基于尾静脉高压注射-转座子介导的原发性小鼠肝癌模型方法及其应用进展
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1.杭州医学院;2.绍兴第二医院医共体总院

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浙江省自然科学基金资助项目(LMS25H160004),浙江省医药卫生科技项目(2023KY650)。


The method of primary mouse liver cancer model based on hydrodynamic tail vein injection combined with transposon system and its application progress
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Affiliation:

1.HANGZHOU MEDICAL COLLEGE;2.Shaoxing No.2 Hospital Medical Community General Hospital

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Funded by Zhejiang Natural Science Foundation (LMS25H160004) and Zhejiang medical and health science and technology project (2023KY650).

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    摘要:

    小鼠因其基因组与人类高度相似、繁殖能力强、模型构建成本低以及易于基因操作等优势,被广泛应用于原发性肝癌的研究中,包括发病的分子机制和潜在的药物靶点等方面。传统动物模型因无法复现肿瘤微环境互作、控制分子亚型特异性等缺陷,日益难以满足精准医学研究需求。本文系统比较尾静脉高压注射联合转座子系统(HTVI-TS)的技术与传统模型在肝癌研究中的技术优势,并重点探讨HTVI-TS模型在肿瘤发生发展机制研究、免疫治疗响应预测、靶向药物个体化评估中的应用价值,揭示其通过模拟肝癌异质性进化过程为精准诊疗提供的全新研究平台。本文为优化肝癌临床前研究模型选择提供理论依据,并展望该技术在肝癌研究中的拓展潜力。

    Abstract:

    Mice have been widely used in the study of primary liver cancer due to their high similarity of genome to human, strong reproductive ability, low cost of model construction, and easy genetic manipulation, including molecular mechanisms of pathogenesis and potential drug targets. Traditional animal models are increasingly difficult to meet the needs of precision medicine research due to their inability to reproduce tumor microenvironment interactions and control the specificity of molecular subtypes. This paper systematically compared the technical advantages of tail vein high-pressure injection combined transposon system (HTVI-TS) with traditional models in liver cancer research, and focused on the application value of HTVI-TS model in the mechanism study of tumorigenesis and development, immunotherapy response prediction, and individualized evaluation of targeted drugs. This paper reveals a new research platform for precise diagnosis and treatment by simulating the heterogeneous evolution process of liver cancer. This paper provides a theoretical basis for optimizing the selection of preclinical research models for liver cancer, and looks forward to the expansion potential of this technology in liver cancer research.

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  • 收稿日期:2025-04-03
  • 最后修改日期:2025-05-12
  • 录用日期:2025-08-07
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