Beschreibung
<p><strong><em>Integrates biochemical, molecular, and cellular health and disease processes into one essential text!</em></strong></p><p><cite>Biochemistry, Cell and Molecular Biology, and Genetics: An Integrated Textbook</cite> by Zeynep Gromley and Adam Gromley is the first to cover molecular biology, cell biology, biochemistry (metabolism), and genetics in one comprehensive yet concise resource. Throughout the book, these topics are linked to other basic medical sciences, such as pharmacology, physiology, pathology, immunology, microbiology, and histology, for a truly integrated approach.</p><p><strong>Key Highlights</strong><ul><li>Easy-to-read text enhances understanding of underlying molecular mechanisms of disease</li><li>Nearly 500 illustrations and tables help reinforce chapter learning objectives</li><li>Textboxes throughout make connections with other preclinical disciplines</li><li>End of unit high-order clinical vignette questions with succinct explanations help integrate basic science topics with clinical medicine</li></ul></p><p>This textbook provides a robust review for medical students preparing for courses as well as exams. Dental, pharmacy, physician's assistant, nursing, and graduate students in pre-professional/bridge programs will also find this a beneficial learning tool.</p><p>This book includes complimentary access to a digital copy on<a href="https://medone.thieme.com">https://medone.thieme.com.</a></p>
Inhalt
<p><strong>Part I</strong><br>1. Anatomy of the Cell and Organelles<br>2. DNA Replication, Gene Mutations, and Repair<br>3. Transcription and Regulation of Transcription<br>4. Translation and Regulation of Translation<br><strong>Part II</strong><br>5. Cytoskeleton<br>6. Protein Sorting, Modifications, and Intracellular Traffic<br>7. Membrane Transport<br>8. Extracellular Matrix<br>9. Cell Adhesion and Membrane Junctions<br>10. Signal Transduction<br>11. Cell Cycle and Control of the Cell Cycle<br>12. Stem Cells and Hematopoiesis<br>13. Cell Injury, Apoptosis, and Necrosis<br>14. Hallmarks of Cancer and Cancer Biology<br>15. Molecular Principles of Cancer Treatments and Therapies<br><strong>Part III</strong><br>16. Enzymes and Enzyme Kinetics<br>17. Regulation of Enzyme Activity<br>18. Structure and Function of Proteins<br>19. Molecular and Biological Techniques<br>20. Plasma Proteins and the Diagnostic Use of Enzymes<br><strong>Part IV</strong><br>21. Digestion and Absorption of Carbohydrates<br>22. Glycolysis<br>23. Metabolism of Fructose, Galactose and the Pentose Phosphate Pathway (HMP Shunt)<br>24. Glycogen Metabolism and Regulation<br>25. Gluconeogenesis<br>26. Pyruvate Dehydrogenase and Tricarboxylic Acid (TCA) Cycle<br>27. Electron Transport Chain (ETC) and Oxidative Phosphorylation<br>28. Oxygen Toxicity and Antioxidants<br>29. Oxidation of Fatty Acids and Ketogenesis<br>30. Acid Base Chemistry and Acid Base Disorders<br>31. Glucose Homeostasis and Maintenance of Blood Glucose Concentrations<br><strong>Part V</strong><br>32. Digestion and Absorption of Proteins<br>33. Nitrogen Metabolism<br>34. Amino Acid Metabolism<br>35. Amino Acid Derivatives<br>36. Porphyrin Heme Metabolism and Iron Homeostasis<br>37. Nucleotide Metabolism<br>38. Vitamins in One-Carbon Metabolism<br><strong>Part VI</strong><br>39. Digestion and Absorption of Lipids<br>40. Synthesis of Fatty Acids and Triacylglycerols<br>41. Metabolism of Membrane Lipids and Lipid Derivatives<br>42. Cholesterol Metabolism<br>43. Blood Lipoproteins<br>44. Steroid Hormones and Vitamin D<br>45. Nutrition and Metabolism<br>46. Vitamins and Minerals<br><strong>Part VII</strong><br>47. DNA Packaging and Meiosis<br>48. Cytogenetics: Chromosomal Basis of Human Diseases<br>49. Single Gene Disorders: Autosomal Dominant and Recessive Inheritance<br>50. Sex-Linked and Non-Traditional Modes of Inheritance<br>51. Population Genetics<br>52. Genomic Imprinting and Epigenetics<br>53. Gene Interactions and Multifactorial Inheritance<br>54. Personalized Medicine<br>55. Developmental Genetics<br>56. Cancer Genetics</p>
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