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在三维共培养模型的成像研究中,耐药胰腺癌细胞与基质成纤维细胞的生物物理相互作用发生了改变。

Drug resistant pancreatic cancer cells exhibit altered biophysical interactions with stromal fibroblasts in imaging studies of 3D co-culture models.

作者信息

Struth Eric, Labaf Maryam, Karimnia Vida, Liu Yiran, Cramer Gwendolyn, Dahl Joanna B, Slack Frank J, Zarringhalam Kourosh, Celli Jonathan P

出版信息

bioRxiv. 2024 Jul 17:2024.07.14.602133. doi: 10.1101/2024.07.14.602133.

Abstract

Interactions between tumor and stromal cells are well known to play a prominent roles in progression of pancreatic ductal adenocarcinoma (PDAC). As knowledge of stromal crosstalk in PDAC has evolved, it has become clear that cancer associated fibroblasts can play both tumor promoting and tumor suppressive roles through a combination of paracrine crosstalk and juxtacrine interactions involving direct physical contact. Another major contributor to dismal survival statistics for PDAC is development of resistance to chemotherapy drugs. Though less is known about how the acquisition of chemoresistance impacts upon tumor-stromal crosstalk. Here, we use 3D co-culture geometries to recapitulate juxtacrine interactions between epithelial and stromal cells. In particular, extracellular matrix (ECM) overlay cultures in which stromal cells (pancreatic stellate cells, or normal human fibroblasts) are placed adjacent to PDAC cells (PANC1), result in direct heterotypic cell adhesions accompanied by dramatic fibroblast contractility which leads to highly condensed macroscopic multicellular aggregates as detected using particle image velocimetry (PIV) analysis to quantify cell velocities over the course of time lapse movie sequences. To investigate how drug resistance impacts these juxtacrine interactions we contrast cultures in which PANC1 are substituted with a drug resistant subline (PANC1-OR) previously established in our lab. We find that heterotypic cell-cell interactions are highly suppressed in drug-resistant cells relative to the parental PANC1 cells. To investigate further we conduct RNA-seq and bioinformatics analysis to identify differential gene expression in PANC1 and PANC1-OR, which shows that negative regulation of cell adhesion molecules, consistent with increased epithelial mesenchymal transition (EMT), is also consistent with loss of hetrotypic cell-cell contact necessary for the contractile behavior observed in drug naïve cultures. Overall these findings elucidate the role of drug-resistance in inhibiting an avenue of stromal crosstalk which is associated with tumor suppression and also help to establish cell culture conditions useful for further mechanistic investigation.

摘要

肿瘤与基质细胞之间的相互作用在胰腺导管腺癌(PDAC)进展中发挥着重要作用,这一点已广为人知。随着对PDAC中基质相互作用的认识不断发展,越来越清楚的是,癌症相关成纤维细胞可通过旁分泌相互作用和涉及直接物理接触的近分泌相互作用,发挥促进肿瘤和抑制肿瘤的作用。PDAC患者生存率极低的另一个主要原因是对化疗药物产生耐药性。虽然对于获得化疗耐药性如何影响肿瘤-基质相互作用了解较少。在此,我们使用三维共培养几何结构来重现上皮细胞与基质细胞之间的近分泌相互作用。特别是,细胞外基质(ECM)覆盖培养,即将基质细胞(胰腺星状细胞或正常人成纤维细胞)置于PDAC细胞(PANC1)旁边,会导致直接的异型细胞黏附,并伴有显著的成纤维细胞收缩性,这会导致形成高度浓缩的宏观多细胞聚集体,使用粒子图像测速(PIV)分析来量化延时电影序列过程中的细胞速度时可检测到这种聚集体。为了研究耐药性如何影响这些近分泌相互作用,我们对比了用我们实验室先前建立的耐药亚系(PANC1-OR)替代PANC1的培养物。我们发现,相对于亲本PANC1细胞,耐药细胞中的异型细胞间相互作用受到高度抑制。为了进一步研究,我们进行了RNA测序和生物信息学分析,以确定PANC1和PANC1-OR中的差异基因表达,结果表明细胞黏附分子的负调控与上皮-间质转化(EMT)增加一致,这也与未接触药物的培养物中观察到的收缩行为所需的异型细胞间接触丧失一致。总体而言,这些发现阐明了耐药性在抑制与肿瘤抑制相关的基质相互作用途径中的作用,也有助于建立有助于进一步进行机制研究的细胞培养条件。

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