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首页> 外文期刊>American Journal of Cancer Research >Intravital microscopy in the mouse dorsal chamber model for the study of solid tumors
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Intravital microscopy in the mouse dorsal chamber model for the study of solid tumors

机译:小鼠背腔模型的活体显微镜检查,用于研究实体瘤

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Intra-Vital Microscopy (IVM) is used to visualize tumors in animals and analyze various aspects of cancer physiology such as tumor vascularization, cell migration and metastasis. The main advantages of IVM include the real -time analysis of dynamic processes with single-cell resolution. The application of IVM, however, is limited by the availability of animal models that carry visually accessible tumors. These models have evolved over time to become more and more relevant to human tumors. The latest step is the development of a pseudo-orthotopic, syngeneic model for tumor growth and metastasis. In this model, tissue from a variety of mouse organs are grafted in a dorsal skinfold chamber and allowed to revascularize, whereupon tumor cell spheroids are implanted. These spheroids develop into tumors that bear a much closer resemblance to human tumors than xenografts. Unlike xenografts, the vasculature is well-ordered and, because the model is syngeneic, there are no cross-species host immune reactions. The use of fluorescence-tagged pseudo-organs and tumor cells allows IVM analysis and provides real-time access to the development of tumors that closely resemble the real disease. This model can be used to test therapeutics and to image tumor development and stroma-tumor interactions.
机译:体内显微镜(IVM)用于可视化动物中的肿瘤,并分析癌症生理学的各个方面,例如肿瘤血管形成,细胞迁移和转移。 IVM的主要优点包括使用单单元分辨率实时分析动态过程。但是,IVM的应用受到携带视觉上可及的肿瘤的动物模型的可用性的限制。这些模型随着时间的流逝而发展,与人类肿瘤越来越相关。最新的步骤是开发用于肿瘤生长和转移的假原位,同基因模型。在该模型中,将来自多种小鼠器官的组织移植到背部皮褶室中并进行血管重建,然后植入肿瘤细胞球体。这些球状体发展成为肿瘤,与异种移植相比,其与人类肿瘤的相似性更高。与异种移植不同,脉管系统是有序的,并且由于该模型是同源的,因此没有跨物种的宿主免疫反应。带有荧光标记的假器官和肿瘤细胞的使用可以进行IVM分析,并提供实时访问与真实疾病极为相似的肿瘤发展的通道。该模型可用于测试治疗剂并成像肿瘤发展和基质-肿瘤相互作用。

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