Liposomal and Lipidic- based Nanomedicines. Case Study of Liposomal and Lipidic- based Amphotericin B 1314.1.3 Lipid Nanoparticles 1334.2 Advanced Liposomal Nanomedicines 1384.2.1 Stimuli- responsive Liposomal Nanosystems 1384.2.2 Immunoliposomes 1394.2.3 Mitochondria as Target Domain 1404.3 Polymers 1444.3.1 Polyelectrolytes 1464.4 Polymersomes 1474.4.1 Polymersome Size and Size Distribution Evaluation 1484.4.2 Polymersome Properties and Applications 1494.4.3 Polymersome Surface Chemistry 1504.4.4 Polymerosome Applications 1504.5 Biodegradable Polymeric Nanoparticles 1514.6 Polymeric Micelles 1514.7 Dendrimers 1524.7.1 Dendrimer Use in Biomedicine 1544.7.2 Dendrimer Applications 1554.7.3 Dendrimer Application in Diagnostics with Magnetic Resonance Imaging Technique 1565 Applied Nanotechnology 1615.1 Nanotechnology in Therapeutics 1615.2 Nanotechnology and Cancer 1655.3 Nanooncology and Gene Transfer 1675.4 Nanobiotechnology 1705.5 Nanogenomics and Nanoproteomics 1715.6 Delivery Nanosystems for Therapeutic Biological Products 1725.7 New Therapies Based on Nanotechnology 1735.8 Theranostics 1765.8.1 Theranostics: Applications in the Treatment, Diagnosis of Diseases, and Tissue Monitoring 1766 Nanotechnology in Vaccines 1816.1 Introduction to Vaccines 1816.2 Development of Novel Nanovaccines 1876.3 Liposomes, Lipid Nanoparticles, and Nonviral Lipid Nanoparticles (Virosomes) 1896.4 Vaccines Against SARS‐CoV‐2 Virus 1986.4.1 Stability of Nanovaccines as Nanocolloids 2016.5 Future Perspectives and the Concept of the “Thermodynamic Epitope” 2036.6 LNPs‐based Nanovaccines in Clinical Applications 2136.6.1 Comirnaty® 2136.6.2 Spikevax 214Part C Nanotechnology and Nanomedicine: The Regulatory Landscape 2177 New Health Technologies and Regulatory Approaches 2197.1 New Health Technologies and the Regulatory Landscape for the Approval Process 2197.2 Nanoinformatics 2217.2.1 Artificial Intelligence (AI) 2237.3 Complex Systems, Complexity, and Artificial Bionanosystems 2267.4 Chaos and Nonlinear Dynamics in Nanocolloids 2307.4.1 Chaotic Dynamic Systems 2327.4.2 Lyapunov Approximation 2327.4.3 Linking Lyapunov Exponents to Information 2347.5 Nanocolloids. Complexity, Chaos, and Stability 2347.6 Regulatory Agencies 2367.6.1 Medicine Approval Processes 2387.7 Advanced Therapy Medicinal Products (ATMPs) 2397.8 Approval Process for Advanced Therapy Medicinal Products 2427.9 The Regulatory Framework for the Nanobiotechnological Products in the United States and the Role of the FDA 2447.10 Regulatory Issues for Biotechnological Medicines. The Role of the EMA 2467.11 Committee for Advanced Therapies (CAT) 2497.12 Nanosimilars 2497.13 Generics and Biosimilar Therapeutic Products 255Index 261