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Concise review: Humanized models of tumor immunology in the 21st century: Convergence of cancer research and tissue engineering

机译:简要综述:21世纪的肿瘤免疫学人性化模型:癌症研究与组织工程的融合

摘要

Despite positive testing in animal studies, more than 80% of novel drug candidates fail to proof their efficacy when tested in humans. This is primarily due to the use of preclinical models that are not able to recapitulate the physiological or pathological processes in humans. Hence, one of the key challenges in the field of translational medicine is to “make the model organism mouse more human.” To get answers to questions that would be prognostic of outcomes in human medicine, the mouse's genome can be altered in order to create a more permissive host that allows the engraftment of human cell systems. It has been shown in the past that these strategies can improve our understanding of tumor immunology. However, the translational benefits of these platforms have still to be proven. In the 21st century, several research groups and consortia around the world take up the challenge to improve our understanding of how to humanize the animal's genetic code, its cells and, based on tissue engineering principles, its extracellular microenvironment, its tissues, or entire organs with the ultimate goal to foster the translation of new therapeutic strategies from bench to bedside. This article provides an overview of the state of the art of humanized models of tumor immunology and highlights future developments in the field such as the application of tissue engineering and regenerative medicine strategies to further enhance humanized murine model systems.
机译:尽管在动物研究中进行了积极的测试,但超过80%的新药候选物在人体中测试时仍无法证明其功效。这主要是由于使用了无法概括人类生理或病理过程的临床前模型。因此,转化医学领域的主要挑战之一是“使模型生物小鼠更具人性化”。为了获得对人类医学预后有疑问的问题的答案,可以改变小鼠的基因组,以创建允许人体细胞移植的更宽松的宿主。过去已经表明,这些策略可以改善我们对肿瘤免疫学的理解。但是,这些平台的翻译优势尚待证明。在21世纪,世界各地的几个研究小组和财团接受了挑战,以提高我们对如何使动物的遗传密码,其细胞以及基于组织工程原理,其细胞外微环境,其组织或整个器官的人性化的理解最终目的是促进从长凳到床头的新治疗策略的转换。本文概述了肿瘤免疫学人源化模型的最新技术,并重点介绍了该领域的未来发展,例如组织工程学和再生医学策略的应用,以进一步增强人源化鼠模型系统。

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