Genetically modified mice for research on human diseases: A triumph for Biotechnology or a work in progress?

IF 1.2 Q3 MULTIDISCIPLINARY SCIENCES The EuroBiotech Journal Pub Date : 2022-04-01 DOI:10.2478/ebtj-2022-0008
Richard E. Brown
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Abstract

Abstract Genetically modified mice are engineered as models for human diseases. These mouse models include inbred strains, mutants, gene knockouts, gene knockins, and ‘humanized’ mice. Each mouse model is engineered to mimic a specific disease based on a theory of the genetic basis of that disease. For example, to test the amyloid theory of Alzheimer’s disease, mice with amyloid precursor protein genes are engineered, and to test the tau theory, mice with tau genes are engineered. This paper discusses the importance of mouse models in basic research, drug discovery, and translational research, and examines the question of how to define the “best” mouse model of a disease. The critiques of animal models and the caveats in translating the results from animal models to the treatment of human disease are discussed. Since many diseases are heritable, multigenic, age-related and experience-dependent, resulting from multiple gene-gene and gene-environment interactions, it will be essential to develop mouse models that reflect these genetic, epigenetic and environmental factors from a developmental perspective. Such models would provide further insight into disease emergence, progression and the ability to model two-hit and multi-hit theories of disease. The summary examines the biotechnology for creating genetically modified mice which reflect these factors and how they might be used to discover new treatments for complex human diseases such as cancers, neurodevelopmental and neurodegenerative diseases.
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用于人类疾病研究的转基因小鼠:生物技术的胜利还是进展中的工作?
转基因小鼠被设计为人类疾病的模型。这些小鼠模型包括近交系、突变体、基因敲除、基因敲除和“人源化”小鼠。每个老鼠模型都是根据疾病的遗传基础理论来模拟一种特定的疾病。例如,为了测试阿尔茨海默病的淀粉样蛋白理论,对具有淀粉样前体蛋白基因的小鼠进行了工程设计,为了测试tau理论,对具有tau基因的小鼠进行了工程设计。本文讨论了小鼠模型在基础研究、药物发现和转化研究中的重要性,并探讨了如何定义疾病的“最佳”小鼠模型的问题。讨论了对动物模型的批评和将动物模型的结果转化为人类疾病治疗的注意事项。由于许多疾病是遗传的、多基因的、年龄相关的和经验依赖的,是由多基因-基因和基因-环境相互作用造成的,因此从发育角度建立反映这些遗传、表观遗传和环境因素的小鼠模型将是至关重要的。这些模型将进一步深入了解疾病的发生、发展,并能够对疾病的双重打击和多重打击理论进行建模。摘要研究了用于创造反映这些因素的转基因小鼠的生物技术,以及如何将它们用于发现治疗复杂人类疾病(如癌症、神经发育和神经退行性疾病)的新方法。
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来源期刊
The EuroBiotech Journal
The EuroBiotech Journal Agricultural and Biological Sciences-Food Science
CiteScore
3.60
自引率
0.00%
发文量
17
审稿时长
10 weeks
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