The Interplay between Slow-Cycling, Chemoresistant Cancer Cells and Fibroblasts Creates a Proinflammatory Niche for Tumor Progression

促炎细胞因子 肿瘤进展 利基 癌症研究 癌症 肿瘤细胞 生物 医学 炎症 免疫学 内科学 生态学
作者
Jaebeom Cho,HJ Lee,Su Jung Hwang,Hye‐Young Min,Han Na Kang,A‐Young Park,Seung Yeob Hyun,Jeong Yeon Sim,Ho Jin Lee,Hyun-Ji Jang,Young‐Ah Suh,Sungyoul Hong,Young Kee Shin,Hye Ryun Kim,Ho‐Young Lee
出处
期刊:Cancer Research [American Association for Cancer Research]
卷期号:80 (11): 2257-2272 被引量:47
标识
DOI:10.1158/0008-5472.can-19-0631
摘要

Abstract Quiescent cancer cells are believed to cause cancer progression after chemotherapy through unknown mechanisms. We show here that human non–small cell lung cancer (NSCLC) cell line-derived, quiescent-like, slow-cycling cancer cells (SCC) and residual patient-derived xenograft (PDX) tumors after chemotherapy experience activating transcription factor 6 (ATF6)-mediated upregulation of various cytokines, which acts in a paracrine manner to recruit fibroblasts. Cancer-associated fibroblasts (CAF) underwent transcriptional upregulation of COX2 and type I collagen (Col-I), which subsequently triggered a slow-to-active cycling switch in SCC through prostaglandin E2 (PGE2)- and integrin/Src-mediated signaling pathways, leading to cancer progression. Both antagonism of ATF6 and cotargeting of Src/COX2 effectively suppressed cytokine production and slow-to-active cell cycling transition in SCC, withholding cancer progression. Expression of COX2 and Col-I and activation of Src were observed in patients with NSCLC who progressed while receiving chemotherapy. Public data analysis revealed significant association between COL1A1 and SRC expression and NSCLC relapse. Overall, these findings indicate that a proinflammatory niche created by the interplay between SCC and CAF triggers tumor progression. Significance: Cotargeting COX2 and Src may be an effective strategy to prevent cancer progression after chemotherapy.
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