Papiewska-Pająk, Izabela and Przygodzka, Patrycja and Krzyżanowski, Damian and Soboska, Kamila and Szulc-Kiełbik, Izabela and Stasikowska-Kanicka, Olga and Boncela, Joanna and Wągrowska-Danilewicz, Małgorzata and Kowalska, M. Anna (2021) Snail Overexpression Alters the microRNA Content of Extracellular Vesicles Released from HT29 Colorectal Cancer Cells and Activates Pro-Inflammatory State In Vivo. Cancers, 13 (2). p. 172. ISSN 2072-6694
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Abstract
During metastasis, cancer cells undergo phenotype changes in the epithelial-mesenchymal transition (EMT) process. Extracellular vesicles (EVs) released by cancer cells are the mediators of intercellular communication and play a role in metastatic process. Knowledge of factors that influence the modifications of the pre-metastatic niche for the migrating carcinoma cells is important for prevention of metastasis. We focus here on how cancer progression is affected by EVs released from either epithelial-like HT29-cells or from cells that are in early EMT stage triggered by Snail transcription factor (HT29-Snail). We found that EVs released from HT29-Snail, as compared to HT29-pcDNA cells, have a different microRNA profile. We observed the presence of interstitial pneumonias in the lungs of mice injected with HT29-Snail cells and the percent of mice with lung inflammation was higher after injection of HT29-Snail-EVs. Incorporation of EVs released from HT29-pcDNA, but not released from HT29-Snail, leads to the increased secretion of IL-8 from macrophages. We conclude that Snail modifications of CRC cells towards more invasive phenotype also alter the microRNA cargo of released EVs. The content of cell-released EVs may serve as a biomarker that denotes the stage of CRC and EVs-specific microRNAs may be a target to prevent cancer progression.
Item Type: | Article |
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Subjects: | STM Library Press > Medical Science |
Depositing User: | Unnamed user with email support@stmlibrarypress.com |
Date Deposited: | 02 Jan 2023 12:40 |
Last Modified: | 29 Apr 2024 07:38 |
URI: | http://journal.scienceopenlibraries.com/id/eprint/12 |