Marks' Basic Medical Biochemistry
Kaup valmöguleikar
Marks’ Basic Medical Biochemistry: A Clinical Approach, 6th Edition tengir lífefnafræði við lífeðlisfræði og meinalífeðlisfræði og gerir nemendum kleift að beita grundvallarhugtökum af öryggi í læknisfræði, allt frá greiningu sjúkdóma til ráðlegginga um árangursríka meðferð. Þessi sannreynda og hagnýta nálgun tengir umfjöllun um lífefnafræði við viðeigandi klínísk hugtök og styður þannig frá upphafi við skilning nemenda í klínísku samhengi.
Marks’ Basic Medical Biochemistry: A Clinical Approach, 6th Edition links biochemistry to physiology and pathophysiology, empowering students to confidently apply fundamental concepts to the practice of medicine — from diagnosing patients to recommending effective treatments. This proven, application-centered approach builds biochemical coverage around related clinical concepts to anchor students’ understanding to a clinical context from day one.
Nánar um bókina
- Wolters Kluwer Health
- 9781975283797
- 9781975174712
- ePub
- 6
- Michael Lieberman; Alisa Peet
- English
- 2022-08-15
- 10
- 2
- 2
Kaflar
- Cover
- Halftitle Page
- Title Page
- Copyright Page
- Preface to the Sixth Edition
- How to Use This Book
- Acknowledgments
- Reviewers
- Contents
- SECTION I Fuel Metabolism
- 1 Metabolic Fuels and Dietary Components
- 2 The Fed or Absorptive State
- 3 Fasting
- SECTION II Chemical and Biologic Foundations of Biochemistry
- 4 Water, Acids, Bases, and Buffers
- 5 Structures of the Major Compounds of the Body
- 6 Amino Acids in Proteins
- 7 Structure–Function Relationships in Proteins
- 8 Enzymes as Catalysts
- 9 Regulation of Enzymes
- 10 Cell Structure and Signaling by Chemical Messengers
- 11 Structure of the Nucleic Acids
- SECTION III Gene Expression and the Synthesis of Proteins
- 12 Synthesis of DNA
- 13 Transcription: Synthesis of RNA
- 14 Translation: Synthesis of Proteins
- 15 Regulation of Gene Expression
- 16 Use of Recombinant DNA Techniques in Medicine
- 17 The Molecular Biology of Cancer
- 18 An Introduction to Human Genetics
- SECTION IV Carbohydrate Metabolism, Fuel Oxidation, and the Generation of Adenosine Triphosphate
- 19 Basic Concepts in the Regulation of Fuel Metabolism by Insulin, Glucagon, and Other Hormones
- 20 Cellular Bioenergetics: Adenosine Triphosphate and O2
- 21 Digestion, Absorption, and Transport of Carbohydrates
- 22 Generation of Adenosine Triphosphate from Glucose, Fructose, and Galactose: Glycolysis
- 23 Tricarboxylic Acid Cycle
- 24 Oxidative Phosphorylation and Mitochondrial Function
- 25 Oxygen Toxicity and Free-Radical Injury
- 26 Formation and Degradation of Glycogen
- 27 Pentose Phosphate Pathway and the Synthesis of Glycosides, Lactose, Glycoproteins, and Glycolipids
- 28 Gluconeogenesis and Maintenance of Blood Glucose Levels
- SECTION V Lipid Metabolism
- 29 Digestion and Transport of Dietary Lipids
- 30 Oxidation of Fatty Acids and Ketone Bodies
- 31 Synthesis of Fatty Acids, Triacylglycerols, and the Major Membrane Lipids
- 32 Cholesterol Absorption, Synthesis, Metabolism, and Fate
- 33 Metabolism of Ethanol
- 34 Integration of Carbohydrate and Lipid Metabolism
- SECTION VI Nitrogen Metabolism
- 35 Protein Digestion and Amino Acid Absorption
- 36 Fate of Amino Acid Nitrogen: Urea Cycle
- 37 Synthesis and Degradation of Amino Acids
- 38 Tetrahydrofolate, Vitamin B12, and S-Adenosylmethionine
- 39 Purine and Pyrimidine Metabolism
- 40 Intertissue Relationships in the Metabolism of Amino Acids
- SECTION VII Tissue Metabolism
- 41 Actions of Hormones That Regulate Fuel Metabolism
- 42 The Biochemistry of Erythrocytes and Other Blood Cells
- 43 Blood Plasma Proteins, Coagulation, and Fibrinolysis
- 44 Liver Metabolism
- 45 Metabolism of Muscle at Rest and during Exercise
- 46 Metabolism of the Nervous System
- 47 The Extracellular Matrix and Connective Tissue
- Patient Index
- Subject Index