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转移研究模型向转移芯片模型的发展:终极模型?

Evolution of Metastasis Study Models toward Metastasis-On-A-Chip: The Ultimate Model?

机构信息

Biopathology and Regenerative Medicine Institute (IBIMER), Centre for Biomedical Research (CIBM), University of Granada, Granada, E-18016, Spain.

Excellence Research Unit "Modeling Nature" (MNat), University of Granada, Granada, 18016, Spain.

出版信息

Small. 2021 Apr;17(14):e2006009. doi: 10.1002/smll.202006009. Epub 2021 Mar 11.

Abstract

For decades, several attempts have been made to obtain a mimetic model for the study of metastasis, the reason of most of deaths caused by cancer, in order to solve the unknown phenomena surrounding this disease. To better understand this cellular dissemination process, more realistic models are needed that are capable of faithfully recreating the entire and essential tumor microenvironment (TME). Thus, new tools known as tumor-on-a-chip and metastasis-on-a-chip have been recently proposed. These tools incorporate microfluidic systems and small culture chambers where TME can be faithfully modeled thanks to 3D bioprinting. In this work, a literature review has been developed about the different phases of metastasis, the remaining unknowns and the use of new models to study this disease. The aim is to provide a global vision of the current panorama and the great potential that these systems have for in vitro translational research on the molecular basis of the pathology. In addition, these models will allow progress toward a personalized medicine, generating chips from patient samples that mimic the original tumor and the metastatic process to perform a precise pharmacological screening by establishing the most appropriate treatment protocol.

摘要

几十年来,人们一直试图建立一个转移性的模拟模型,转移性是癌症导致大多数死亡的原因,以便解决围绕这种疾病的未知现象。为了更好地理解这个细胞扩散过程,需要更逼真的模型,能够忠实地重现整个必要的肿瘤微环境(TME)。因此,最近提出了一些被称为“芯片上肿瘤”和“芯片上转移”的新工具。这些工具结合了微流控系统和小培养室,可以通过 3D 生物打印忠实地模拟 TME。在这项工作中,对转移的不同阶段、仍然存在的未知因素以及使用新模型来研究这种疾病进行了文献回顾。目的是提供当前全景的整体视图以及这些系统在肿瘤病理学分子基础的体外转化研究方面的巨大潜力。此外,这些模型将允许朝着个性化医疗的方向发展,从患者样本中生成模拟原始肿瘤和转移过程的芯片,通过建立最合适的治疗方案来进行精确的药物筛选。

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