Thermodynamics and biophysics of biomedical nanosystems :
نام عام مواد
[Book]
ساير اطلاعات عنواني
applications and practical considerations /
نام نخستين پديدآور
Costas Demetzos, Natassa Pippa, editors.
وضعیت نشر و پخش و غیره
محل نشرو پخش و غیره
Singapore :
نام ناشر، پخش کننده و غيره
Springer,
تاریخ نشرو بخش و غیره
2019.
مشخصات ظاهری
نام خاص و کميت اثر
1 online resource (xii, 475 pages) :
ساير جزييات
illustrations (some color)
فروست
عنوان فروست
Series in BioEngineering,
شاپا ي ISSN فروست
2196-8861
یادداشتهای مربوط به مندرجات
متن يادداشت
Intro; Preface; Contents; About the Editors; Introducing Thermodynamics and Biophysics in Health Sciences; 1 Thermodynamics and Biophysics in Biomaterials and Self-assembled Structures; 2 Thermal Analysis Techniques in Design and Development of Medicines; 3 Liquid Crystalline Phases: Trying to Understudy the Physics of Bio-Inspired Systems; 3.1 The Metastable Phases; 4 Nanosimilars: The Role of Thermodynamics for the Approval of the Next-Generation Nanomedicines; 5 Regulatory and Concluding Remarks; References
متن يادداشت
3.2 Calorimetric Techniques4 Conclusions; References; Phase Transitions in Biological Membranes; 1 Introduction; 2 Membrane Melting; 3 Influence of Anesthetic Drugs on Membrane Transitions; 4 Pressure Reveral of Anesthesia; 5 Influencing the Melting Transition by pH, Sodium, Potassium, Calcium and Other Charged Ligands; 6 Elastic Constants and Time Scales; 7 Voltage, Capacitance and Transitions; 8 Permeability and Channels; 9 Pulses Along Membranes; 10 Influence of the Thermodynamic Variables on the Excitability of Nerves; 11 Summary; References
متن يادداشت
Dynamics of Iron Homeostasis in Health and Disease: Molecular Mechanisms and Methods for Iron Determination1 Introduction; 2 Systemic Iron Homeostasis; 3 Cellular Iron Homeostasis; 3.1 Cellular Iron Uptake and Utilization; 3.2 Regulation of Cellular Iron Homeostasis; 4 Mitochondrial Iron Homeostasis; 4.1 Mitochondrial Iron Import; 4.2 Iron-Sulfur Cluster Biosynthesis; 4.3 Heme Biosynthesis; 4.4 Mitochondrial Iron Storage; 5 Iron Dyshomeostasis in Pathological Conditions and Ageing; 5.1 Friedrich's Ataxia; 5.2 Parkinson's Disease; 5.3 Alzheimer's Disease; 5.4 Congenital Sideroblastic Anemias
متن يادداشت
Isothermal Titration Calorimetry: A Powerful Tool for the Characterization of Molecular Interactions1 Introduction; 2 Basic Concepts, Experimental Procedure and Data Analysis; 2.1 Device Design and Experimental Procedure; 2.2 Design of an ITC Experiment; 2.3 Experimental Results and Data Analysis; 3 Applications; 3.1 The Value of ITC in Rational Drug Design; 3.2 Nanoparticle-Protein Interactions; 3.3 Polyelectrolyte Interactions; 3.4 Interactions of Lipid-Based Systems; 3.5 Cyclodextrin Interactions; 4 Conclusions; References
متن يادداشت
Methodological Approaches for the Characterization of the Self-assembling Behaviour in the Pharmaceutical Field1 Self-assembly: A Ubiquitous Phenomenon; 1.1 Definition and Thermodynamic Basis of Self-assembly; 2 Pharmaceutical and Biomedical Applications of Self-assembling; 2.1 Self-assembled Polymeric Nanosystems; 2.2 Self-assembled Lipidic Nanosystems; 2.3 Self-assembled Inorganic Nanosystems; 2.4 Self-assembled Macromolecular (Biological) Nanosystems; 3 Characterization of the Self-assembling Behaviour of Pharmaceutical and Biomedical Nanosystems; 3.1 Ultrasound Spectroscopy Techniques
بدون عنوان
0
بدون عنوان
8
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8
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8
یادداشتهای مربوط به خلاصه یا چکیده
متن يادداشت
This book highlights the recent advances of thermodynamics and biophysics in drug delivery nanosystems and in biomedical nanodevices. The up-to-date book provides an in-depth knowledge of bio-inspired nanotechnological systems for pharmaceutical applications. Biophysics and thermodynamics, supported by mathematics, are the locomotive by which the drug transportation and the targeting processes will be achieved under the light of the modern pharmacotherapy. They are considered as scientific tools that promote the understanding of physicochemical and thermotropic functionality and behavior of artificial cell membranes and structures like nanoparticulate systems. Therefore, this book focusses on new aspects of biophysics and thermodynamics as important elements for evaluating biomedical nanosystems, and it correlates their physicochemical, biophysical and thermodynamical behaviour with those of a living organism.
یادداشتهای مربوط به سفارشات
منبع سفارش / آدرس اشتراک
Springer Nature
شماره انبار
com.springer.onix.9789811309892
ویراست دیگر از اثر در قالب دیگر رسانه
عنوان
Thermodynamics and Biophysics of Biomedical Nanosystems : Applications and Practical Considerations.