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The Thirty-First Edition of Harper’s Illustrated Biochemistry continues to emphasize the link between biochemistry and the understanding of disease states, disease pathology, and the practice of medicine.
Featuring a full-color presentation and numerous medically relevant examples, Harper’s presents a clear, succinct review of the fundamentals of biochemistry that every student must understand in order to succeed in medical school. Applauded by medical students and online reviewers for its currency and engaging style, Harper’s Illustrated Biochemistry is essential for USMLE® review and the single-best reference for learning the clinical relevance of any biochemistry topic.
Features of Harper’s Illustrated Biochemistry 31st Edition PDF:
Here is the list some features of this book;
- Full-color presentation includes more than 600 illustrations
- Case studies emphasize the clinical relevance of biochemistry
- NEW CHAPTER on Biochemistry of Transition Metals addresses the importance and overall pervasiveness of transition metals
- Review Questions follow each of the eleven sections
- Boxed Objectives define the goals of each chapter
- Tables encapsulate important information
- Every chapter includes a section on the biomedical importance of a given topic.NEW TO THIS EDITION:
• Emphasis throughout on the integral relationship between biochemistry and disease, diagnostic pathology, and medical practice
• Hundreds of references to disease states throughout
• New chapter addressing the biochemical roles of transition metals
• Many updated review questions
• Frequent tables summarizing key links to disease states
• New text on cryo-electron microscopy (cryo-EM)
• Cover picture of the protein structure of the Zika virus, solved by cryo-EM
Table of Contents:
Below are the complete contents of this book are given;
- Biochemistry & Medicine
- Water & pH
- Amino Acids & Peptides
- Proteins: Determination of Primary Structure
- Proteins: Higher Orders of Structure
- Proteins: Myoglobin & Hemoglobin
- Enzymes: Mechanism of Action
- Enzymes: Kinetics
- Enzymes: Regulation of Activities
- Bioinformatics & Computational Biology
- Bioenergetics: The Role of ATP
- Biologic Oxidation
- The Respiratory Chain & Oxidative Phosphorylation
- Carbohydrates of Physiologic Significance
- Lipids of Physiologic Significance
- Overview of Metabolism & the Provision of Metabolic Fuels
- The Citric Acid Cycle: The Catabolism of Acetyl-CoA
- Glycolysis & the Oxidation of Pyruvate
- Metabolism of Glycogen
- Gluconeogenesis & the Control of Blood Glucose
- The Pentose Phosphate Pathway & Other Pathways of Hexose Metabolism
- Oxidation of Fatty Acids: Ketogenesis
- Biosynthesis of Fatty Acids & Eicosanoids
- Metabolism of Acylglycerols & Sphingolipids
- Lipid Transport & Storage
- Cholesterol Synthesis, Transport, & Excretion
- Biosynthesis of the Nutritionally Nonessential Amino Acids
- Catabolism of Proteins & of Amino Acid Nitrogen
- Catabolism of the Carbon Skeletons of Amino Acids
- Conversion of Amino Acids to Specialized Products
- Porphyrins & Bile Pigments
- Metabolism of Purine & Pyrimidine Nucleotides
- Nucleic Acid Structure & Function
- DNA Organization, Replication, & Repair
- RNA Synthesis, Processing, & Modification
- Protein Synthesis & the Genetic Code
- Regulation of Gene Expression
- Molecular Genetics, Recombinant DNA, & Genomic Technology
- Membranes: Structure & Function
- The Diversity of the Endocrine System
- Hormone Action & Signal Transduction
- Nutrition, Digestion, & Absorption
- Micronutrients: Vitamins & Minerals
- Free Radicals and Antioxidant Nutrients
- Intracellular Traffic & Sorting of Proteins
- The Extracellular Matrix
- Muscle & the Cytoskeleton
- Plasma Proteins & Immunoglobulins
- Hemostasis & Thrombosis
- Red & White Blood Cells
- Metabolism of Xenobiotics
- Biochemical Case Histories
ABOUT THE AUTHORS:
David A. Bender, PhD (London, UK) Professor (Emeritus) of Nutritional Biochemistry, University College London, London, United Kingdom.
Kathleen M. Botham, PhD, DSc, (London, UK) Professor of Biochemistry, Department of Comparative Biomedical Sciences, Royal Veterinary College, University of London, London, United Kingdom.
Peter J. Kennelly, PhD (Blacksburg, VA), Professor and Head, Department of Biochemistry, Virginia Tech, Blacksburg, Virginia.
P. Anthony Weil, PhD (Nashville, TN), Professor, Department of Molecular Physiology & Biophysics, Vanderbilt University, Nashville, Tennessee.
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