Hepatotoxicity : from genomics to in vitro and in vivo models

Hepatotoxicity : from genomics to in vitro and in vivo models
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肝毒性:从基因组学到体外和体内模型

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发表时间:
2007
期刊:
影响因子:
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通讯作者:
S. Sahu
S. Sahu
中科院分区:
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文献类型:
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作者:
S. Sahu

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贡献者。前言。致谢。第 1 部分:肝毒性测试模型。 1 目前研究药物性肝损伤的体外模型(Julio C. Davila、Jinghai J. Xu、Keith A. Hoffmaster、Peter J. O'Brien 和 Stephen C. Storm)。 2 在药物发现的早期阶段利用体外肝毒性测试(Ikuo Horii、Hiroshi Yamada、Rie Kikkawa、Toshinori Yamamoto、Tamio Fukushima 和 Kaori Tomizawa)。 3 使用肝细胞表征候选药物的代谢和药物相互作用潜力(Srikanth C. Nallani、John M. Strong 和 Shiew Mei Huang)。 4 用于评估人类药物安全性的人体体外实验系统(Albert P. Li)。 5 肝细胞作为筛选食物相关肝毒素并研究其毒性机制的模型 (Saura C. Sahu)。 6 一些肝损伤实验模型(Pablo Muriel)。第 2 部分:肝细胞培养。 7 应用短期和长期肝细胞培养来预测毒性(Gregor Tuschl、Jens Hrach、Philip G. Hewitt 和 Stefan O. Mueller)。第 3 部分:肝毒性生物标志物。 8 肝脏毒性中霉菌毒素暴露的生物标志物 (Angela J. Harris)。第 4 部分:肝毒性机制。 9 中毒性肝损伤的机制(Nora Anderson 和 J.urgen Borlak)。 10 细胞色素 P450 在醌诱导的肝毒性中的作用(Yasuhiro Ishihara 和 Norio Shimamoto)。 11 曲格列酮肝毒性的机制观点(Rawiwan Maniratanachote 和 Tsuyoshi Yokoi)。 12 库普弗细胞在肝毒性和肝癌发生中的作用(James E. Klaunig、Stacy M. Corthals、Lisa M. Kamendulis 和 Binu K. Philip)。 13 肝损伤和修复中的正弦细胞(Carol R. Gardner 和 Debra L. Laskin)。 14 肝脏疾病中的细胞因子(Pablo Muriel)。 15 胆汁酸作为细胞凋亡调节剂(Rui E. Castro、Susana Sol'a、Clifford J. Steer 和 Cec'ilia M.P. Rodrigues)。 16 药物与肝胆汁盐输出泵 (BSEP) 相互作用引起的肝内胆汁淤积(Christoph Funk、Johannes No'e、Ren'ee Portmann、Ruben Alvarez-S'anchez、Florian Klammers、Christiane Lamy、Axel Paehler 和 Michael Pantze)。第 5 部分:肝毒性的基因组学。 17 毒理基因组学在预测肝毒性中的应用 - 潜力和挑战(Wen Lin、Guoyang Shen、Tin Oo Khor 和 Ah-Ng Tony Kong)。 18 肝损伤的基因组分析(Kevin Gerrish 和 David E. Malarkey)。 19 使用 DNA 阵列了解肝脏测试系统(Angela J. Harris 和 Daniel A. Casciano)。 20 基于毒理学数据库的肝毒性预测(Tetsuro Urushidani)。 21 N-乙酰转移酶-2 基因多态性与异烟肼诱导的肝毒性之间的关系(Yasuo Shimizu、Kunio Dobashi 和 Masatomo Mori)。第 6 节:肝毒性的性别差异。 22 人类和动物肝脏异生物质代谢和毒性的差异(Peter J. O'Brien、Katie Chan 和 Raymond J. Poon)。第 7 节:肝毒性和肝癌致癌性。 23 肿瘤药物开发中的肝毒性(Wei Chen、Kenneth Hastings 和 John K. Leighton)。 24 强效大鼠肝癌物质甲基吡啶:关于其肝毒理学的假设(Daniel A. Casciano)。第 8 节:肝毒性和植物补充剂。 25 植物补充剂和肝毒性(Shabana Khan、Ikhlas Khan 和 Larry Walker)。第 9 节:肝毒素的风险分析。 26 基于生理学的药代动力学模型和肝毒物风险评估 (Kannan Krishnan)。指数。
Contributors. Preface. Acknowledgements. SECTION 1: MODELS FOR HEPATOTOXICITY TESTING. 1 Current in vitro Models to Study Drug-Induced Liver Injury (Julio C. Davila, Jinghai J. Xu, Keith A. Hoffmaster, Peter J. O'Brien and Stephen C. Storm). 2 Utilization of an in vitro Hepatotoxicity Test in the Early Stage of Drug Discovery (Ikuo Horii, Hiroshi Yamada, Rie Kikkawa, Toshinori Yamamoto, Tamio Fukushima and Kaori Tomizawa). 3 Use of Hepatocytes for Characterizing a Candidate Drug's Metabolism and Drug Interaction Potential (Srikanth C. Nallani, John M. Strong and Shiew Mei Huang). 4 Human-Based in vitro Experimental Systems for the Evaluation of Human Drug Safety (Albert P. Li). 5 Hepatocytes as a Model for Screening Food-Related Hepatotoxins and Studying Mechanisms of their Toxicity (Saura C. Sahu). 6 Some Experimental Models of Liver Damage (Pablo Muriel). SECTION 2: HEPATOCYTE CULTURES. 7 Application of Short- and Long-Term Hepatocyte Cultures to Predict Toxicities (Gregor Tuschl, Jens Hrach, Philip G. Hewitt and Stefan O. Mueller). SECTION 3: BIOMARKERS OF HEPATOTOXICITY. 8 Biomarkers of Mycotoxin Exposure in Liver Toxicity (Angela J. Harris). SECTION 4: MECHANISMS OF HEPATOTOXICITY. 9 Mechanisms of Toxic Liver Injury (Nora Anderson and J..urgen Borlak). 10 A Role of Cytochrome P450 in Quinone-Induced Hepatotoxicity (Yasuhiro Ishihara and Norio Shimamoto). 11 A Mechanistic View of Troglitazone Hepatotoxicity (Rawiwan Maniratanachote and Tsuyoshi Yokoi). 12 Role of the Kupffer Cell in Hepatotoxicity and Hepatocarcinogenesis (James E. Klaunig, Stacy M. Corthals, Lisa M. Kamendulis and Binu K. Philip). 13 Sinusoidal Cells in Liver Injury and Repair (Carol R. Gardner and Debra L. Laskin). 14 Cytokines in Liver Diseases (Pablo Muriel). 15 Bile Acids as Modulators of Apoptosis (Rui E. Castro, Susana Sol'a, Clifford J. Steer and Cec'ilia M.P. Rodrigues). 16 Drug-Induced Intrahepatic Cholestasis by Interaction with the Hepatic Bile Salt Export Pump (BSEP) (Christoph Funk, Johannes No'e, Ren'ee Portmann, Ruben Alvarez-S'anchez, Florian Klammers, Christiane Lamy, Axel Paehler and Michael Pantze). SECTION 5: GENOMICS OF HEPATOTOXICITY. 17 Application of Toxicogenomics in Predicting Hepatotoxicity - Potentials and Challenges (Wen Lin, Guoxiang Shen, Tin Oo Khor and Ah-Ng Tony Kong). 18 Genomic Profiling of Liver Injury (Kevin Gerrish and David E. Malarkey). 19 Use of DNA Arrays in Understanding Hepatic Test Systems (Angela J. Harris and Daniel A. Casciano). 20 Prediction of Hepatotoxicity Based on the Toxicogenomics Database (Tetsuro Urushidani). 21 Relationship between N-acetyltransferase-2 Gene Polymorphism and Isoniazid-Induced Hepatotoxicity (Yasuo Shimizu, Kunio Dobashi and Masatomo Mori). SECTION 6: GENDER DIFFERENCES IN HEPATOTOXICITY. 22 Human and Animal-Based Differences in Hepatic Xenobiotic Metabolism and Toxicity (Peter J. O'Brien, Katie Chan and Raymond J. Poon). SECTION 7: HEPATOTOXICITY AND HEPATOCARCINOGENICITY. 23 Hepatotoxicity in Oncology Drug Development (Wei Chen, Kenneth Hastings and John K. Leighton). 24 The Potent Rat Hepatocarcinogen Methapyrilene: An Hypothesis Regarding its Hepatotoxicology (Daniel A. Casciano). SECTION 8: HEPATOTOXICITY AND BOTANICAL SUPPLEMENTS. 25 Botanical Supplements and Hepatotoxicity (Shabana Khan, Ikhlas Khan and Larry Walker). SECTION 9: RISK ANALYSIS OF HEPATOTOXINS. 26 Physiologically Based Pharmokinetic Modeling and Risk Assessment of Hepatotoxicants (Kannan Krishnan). Index.