CNRS UMR7369 MEDyC, University of Reims Champagne-Ardenne, Reims, France.
Plateform PICT, University of Reims Champagne-Ardenne, Reims, France.
Sci Rep. 2019 Jun 24;9(1):9109. doi: 10.1038/s41598-019-45578-1.
Dynamic and reciprocal interactions generated by the communication between tumor cells and their matrix microenvironment, play a major role in the progression of a tumor. Indeed, the adhesion of specific sites to matrix components, associated with the repeated and coordinated formation of membrane protrusions, allow tumor cells to move along a determined pathway. Our study analyzed the mechanism of action of low-diluted Phenacetinum on murine cutaneous melanoma process in a fibronectin matrix environment. We demonstrated a reduction of dispersed cell migration, early and for as long as 24 h, by altering the formation of cell protrusions. Moreover, low-diluted Phenacetinum decreased cell stiffness highly on peripheral areas, due to a disruption of actin filaments located just under the plasma membrane. Finally, it modified the structure of the plasma membrane by accumulating large ordered lipid domains and disrupted B16 cell migration by a likely shift in the balance between ordered and disordered lipid phases. Whereas the correlation between the excess of lipid raft and cytoskeleton disrupting is not as yet established, it is clear that low-diluted Phenacetinum acts on the actin cytoskeleton organization, as confirmed by a decrease of cell stiffness affecting ultimately the establishment of an effective migration process.
肿瘤细胞与其基质微环境之间的交流所产生的动态和相互作用,在肿瘤的进展中起着主要作用。事实上,特定部位与基质成分的黏附,与膜突起的反复协调形成相关,使肿瘤细胞能够沿着特定的途径移动。我们的研究分析了低浓度 Phenacetinum 在纤维连接蛋白基质环境中对小鼠皮肤黑色素瘤过程的作用机制。我们通过改变细胞突起的形成,证明了分散细胞迁移的减少,这种减少在早期和长达 24 小时内持续存在。此外,低浓度 Phenacetinum 由于破坏了位于质膜下的肌动蛋白丝,导致细胞外周区域的刚性大大降低。最后,它通过在有序和无序脂质相之间的平衡发生变化,积累大的有序脂质域,改变质膜的结构,从而破坏 B16 细胞的迁移。虽然脂质筏和细胞骨架破坏之间的相关性尚未确定,但很明显,低浓度 Phenacetinum 作用于肌动蛋白细胞骨架组织,这一点得到了证实,因为细胞刚性的降低影响了有效的迁移过程的建立。