Function Biomaterials Design and Development for Biotechnology Pharmacology and Biomedicine Volume 1 1st Edition by Karin Stana Kleinschek, Tamilselvan Mohan – Ebook PDF Instant Download/Delivery. 3527347712 ,9783527347711
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ISBN 10: 3527347712
ISBN 13: 9783527347711
Author: Karin Stana Kleinschek, Tamilselvan Mohan
This book merges the two most important trends in biomaterials: functionalization and renewable chemistry. It covers a variety of biopolymers and various approaches for the transformation of these biopolymers into functional units. Sample topics covered by the two well-qualified authors include:
- Fundamental knowledge of biopolymers–natural ones, such as cellulose and other polysaccharides, and synthetic ones, such as polyethylene
- The origin, classifications, chemical nature, and isolation methods of specific biopolymers
- The different classical and modern approaches for the transformation of biopolymers into different shapes, ranging from thin films (model surfaces), to nanoparticles, to nanofibers, all the way to 3D scaffolds
- The morphology, structure, shape, thermal, electrical, and surface properties of biomaterials
This all-inclusive reference guide, which covers fundamentals, methods, and applications alike, is a key resource for both students and practicing scientists involved in programs of study or disciplines that intersect with the field of biomaterials.
Function Biomaterials Design and Development for Biotechnology Pharmacology and Biomedicine Volume 1 1st Edition Table of contents:
Part I: Introduction to Biomaterials and Their Role in Biotechnology
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Introduction to Biomaterials
- Definition and Classification of Biomaterials
- Historical Development and Evolution of Biomaterials
- Key Properties of Biomaterials: Biocompatibility, Biodegradability, and Bioactivity
- Biomaterials in Biotechnology and Pharmacology
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Biomaterials in Biomedical Engineering and Drug Delivery
- Role of Biomaterials in Drug Delivery Systems
- Biomaterials for Controlled and Sustained Release
- Targeted Drug Delivery: Strategies and Technologies
- Advances in Biomaterials for Nanomedicine
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Design and Synthesis of Biomaterials
- Design Principles for Biomaterials in Biotechnology
- Synthesis Techniques: From Synthetic Polymers to Natural Polymers
- Hybrid and Composite Biomaterials
- Surface Functionalization for Enhanced Biocompatibility
Part II: Biomaterials for Pharmacology Applications
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Biomaterials in Pharmacokinetics and Drug Metabolism
- Role of Biomaterials in Drug Absorption, Distribution, and Elimination
- Biomaterials for Enhancing Drug Bioavailability
- Drug–Biomaterial Interactions and Their Impact on Pharmacology
- Advances in Biomaterials for Targeted Drug Delivery
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Biomaterials for Pharmaceutical Formulations
- Polymers, Lipids, and Nanomaterials in Pharmaceutical Formulations
- Encapsulation of Drugs for Enhanced Efficacy
- Biomaterial-Based Systems for Controlled Release and Drug Targeting
- Biodegradable Nanoparticles and Microparticles for Drug Delivery
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Biomaterials in Personalized Medicine
- Role of Biomaterials in Tailored Drug Delivery Systems
- Drug Response and Biomaterial-Based Drug Screening Platforms
- Biomaterials in Genetic and Proteomic-Based Personalized Medicine
- Innovations in Biomaterials for Biomarker Discovery and Diagnostics
Part III: Biomaterials in Biomedicine and Tissue Engineering
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Biomaterials for Tissue Engineering
- Introduction to Tissue Engineering: Basics and Challenges
- Biomaterials for Scaffold Design and Development
- Scaffold Fabrication Techniques: 3D Printing, Electrospinning, and Hydrogels
- Biomaterials for Regenerative Medicine
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Biomaterials for Wound Healing and Skin Regeneration
- Role of Biomaterials in Wound Healing
- Development of Bioactive Dressings and Skin Substitutes
- Biomaterials for Burn Treatment and Chronic Wound Care
- Nanomaterials in Skin Regeneration
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Biomaterials for Bone and Cartilage Regeneration
- Bone Tissue Engineering and Scaffold Materials
- Bioactive Ceramics and Polymers for Bone Regeneration
- Biomaterials for Cartilage Repair and Osteoarthritis Treatment
- Stem Cells and Biomaterials in Bone Regeneration
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Biomaterials in Cardiovascular Applications
- Biomaterials for Heart Valve Repair and Replacement
- Vascular Grafts and Stents: Design and Development
- Biomaterials for Cardiac Tissue Engineering and Regeneration
- Nanomaterials in Cardiovascular Applications
Part IV: Advanced Biomaterials and Nanotechnologies
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Nanomaterials in Biomedical Applications
- Role of Nanomaterials in Drug Delivery and Diagnosis
- Nanostructured Biomaterials for Targeted Drug Delivery
- Nano-Biomaterials in Imaging and Biosensing
- Toxicology and Safety of Nanomaterials in Biomedicine
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Smart Biomaterials in Drug Delivery
- Stimuli-Responsive Biomaterials for Controlled Drug Release
- pH, Temperature, and Enzyme-Sensitive Biomaterials
- Advances in “Smart” Polymer and Hydrogels
- Self-assembled Nanostructures in Drug Delivery
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Biomaterials for Gene and Cell Therapy
- Biomaterials in Gene Delivery Systems
- Biomaterials for RNA and DNA Delivery
- Stem Cell-Based Therapies and Biomaterials
- Biomaterials for Cell Therapy and Organ Regeneration
Part V: Regulatory and Clinical Considerations
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Regulatory and Safety Aspects of Biomaterials
- Regulatory Frameworks for Biomaterials in Biotechnology and Biomedicine
- Good Manufacturing Practices (GMP) for Biomaterials
- Toxicology and Biocompatibility Testing
- Ethical Considerations in the Development of Biomaterials
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Clinical Applications and Case Studies
- Case Studies of Successful Biomaterial Applications in Medicine
- Challenges and Barriers in Translating Biomaterials to the Clinic
- Commercialization of Biomaterials and Biotechnology Innovations
- Future Directions in Clinical Biomaterials Development
Part VI: Future Trends and Emerging Areas
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Emerging Trends in Biomaterial Research and Development
- Biomaterials for Precision Medicine
- Biomaterials in Organ-on-a-Chip Technologies
- Advances in Bioprinting and 3D Tissue Models
- Biomaterials in Stem Cell Therapy and Organ Regeneration
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Future Directions in Biotechnology and Biomedicine
- Innovations in Smart Biomaterials and Nano-Biomaterials
- Integration of Artificial Intelligence with Biomaterial Design
- Convergence of Biomaterials with Regenerative Medicine and Immunotherapy
- Sustainability in Biomaterial Development and Biomanufacturing
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