《Biochemistry:A Textbook for Medical Students,2n Edition(英文版)》是我國高等醫(yī)學院校本科在華留學生和中、英雙語教學的生物化學教科書,內(nèi)容為醫(yī)學專業(yè)類學生應該掌握的基礎生物化學與分子生物學理論、基本知識和基本技能,同時也兼顧國家醫(yī)師執(zhí)業(yè)考試的要求。全書23章,內(nèi)容分三個板塊,分別包括蛋白質(zhì)、核酸、維生素、酶和糖復合物的結(jié)構(gòu)與功能;糖、脂、氨基酸、核苷酸和礦物質(zhì)的代謝,以及生物氧化、血液和肝臟的代謝特點和代謝的整合與調(diào)節(jié);DNA、RNA和蛋白質(zhì)的生物合成、DNA損傷與修復、DNA技術、基因組學與蛋白質(zhì)組學等組學,以及細胞信號轉(zhuǎn)導和癌基因、腫瘤抑制基因和生長因子。全書共有插圖342幅,表格67個。為了適應醫(yī)學教學改革的需要,彰顯醫(yī)學生用生物化學教科書的醫(yī)學專業(yè)特色,《Biochemistry:A Textbook for Medical Students,2n Edition(英文版)》第二版增添了生物化學與醫(yī)學聯(lián)系的知識框70個,在分子水平上對某些臨床醫(yī)學現(xiàn)象進行解讀?!禕iochemistry:A Textbook for Medical Students,2n Edition(英文版)》還特別注重在華留學生和雙語教學的需要.重要的英文專業(yè)名詞和術語均在其后標有相應的中文,并在書后附有名詞釋義,對重要的術語給出簡潔、準確的概念。各章后均有中、英文對照小結(jié)?!禕iochemistry:A Textbook for Medical Students,2n Edition(英文版)》適用于高等醫(yī)學院校基礎醫(yī)學、臨床醫(yī)學、預防醫(yī)學、口腔醫(yī)學等各專業(yè)本科在華留學生和中、英雙語教育的學生使用,也可作為從事本專業(yè)教師與研究人員的參考用書。
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圖書目錄
Introduction Chapter 1 Structures and Functions of Proteins 1.1 Amino Acid Composition in Proteins 1.2 Molecular Structure of Proteins 1.3 Structure-Function Relationship of Proteins 1.4 Classification of Proteins 1.5 Protein Physicochemical Properties and Protein Exploration Chapter 2 Structures and Functions of Nucleic Acids 2.1 Structural Units of Nucleic Acids——Nucleotides 2.2 Structures and Functions of DNA 2.3 Structures and Functions of RNA 2.4 Properties of Nucleic Acids 2.5 Nucleases Chapter 3 Vitamins 3.1 Fat-soluble Vitamins 3.2 Water-soluble Vitamins Chapter 4 Enzymes 4.1 Structure and Function of Enzymes 4.2 Properties and Catalytic Mechanisms of Enzymes 4.3 Kinetics of Enzyme-Catalyzed Reactions 4.4 Regulatory Enzymes 4.5 Nomenclature and Classification of Enzymes 4.6 Clinical Applications of Enzymes Chapter 5 Glycoconjugates 5.1 Molecular Structures of Glycans 5.2 Structures and Functions of Glycoproteins 5.3 Structures and Functions of Proteoglycans 5.4 Structures and Functions of Glycolipids Chapter 6 Biological Oxidation 6.1 Electron Transport Chain 6.2 Oxidative Phosphorylation 6.3 ATP and the Other High Energy Compounds 6.4 Selective Transport across the Inner Mitochondrial Membrane 6.5 Other Biological Oxidations Chapter 7 Carbohydrate Metabolism 7.1 Digestion and Absorption of Carbohydrates 7.2 Anaerobic Degradation of Glucose 7.3 Aerobic Oxidation of Glucose 7.4 Pentose Phosphate Pathway 7.5 Glycogen Formation and Degradation 7.6 Gluconeogenesis 7.7 Blood Sugar and Its Regulation Chapter 8 Lipid Metabolism 8.1 Fatty Acids and Derivatives of Polyunsaturated Fatty Acids 8.2 Digestion and Absorption of Lipids 8.3 Metabolism of Fats 8.4 Metabolism of Phospholipids 8.5 Metabolism of Cholesterol 8.6 Metabolism of Plasma Lipoproteins Chapter 9 Protein Catabolism 9.1 Nutritional Roles of Dietary Proteins 9.2 Digestion, Absorption and Putrefaction of Dietary Proteins 9.3 Degradation of Protein in Cells 9.4 General Catabolism of Amino Acids 9.5 Metabolism of Ammonia 9.6 Individual Amino Acid Catabolism Chapter 10 Nucleotide Metabolism 10.1 Biological and Medical Functions of Nucleotides 10.2 Degradation of Nucleic Acids 10.3 Metabolism of Purine Nucleotides 10.4 Metabolism of Pyrimidine Nucleotides 10.5 Deoxyribonucleotide Biosynthesis 10.6 Biosynthesis of Nucleoside Diphosphate and Nucleoside Triphosphate 10.7 Dysmetabolism of Nucleotides and Antimetabolites Chapter 11 Blood Biochemistry 11.1 Plasma Proteins 11.2 Structure and Function of Albumin 11.3 Synthesis of Hemoglobin and Its Regulation 11.4 Metabolism of Blood Cells Chapter 12 Liver Biochemistry 12.1 The Role of Liver in Material Metabolism 12.2 Hepatic Biotransformation 12.3 Metabolism of Bile Acid 12.4 Bile Pigment Metabolism and Jaundice Chapter 13 Mineral Biochemistry 13.1 Calcium, Phosphorus, and Magnesium Metabolism 13.2 Trace Elements Chapter 14 Integration and Regulation of Metabolism 14.1 Common Characteristics of Metabolism 14.2 Intereonnections of Metabolism 14.3 Metabolic Specializations of Some Organs 14.4 Regulatory Strategy of Metabolism Chapter 15 DNA Biosynthesis 15.1 General Features of DNA Replication 15.2 Enzymology and Topology of DNA Replication 15.3 Replication of Prokaryotic Systems 15.4 Replication of Eukaryotic Systems 15.5 Reverse Transcription and Other Modes of DNA Replication Chapter 16 DNA Damage and Repair 16.1 DNA Damage 16.2 Repair of DNA Damage 16.3 Significance of DNA Damage and Repair to DNA Damage Chapter 17 RNA Biosynthesis and Processing 17.1 Overview of Transcription 17.2 Transcription in Prokaryotes 17.3 Transcription in Eukaryotes 17.4 Processing of Eukaryotic RNAs Chapter 18 Protein Biosynthesis, Modification and Targeting 18.1 Machinery Involved in Translation 18.2 Amino Acid Activation 18.3 Protein Biosynthesis Journey 18.4 Protein Posttranslational Modifications and Targeting 18.5 Clinical Correlation of Protein Biosynthesis Chapter 19 Regulation of Gene Expression 19.1 General Characteristics of Gene Expression 19.2 Regulation of Gene Expression in Prokaryotes 19.3 Regulation of Gene Expression in Eukaryotes Chapter 20 DNA Technologies 20.1 Molecular Hybridization 20.2 DNA Sequencing 20.3 Polymerase Chain Reaction 20.4 Recombinant DNA Technology 20.5 Transgenesis and Gene Targeting 20.6 Gene Diagnosis and Gene Therapy Chapter 21 Signal Transduetion 21.1 Signal Molecules 21.2 Receptors 21.3 Signal Transduction Pathways 21.4 Signal Transduction Network 21.5 Signal Transduction and Medicine Chapter 22 Oncogenes, Tumor Suppressor Genes and Growth Factors 22.1 Oncogenes 22.2 Tumor Suppressor Genes 22.3 Growth Factors Chapter 23 Genomics, Proteomics, and Other Omics 23.1 Genomics 23.2 Proteomics 23.3 Other Omics 23.4 Omics and Medicine The Major References Index Glossary