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Ideas in Chemistry and Molecular Sciences Where Chemistry Meets Life 1st Edition by Bruno Pignataro ISBN 3527325417 9783527325412

  • SKU: BELL-2119886
Ideas in Chemistry and Molecular Sciences Where Chemistry Meets Life 1st Edition by Bruno Pignataro ISBN 3527325417 9783527325412
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Ideas in Chemistry and Molecular Sciences Where Chemistry Meets Life 1st Edition by Bruno Pignataro ISBN 3527325417 9783527325412 instant download after payment.

Publisher: Wiley-VCH
File Extension: PDF
File size: 9.54 MB
Pages: 359
Author: Bruno Pignataro
ISBN: 3527325417
Language: English
Year: 2010
Edition: 1

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Ideas in Chemistry and Molecular Sciences Where Chemistry Meets Life 1st Edition by Bruno Pignataro ISBN 3527325417 9783527325412 by Bruno Pignataro 3527325417 instant download after payment.

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ISBN 10: 3527325417 
ISBN 13: 9783527325412
Author: Bruno Pignataro

Ideas in Chemistry and Molecular Sciences gives an account of the most recent results of research in life sciences in Europe based on a selection of leading young scientists participating in the 2008 European Young Chemists Award competition. In addition to this, the authors provide the state of the art of their field of research and the perspective or preview of future directions.

Ideas in Chemistry and Molecular Sciences Where Chemistry Meets Life 1st Table of contents:

Part I: Fundamental Principles at the Interface

  • Chapter 1: The Chemical Language of Life: From Atoms to Macromolecules
    • 1.1 Basic Chemical Principles (bonding, intermolecular forces, thermodynamics relevant to biology).
    • 1.2 The Building Blocks of Life (amino acids, nucleotides, sugars, lipids).
    • 1.3 Structure and Function of Biomacromolecules (proteins, nucleic acids, carbohydrates).
    • 1.4 Self-Assembly and Supramolecular Chemistry in Biological Systems.
  • Chapter 2: Chemical Energetics and Biological Processes
    • 2.1 Bioenergetics: ATP, Redox Reactions, and Metabolic Pathways.
    • 2.2 Enzyme Catalysis: Chemical Mechanisms and Kinetic Insights.
    • 2.3 Photosynthesis and Respiration: Harnessing and Converting Energy.
  • Chapter 3: Water, pH, and Biological Buffering
    • 3.1 The Unique Properties of Water as the Solvent of Life.
    • 3.2 Acid-Base Chemistry in Biological Systems.
    • 3.3 The Role of Buffers in Maintaining Physiological Homeostasis.

Part II: Chemical Biology: Probing and Manipulating Life

  • Chapter 4: Chemical Probes for Biological Systems
    • 4.1 Designing and Synthesizing Small Molecule Probes.
    • 4.2 Fluorescent Probes for Imaging and Sensing.
    • 4.3 Activity-Based Protein Profiling (ABPP).
    • 4.4 Click Chemistry in Biological Labeling.
  • Chapter 5: Unraveling Biological Mechanisms with Chemistry
    • 5.1 Chemical Genetics: Using Small Molecules to Modulate Protein Function.
    • 5.2 Optogenetics: Light-Control of Biological Processes.
    • 5.3 Dynamic Covalent Chemistry in Biological Systems.
    • 5.4 Studying Protein-Ligand Interactions.
  • Chapter 6: Synthetic Biology and Artificial Life
    • 6.1 De Novo Design of Proteins and Enzymes.
    • 6.2 Engineering Metabolic Pathways for Bioproduction.
    • 6.3 Constructing Synthetic Cells and Protocells.
    • 6.4 Designing Artificial Nucleic Acids and Genetic Systems.

Part III: Chemistry for Health and Medicine

  • Chapter 7: Principles of Drug Discovery and Medicinal Chemistry
    • 7.1 Target Identification and Validation.
    • 7.2 High-Throughput Screening and Lead Discovery.
    • 7.3 Structure-Activity Relationship (SAR) and Lead Optimization.
    • 7.4 Pharmacokinetics (ADME) and Drug Metabolism.
  • Chapter 8: Advanced Therapeutic Modalities
    • 8.1 Biologics: Antibodies, Peptides, and Gene Therapies.
    • 8.2 Nanomedicine: Drug Delivery Systems and Diagnostics.
    • 8.3 Precision Medicine and Personalized Therapeutics.
    • 8.4 Chemical Approaches to Regenerative Medicine.
  • Chapter 9: Diagnostics and Biosensors
    • 9.1 Chemical Sensing Technologies for Biomarkers.
    • 9.2 Point-of-Care Diagnostics.
    • 9.3 Imaging Agents for Medical Diagnosis.
    • 9.4 Microfluidics and Lab-on-a-Chip Systems.

Part IV: Bio-Inspired Chemistry and Sustainable Solutions

  • Chapter 10: Biomimicry and Bio-Inspired Materials
    • 10.1 Learning from Nature's Designs (e.g., bone, shell, spider silk).
    • 10.2 Self-Healing Materials.
    • 10.3 Smart and Responsive Materials for Biomedical Applications.
  • Chapter 11: Green Chemistry and Biotechnology for Sustainability
    • 11.1 Biocatalysis and Enzyme Engineering for Sustainable Synthesis.
    • 11.2 Biofuels and Renewable Energy from Chemical Perspectives.
    • 11.3 Bioremediation and Environmental Chemistry.
    • 11.4 Sustainable Polymer Chemistry.

Part V: Emerging Frontiers and Future Outlook

  • Chapter 12: Chemogenomics and Proteomics
    • 12.1 High-Throughput Approaches to Understanding Chemical-Biological Interactions.
    • 12.2 Integrating Chemical Data with Genomic and Proteomic Information.
  • Chapter 13: The Role of AI and Machine Learning in Chemical Biology
    • 13.1 Accelerating Drug Discovery and Material Design.
    • 13.2 Predicting Biological Activity and Toxicity.
    • 13.3 Automating Chemical Synthesis and Experimentation.
  • Chapter 14: Grand Challenges and Ethical Considerations
    • 14.1 Addressing Global Health Challenges (e.g., antimicrobial resistance, neglected diseases).
    • 14.2 Ethical Implications of Synthetic Biology and Gene Editing.
    • 14.3 The Future Landscape of Chemical and Molecular Sciences.

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Tags: Bruno Pignataro, Chemistry, Molecular

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