Experimental models for cancer brain metastasis

Zihao Liu , Shanshan Dong , Mengjie Liu , Yuqiang Liu , Zhiming Ye , Jianhao Zeng , Maojin Yao
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Abstract

Brain metastases are a leading cause of cancer-related mortality. However, progress in their treatment has been limited over the past decade, due to an incomplete understanding of the underlying biological mechanisms. Employing accurate in vitro and in vivo models to recapitulate the complexities of brain metastasis offers the most promising approach to unravel the intricate cellular and physiological processes involved. Here, we present a comprehensive review of the currently accessible models for studying brain metastasis. We introduce a diverse array of in vitro and in vivo models, including cultured cells using the Transwell system, organoids, microfluidic models, syngeneic models, xenograft models, and genetically engineered models. We have also provided a concise summary of the merits and limitations inherent to each model while identifying the optimal contexts for their effective utilization. This review serves as a comprehensive resource, aiding researchers in making well-informed decisions regarding model selection that align with specific research questions.

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癌症脑转移实验模型
脑转移是癌症相关死亡的主要原因。然而,在过去十年中,由于对其潜在的生物机制了解不全面,脑转移瘤的治疗进展有限。采用精确的体外和体内模型来再现脑转移的复杂性,为揭示其中错综复杂的细胞和生理过程提供了最有希望的方法。在此,我们对目前可用于研究脑转移的模型进行了全面回顾。我们介绍了各种体外和体内模型,包括使用 Transwell 系统培养的细胞、有机体、微流体模型、同种异体移植模型和基因工程模型。我们还简明扼要地总结了每种模型固有的优点和局限性,同时确定了有效利用这些模型的最佳环境。这篇综述是一份全面的资料,有助于研究人员根据具体的研究问题在选择模型时做出明智的决定。
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来源期刊
Cancer pathogenesis and therapy
Cancer pathogenesis and therapy Surgery, Radiology and Imaging, Cancer Research, Oncology
CiteScore
0.80
自引率
0.00%
发文量
0
审稿时长
54 days
期刊最新文献
Table of Contents Cover Corrigendum to “Gene mutations in newly diagnosed multiple myeloma patients detected by next-generation sequencing technology” [Cancer Pathog Ther. 2024;2:205–211] Table of Contents Current and future perspectives on the regulation and functions of miR-545 in cancer development
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