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小鼠与模型:用于生物医学研究的改进动物模型

Of mice and models: improved animal models for biomedical research.

作者信息

Bockamp Ernesto, Maringer Marko, Spangenberg Christian, Fees Stephan, Fraser Stuart, Eshkind Leonid, Oesch Franz, Zabel Bernhard

机构信息

Laboratory of Molecular Mouse Genetics, Institute of Toxicology, Johannes Gutenberg-University Mainz, D-55131 Mainz, Germany.

出版信息

Physiol Genomics. 2002 Dec 3;11(3):115-32. doi: 10.1152/physiolgenomics.00067.2002.

Abstract

The ability to engineer the mouse genome has profoundly transformed biomedical research. During the last decade, conventional transgenic and gene knockout technologies have become invaluable experimental tools for modeling genetic disorders, assigning functions to genes, evaluating drugs and toxins, and by and large helping to answer fundamental questions in basic and applied research. In addition, the growing demand for more sophisticated murine models has also become increasingly evident. Good state-of-principle knowledge about the enormous potential of second-generation conditional mouse technology will be beneficial for any researcher interested in using these experimental tools. In this review we will focus on practice, pivotal principles, and progress in the rapidly expanding area of conditional mouse technology. The review will also present an internet compilation of available tetracycline-inducible mouse models as tools for biomedical research (http://www.zmg.uni-mainz.de/tetmouse/).

摘要

对小鼠基因组进行工程改造的能力已深刻改变了生物医学研究。在过去十年中,传统的转基因和基因敲除技术已成为用于模拟遗传疾病、确定基因功能、评估药物和毒素以及总体上帮助回答基础和应用研究中基本问题的宝贵实验工具。此外,对更复杂小鼠模型的需求增长也日益明显。对于任何有兴趣使用这些实验工具的研究人员来说,深入了解第二代条件性小鼠技术的巨大潜力将大有裨益。在本综述中,我们将聚焦于条件性小鼠技术快速发展领域的实践、关键原理和进展。本综述还将展示一个可用于生物医学研究的四环素诱导型小鼠模型的互联网汇编(http://www.zmg.uni-mainz.de/tetmouse/)。

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