Liu Xi Qiu, Fourel Laure, Dalonneau Fabien, Sadir Rabia, Leal Salome, Lortat-Jacob Hugues, Weidenhaupt Marianne, Albiges-Rizo Corinne, Picart Catherine
CNRS UMR 5628 (LMGP), 3 parvis Louis Néel, 38016, Grenoble, France; Université Grenoble Alpes, LMGP, 3 parvis Louis Néel, 38016, Grenoble, France; FONDATION ARC, 9 rue Guy Môquet, 94803, Villejuif, France; Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, PR China.
Inserm U1209, Université Grenoble Alpes, Institut Albert Bonniot, Site Santé, 38042, Grenoble cedex 9, France; CNRS UMR5309, Institute for Advanced Biosciences, Institut Albert Bonniot, 38700, La Tronche, France.
Biomaterials. 2017 May;127:61-74. doi: 10.1016/j.biomaterials.2017.02.035. Epub 2017 Feb 27.
The SDF-1α chemokine (CXCL12) is a potent bioactive chemoattractant known to be involved in hematopoietic stem cell homing and cancer progression. The associated SDF-1α/CXCR4 receptor signaling is a hallmark of aggressive tumors, which can metastasize to distant sites such as lymph nodes, lung and bone. Here, we engineered a biomimetic tumoral niche made of a thin and soft polyelectrolyte film that can retain SDF-1α to present it, in a spatially-controlled manner, at the ventral side of the breast cancer cells. Matrix-bound SDF-1α but not soluble SDF-1α induced a striking increase in cell spreading and migration in a serum-containing medium, which was associated with the formation of lamellipodia and filopodia in MDA-MB231 cells and specifically mediated by CXCR4. Other Knockdown and inhibition experiments revealed that CD44, the major hyaluronan receptor, acted in concert, via a spatial coincidence, to drive a specific matrix-bound SDFα-induced cell response associated with ERK signaling. In contrast, the β1 integrin adhesion receptor played only a minor role on cell polarity. The CXCR4/CD44 mediated cellular response to matrix-bound SDF-1α involved the Rac1 RhoGTPase and was sustained solely in the presence of matrix-bound SDFα, in contrast with the transient signaling observed in response to soluble SDF-1α. Our results highlight that a biomimetic tumoral niche enables to reveal potent cellular effects and so far hidden molecular mechanisms underlying the breast cancer response to chemokines. These results open new insights for the design of future innovative therapies in metastatic cancers, by inhibiting CXCR4-mediated signaling in the tumoral niche via dual targeting of receptors (CXCR4 and CD44) or of associated signaling molecules (CXCR4 and Rac1).
基质细胞衍生因子-1α趋化因子(CXCL12)是一种强效生物活性趋化因子,已知其参与造血干细胞归巢和癌症进展。相关的基质细胞衍生因子-1α/CXCR4受体信号传导是侵袭性肿瘤的一个标志,这类肿瘤可转移至远处部位,如淋巴结、肺和骨骼。在此,我们构建了一种由薄而柔软的聚电解质膜制成的仿生肿瘤微环境,该膜能够保留基质细胞衍生因子-1α,并以空间可控的方式将其呈现在乳腺癌细胞的腹侧。与可溶性基质细胞衍生因子-1α不同,与基质结合的基质细胞衍生因子-1α在含血清培养基中可显著增加细胞铺展和迁移,这与MDA-MB231细胞中片状伪足和丝状伪足的形成有关,且由CXCR4特异性介导。其他敲低和抑制实验表明,主要的透明质酸受体CD44通过空间巧合协同作用,驱动与细胞外信号调节激酶信号传导相关的特定的基质结合型基质细胞衍生因子-1α诱导的细胞反应。相比之下,β1整合素黏附受体在细胞极性方面仅起次要作用。与对可溶性基质细胞衍生因子-1α所观察到的瞬时信号传导不同,CXCR4/CD44介导的对基质结合型基质细胞衍生因子-1α的细胞反应涉及Rac1 RhoGTP酶,并且仅在存在基质结合型基质细胞衍生因子-1α的情况下持续存在。我们的结果表明,仿生肿瘤微环境能够揭示强大的细胞效应以及迄今为止乳腺癌对趋化因子反应中隐藏的分子机制。这些结果为转移性癌症未来创新疗法的设计开辟了新的思路,即通过对受体(CXCR4和CD44)或相关信号分子(CXCR4和Rac1)的双重靶向抑制肿瘤微环境中CXCR4介导的信号传导。