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用于研究胶质母细胞瘤侵袭性及在可拆卸组装微流控装置上进行药物评估的工程化3D肿瘤模型。

Engineered 3D tumour model for study of glioblastoma aggressiveness and drug evaluation on a detachably assembled microfluidic device.

作者信息

Ma Jingyun, Li Na, Wang Yachen, Wang Liang, Wei Wenjuan, Shen Liming, Sun Yu, Jiao Yang, Chen Weigong, Liu Jing

机构信息

Regenerative Medicine Center, The First Affiliated Hospital of Dalian Medical University, Dalian, 116011, China.

Stem Cell Clinical Research Center, The First Affiliated Hospital of Dalian Medical University, Dalian, China.

出版信息

Biomed Microdevices. 2018 Sep 6;20(3):80. doi: 10.1007/s10544-018-0322-4.

Abstract

3D models of tumours have emerged as an advanced technique in pharmacology and tumour cell biology, in particular for studying malignant tumours such as glioblastoma multiforme (GBM). Herein, we developed a 3D GBM model on a detachably assembled microfluidic device, which could be used to study GBM aggressiveness and for anti-GBM drug testing. Fundamental characteristics of the GBM microenvironment in terms of 3D tissue organisation, extracellular matrices and blood flow were reproduced in vitro by serial manipulations in the integrated microfluidic device, including GBM spheroid self-assembly, embedding in a collagen matrix, and continuous perfusion culture, respectively. We could realize multiple spheroids parallel manipulation, whilst, compartmentalized culture, in a highly flexible manner. This method facilitated investigations into the viability, proliferation, invasiveness and phenotype transition of GBM in a 3D microenvironment and under continuous stimulation by drugs. Anti-invasion effect of resveratrol, a naturally isolated polyphenol, was innovatively evaluated using this in vitro 3D GBM model. Temozolomide and the combination of resveratrol and temozolomide were also evaluated as control. This scalable model enables research into GBM in a more physiologically relevant microenvironment, which renders it promising for use in translational or personalised medicine to examine the impact of, or identify combinations of, therapeutic agents.

摘要

肿瘤的三维模型已成为药理学和肿瘤细胞生物学中的一项先进技术,尤其适用于研究多形性胶质母细胞瘤(GBM)等恶性肿瘤。在此,我们在一种可拆卸组装的微流控装置上构建了三维GBM模型,该模型可用于研究GBM的侵袭性并进行抗GBM药物测试。通过在集成微流控装置中进行一系列操作,分别包括GBM球体自组装、嵌入胶原基质和连续灌注培养,在体外再现了GBM微环境在三维组织结构、细胞外基质和血流方面的基本特征。我们能够以高度灵活的方式实现多个球体的并行操作以及分隔培养。该方法有助于研究GBM在三维微环境中以及在药物持续刺激下的活力、增殖、侵袭和表型转变。使用这种体外三维GBM模型创新性地评估了天然分离的多酚白藜芦醇的抗侵袭作用。还评估了替莫唑胺以及白藜芦醇与替莫唑胺的组合作为对照。这种可扩展的模型能够在更具生理相关性的微环境中研究GBM,这使其有望用于转化医学或个性化医学,以检验治疗药物的影响或确定其组合。

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