Tumor cells hijack enteric glia to activate colon cancer stem cells and stimulate tumorigenesis

癌变 干细胞 结直肠癌 癌症干细胞 癌症研究 生物 病理 癌症 医学 细胞生物学 内科学
作者
Simon Valès,Gregory Bacola,Mandy Biraud,Mélissa Touvron,Anne Bessard,Fanny Geraldo,Kelsie A. Dougherty,Shaian Lashani,Céline Bossard,Mathurin Flamant,Émilie Duchalais,Séverine Marionneau‐Lambot,Thibauld Oullier,Lisa Oliver,Michel Neunlist,François M. Vallette,Laurianne Van Landeghem
出处
期刊:EBioMedicine [Elsevier BV]
卷期号:49: 172-188 被引量:71
标识
DOI:10.1016/j.ebiom.2019.09.045
摘要

BACKGROUND: Colon cancer stem cells (CSCs), considered responsible for tumor initiation and cancer relapse, are constantly exposed to regulatory cues emanating from neighboring cells present in the tumor microenvironment. Among these cells are enteric glial cells (EGCs) that are potent regulators of the epithelium functions in a healthy intestine. However, whether EGCs impact CSC-driven tumorigenesis remains unknown. METHODS: Impact of human EGC primary cultures or a non-transformed EGC line on CSCs isolated from human primary colon adenocarcinomas or colon cancer cell lines with different p53, MMR system and stemness status was determined using murine xenograft models and 3D co-culture systems. Supernatants of patient-matched human primary colon adenocarcinomas and non-adjacent healthy mucosa were used to mimic tumor versus healthy mucosa secretomes and compare their effects on EGCs. FINDINGS: Our data show that EGCs stimulate CSC expansion and ability to give rise to tumors via paracrine signaling. Importantly, only EGCs that were pre-activated by tumor epithelial cell-derived soluble factors increased CSC tumorigenicity. Pharmacological inhibition of PGE2 biosynthesis in EGCs or IL-1 knockdown in tumor epithelial cells prevented EGC acquisition of a pro-tumorigenic phenotype. Inhibition of PGE2 receptor EP4 and EGFR in CSCs inhibited the effects of tumor-activated EGCs. INTERPRETATION: Altogether, our results show that EGCs, once activated by the tumor, acquire a pro-tumorigenic phenotype and stimulate CSC-driven tumorigenesis via a PGE2/EP4/EGFR-dependent pathway. FUNDING: This work was supported by grants from the French National Cancer Institute, La Ligue contre le Cancer, the 'Région des Pays de la Loire' and the UNC Lineberger Comprehensive Cancer Center.
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