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Animal models and therapeutic molecular targets of cancer: utility and limitations

机译:癌症的动物模型和治疗性分子靶标:效用和局限性

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Abstract: Cancer is the term used to describe over 100 diseases that share several common hallmarks. Despite prevention, early detection, and novel therapies, cancer is still the second leading cause of death in the USA. Successful bench-to-bedside translation of basic scientific findings about cancer into therapeutic interventions for patients depends on the selection of appropriate animal experimental models. Cancer research uses animal and human cancer cell lines in vitro to study biochemical pathways in these cancer cells. In this review, we summarize the important animal models of cancer with focus on their advantages and limitations. Mouse cancer models are well known, and are frequently used for cancer research. Rodent models have revolutionized our ability to study gene and protein functions in vivo and to better understand their molecular pathways and mechanisms. Xenograft and chemically or genetically induced mouse cancers are the most commonly used rodent cancer models. Companion animals with spontaneous neoplasms are still an underexploited tool for making rapid advances in human and veterinary cancer therapies by testing new drugs and delivery systems that have shown promise in vitro and in vivo in mouse models. Companion animals have a relatively high incidence of cancers, with biological behavior, response to therapy, and response to cytotoxic agents similar to those in humans. Shorter overall lifespan and more rapid disease progression are factors contributing to the advantages of a companion animal model. In addition, the current focus is on discovering molecular targets for new therapeutic drugs to improve survival and quality of life in cancer patients.
机译:摘要:癌症是用于描述100多种具有共同特征的疾病。尽管有预防,早期发现和新颖疗法,癌症仍是美国第二大死亡原因。将有关癌症的基本科学发现成功地从病床到病床的转化为患者的治疗干预措施,取决于选择合适的动物实验模型。癌症研究使用体外的动物和人类癌细胞系来研究这些癌细胞中的生化途径。在这篇综述中,我们总结了重要的癌症动物模型,重点关注它们的优势和局限性。小鼠癌症模型是众所周知的,并且经常用于癌症研究。啮齿动物模型彻底改变了我们研究体内基因和蛋白质功能并更好地了解其分子途径和机制的能力。异种移植和化学或遗传诱导的小鼠癌症是最常用的啮齿动物癌症模型。带有自发性肿瘤的伴侣动物仍然是未开发的工具,可以通过测试在小鼠模型中体内和体外显示出希望的新药物和递送系统,在人和兽医癌症治疗中取得快速进展。伴侣动物具有相对较高的癌症发病率,其生物学行为,对治疗的反应以及对细胞毒剂的反应与人类相似。较短的整体寿命和较快的疾病进展是造成伴侣动物模型优点的因素。此外,当前的重点是发现新型治疗药物的分子靶标,以改善癌症患者的生存率和生活质量。

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