Literature DB >> 33718208

Transcriptomic Profiling of In Vitro Tumor-Stromal Cell Paracrine Crosstalk Identifies Involvement of the Integrin Signaling Pathway in the Pathogenesis of Mesenteric Fibrosis in Human Small Intestinal Neuroendocrine Neoplasms.

Faidon-Marios Laskaratos1,2, Ana Levi2, Gert Schwach3, Roswitha Pfragner3, Andrew Hall4, Dong Xia5, Conrad von Stempel6, Josephine Bretherton6, Kessarin Thanapirom2, Sarah Alexander4, Olagunju Ogunbiyi7, Jennifer Watkins4, Tu Vinh Luong4, Christos Toumpanakis1, Dalvinder Mandair1, Martyn Caplin1, Krista Rombouts2.   

Abstract

AIM: Analysis of the pathophysiology of mesenteric fibrosis (MF) in small intestinal neuroendocrine tumors (SI-NETs) in an in vitro paracrine model and in human SI-NET tissue samples.
METHODS: An indirect co-culture model of SI-NET cells KRJ-I and P-STS with stromal cells HEK293 was designed to evaluate the paracrine effects on cell metabolic activity, gene expression by RT2 PCR Profilers to analyse cancer and fibrosis related genes, and RNA sequencing. The integrin signaling pathway, a specific Ingenuity enriched pathway, was further explored in a cohort of human SI-NET tissues by performing protein analysis and immunohistochemistry.
RESULTS: RT Profiler array analysis demonstrated several genes to be significantly up- or down-regulated in a cell specific manner as a result of the paracrine effect. This was further confirmed by employing RNA sequencing revealing multiple signaling pathways involved in carcinogenesis and fibrogenesis that were significantly affected in these cell lines. A significant upregulation in the expression of various integrin pathway - related genes was identified in the mesenteric mass of fibrotic SI-NET as confirmed by RT-qPCR and immunohistochemistry. Protein analysis demonstrated downstream activation of the MAPK and mTOR pathways in some patients with fibrotic SI-NETs.
CONCLUSION: This study has provided the first comprehensive analysis of the crosstalk of SI-NET cells with stromal cells. A novel pathway - the integrin pathway - was identified and further validated and confirmed in a cohort of human SI-NET tissue featured by a dual role in fibrogenesis/carcinogenesis within the neoplastic fibrotic microenvironment.
Copyright © 2021 Laskaratos, Levi, Schwach, Pfragner, Hall, Xia, von Stempel, Bretherton, Thanapirom, Alexander, Ogunbiyi, Watkins, Luong, Toumpanakis, Mandair, Caplin and Rombouts.

Entities:  

Keywords:  carcinoid; fibrosis; integrin; mesenteric desmoplasia; neuroendocrine neoplasia

Year:  2021        PMID: 33718208      PMCID: PMC7943728          DOI: 10.3389/fonc.2021.629665

Source DB:  PubMed          Journal:  Front Oncol        ISSN: 2234-943X            Impact factor:   6.244


  64 in total

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8.  Clinicopathological correlations of mesenteric fibrosis and evaluation of a novel biomarker for fibrosis detection in small bowel neuroendocrine neoplasms.

Authors:  Faidon-Marios Laskaratos; Dalvinder Mandair; Andrew Hall; Sarah Alexander; Conrad von Stempel; Josephine Bretherton; TuVinh Luong; Jennifer Watkins; Olagunju Ogunbiyi; Krista Rombouts; Martyn Caplin; Christos Toumpanakis
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Review 3.  What Causes Desmoplastic Reaction in Small Intestinal Neuroendocrine Neoplasms?

Authors:  Gowri M Ratnayake; Faidon-Marios Laskaratos; Dalvinder Mandair; Martyn E Caplin; Krista Rombouts; Christos Toumpanakis
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