PO.TB10.03 · 肿瘤生物学
DNA损伤性治疗诱导促肿瘤发生的成纤维细胞表型
DNA damaging therapies induce a pro-tumorigenic fibroblast phenotype
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
越来越多的证据表明,抗癌治疗不仅靶向肿瘤细胞,还重塑肿瘤微环境,矛盾地使成纤维细胞获得促肿瘤发生的表型。这些成纤维细胞的特征是分泌组改变和广泛的细胞外基质(ECM)重塑,从而促进治疗耐受和肿瘤进展。
在本研究中,我们证明诱导DNA损伤的抗癌药物驱动正常成纤维细胞转向纤维化及癌症相关成纤维细胞(CAF)样表型。使用3D细胞来源的ECM沉积实验,我们表明对正常成纤维细胞和CAF的处理均刺激形成具有更大孔隙、各向异性更强的ECM。这种重塑后的ECM增强了癌细胞的黏附和增殖,同时出人意料地降低了跨基质的迁移。相反,可溶性分泌组不影响癌细胞增殖,但显著增加了朝向治疗暴露的成纤维细胞的趋化性迁移。
通过RNA测序进行的基因表达谱分析结合2D和3D体外分析显示,长期药物暴露诱导成纤维细胞衰老,其特征为beta-半乳糖苷酶、IL6、CDKN1A和CDKN2A表达的上调。治疗诱导的衰老成纤维细胞还表现出肌成纤维细胞样CAF(myCAF)表型的特征,包括收缩性增强以及ACTA2、PDGFRA、MMPs、TIMPs和ECM组分(如胶原蛋白、玻连蛋白和VCAM)表达的增加。我们此前已表明myCAF可促进体内生长和转移,突显了它们在肿瘤进展中的关键作用。
我们的发现提示,治疗诱导的成纤维细胞衰老可能为肿瘤进展创造一个允许性的微环境。
查看英文原文 English abstract
There is growing evidence that anticancer therapies not only target tumour cells but also reshape the tumour microenvironment, paradoxically enabling fibroblasts to acquire a pro-tumorigenic phenotype. These fibroblasts are characterised by an altered secretome and extensive extracellular matrix (ECM) remodelling, which promote therapy resistance and tumour progression.
In this study, we demonstrate that DNA damage-inducing anticancer drugs drive normal fibroblasts towards a fibrosis- and cancer-associated fibroblast (CAF)-like phenotype. Using 3D cell-derived ECM deposition assays, we show that treatment of both normal fibroblasts and CAFs stimulates the formation of a more anisotropic ECM with enlarged pores. This remodelled ECM enhances cancer cell adhesion and proliferation, while unexpectedly reducing migration across the matrix. In contrast, the soluble secretome does not affect cancer cell proliferation but significantly increases chemotactic migration towards the therapy-exposed fibroblasts.
Gene expression profiling by RNA sequencing combined with 2D and 3D in vitro analyses, reveals that prolonged drug exposure induces fibroblast senescence, marked by upregulation of beta-galactosidase, IL6, CDKN1A, and CDKN2A expression. The therapy-induced senescent fibroblasts also display features of a myofibroblast-like CAF (myCAF) phenotype, including enhanced contractility and increased expression of ACTA2, PDGFRA, MMPs, TIMPs, and extracellular matrix components such as collagens, vitronectin, and VCAM. We have previously shown that myCAFs can promote in vivo growth and metastasis, underscoring their critical role in tumour progression.
Our findings suggest that therapy-induced senescence in fibroblasts may create a permissive microenvironment for tumour progression.
利益披露 Disclosure
E. Lay, None..
M. Negasi, None..
B. Flynn, None..
T. Grant, None..
I. Kontou, None..
G. Walko, None..
U. Jungwirth, None.