UMR CNRS/URCA n°6237, UFR Pharmacie, 51 rue Cognacq-Jay, 51096 Reims Cedex, France.
IRI - CNRS USR3078, Parc de la Haute Borne, 50 Avenue Halley, 59650 Villeneuve d'Ascq Cedex, France.
Cancer Cell Int. 2010 Aug 13;10:26. doi: 10.1186/1475-2867-10-26.
The cell microenvironment, especially extracellular matrix proteins, plays an important role in tumor cell response to chemotherapeutic drugs. The present study was designed to investigate whether this microenvironment can influence the antimigratory effect of an anthracycline drug, doxorubicin, when tumor cells are grown in a matrix of type I collagen, a three-dimensional (3D) context which simulates a natural microenvironment.
To this purpose, we studied the migratory parameters, the integrin expression, and the activation state of focal adhesion kinase (FAK) and GTPase RhoA involved in the formation of focal adhesions and cell movement. These parameters were evaluated at non toxic concentrations which did not affect HT1080 cell proliferation.
We show that while doxorubicin decreased cell migration properties by 70% in conventional two-dimensional (2D) culture, this effect was completely abolished in a 3D one. Regarding the impact of doxorubicin on the focal adhesion complexes, unlike in 2D systems, the data indicated that the drug neither affected beta1 integrin expression nor the state of phosphorylation of FAK and RhoA.
This study suggests the lack of antiinvasive effect of doxorubicin in a 3D environment which is generally considered to better mimic the phenotypic behaviour of cells in vivo. Consistent with the previously shown resistance to the cytotoxic effect in a 3D context, our results highlight the importance of the matrix configuration on the tumor cell response to antiinvasive drugs.
细胞微环境,特别是细胞外基质蛋白,在肿瘤细胞对化疗药物的反应中起着重要作用。本研究旨在探讨当肿瘤细胞在 I 型胶原基质中生长时,这种微环境是否会影响蒽环类药物阿霉素的抗迁移作用,因为这种三维(3D)环境模拟了自然微环境。
为此,我们研究了迁移参数、整合素表达以及参与形成焦点黏附的粘着斑激酶(FAK)和 GTPase RhoA 的激活状态,这些参数是在不影响 HT1080 细胞增殖的非毒性浓度下评估的。
我们表明,虽然阿霉素在传统二维(2D)培养中使细胞迁移特性降低了 70%,但这种作用在 3D 培养中完全被消除。关于阿霉素对焦点黏附复合物的影响,与 2D 系统不同,数据表明该药物既不影响β1 整合素表达,也不影响 FAK 和 RhoA 的磷酸化状态。
这项研究表明,在通常被认为更能模拟细胞体内表型行为的 3D 环境中,阿霉素缺乏抗侵袭作用。与先前在 3D 环境中对细胞毒性作用的抗性一致,我们的结果强调了基质构象对肿瘤细胞对抗侵袭药物反应的重要性。