MARKS’ Basic Medical Biochemistry: A Clinical Approach 4th Edition by Michael A. Lieberman, Allan Marks – Ebook PDF Instant Download/Delivery. 160831572X, 9781451173567
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ISBN 10: 160831572X
ISBN 13: 9781451173567
Author: Michael A. Lieberman, Allan Marks
MARKS’ Basic Medical Biochemistry: A Clinical Approach 4th Edition: “Marks’ Basic Medical Biochemistry” takes a patient-oriented approach that links biochemistry to physiology and pathophysiology, allowing students to apply fundamental concepts to the practice of medicine-from diagnosing patients to recommending effective treatments. Intuitively organized chapters center on hypothetical patient vignettes and helpful icons allow for smooth navigation, making complex concepts easier to grasp! Access additional resources online with purchase of text! Instructors receive access to a dedicated Image Bank as well as all student features, which include fully searchable eBook; animations depicting 9 key biochemical concepts; interactive question bank with more than 450 USMLE questions and complete rationales; full patient summaries for each patient discussed in the text; comprehensive list of disorders covered in the text, with relevant web links; and, suggested readings for further exploration.
MARKS’ Basic Medical Biochemistry: A Clinical Approach 4th Edition Table of contents:
SECTION ONE: Fuel Metabolism
1: Metabolic Fuels and Dietary Components
2: The Fed or Absorptive State
3: Fasting
SECTION TWO: 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: Relationship between Cell Biology and Biochemistry
11: Cell Signaling by Chemical Messengers
SECTION THREE: Gene Expression and the Synthesis of Proteins
12: Structure of the Nucleic Acids
13: Synthesis of DNA
14: Transcription: Synthesis of RNA
15: Translation: Synthesis of Proteins
16: Regulation of Gene Expression
17: Use of Recombinant DNA Techniques in Medicine
18: The Molecular Biology of Cancer
SECTION FOUR: Fuel Oxidation and the Generation of Adenosine Triphosphate
19: Cellular Bioenergetics: ATP and O2
20: Tricarboxylic Acid Cycle
21: Oxidative Phosphorylation and Mitochondrial Function
22: Generation of Adenosine Triphosphate from Glucose: Glycolysis
23: Oxidation of Fatty Acids and Ketone Bodies
24: Oxygen Toxicity and Free Radical Injury
25: Metabolism of Ethanol
SECTION FIVE: Carbohydrate Metabolism
26: Basic Concepts in the Regulation of Fuel Metabolism by Insulin, Glucagon, and Other Hormones
27: Digestion, Absorption, and Transport of Carbohydrates
28: Formation and Degradation of Glycogen
29: Pathways of Sugar Metabolism: Pentose Phosphate Pathway, Fructose, and Galactose Metabolism
30: Synthesis of Glycosides, Lactose, Glycoproteins, and Glycolipids
31: Gluconeogenesis and Maintenance of Blood Glucose Levels
SECTION SIX: Lipid Metabolism
32: Digestion and Transport of Dietary Lipids
33: Synthesis of Fatty Acids, Triacylglycerols, and the Major Membrane Lipids
34: Cholesterol Absorption, Synthesis, Metabolism, and Fate
35: Metabolism of the Eicosanoids
36: Integration of Carbohydrate and Lipid Metabolism
SECTION SEVEN: Nitrogen Metabolism
37: Protein Digestion and Amino Acid Absorption
38: Fate of Amino Acid Nitrogen: Urea Cycle
39: Synthesis and Degradation of Amino Acids
40: Tetrahydrofolate, Vitamin B12, and S-Adenosylmethionine
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