STAT3 inactivation suppresses stemness properties in gastric cancer stem cells and promotes Th17 in Treg/Th17 balance
•STAT3 signaling pathway is over activated in cancer stem cells.•In vitro STAT3 inhibition in gastric cancer cells leads to suppression of in vivo tumor induction.•Targeting of STAT3 pathway through Stattic leads to suppression of tumor formation through driving differentiation of T lymphocytes to a...
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Veröffentlicht in: | International immunopharmacology 2022-10, Vol.111, p.109048-109048, Article 109048 |
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Sprache: | eng |
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Zusammenfassung: | •STAT3 signaling pathway is over activated in cancer stem cells.•In vitro STAT3 inhibition in gastric cancer cells leads to suppression of in vivo tumor induction.•Targeting of STAT3 pathway through Stattic leads to suppression of tumor formation through driving differentiation of T lymphocytes to anti tumoric Th17.
Signal transducer and activator of transcription 3 (STAT3) has been recognized with dual effects in provision of cancer; either tumor inductive or immune suppressive. Recent findings considering the role of STAT3 in stem cells and cancer stem cell regulation, but its role in gastric cancer stem cells (GCSCs) and modulating the Th17/Treg balance is unknown. In the present study, we aimed to evaluate the role of activated STAT3 in GCSCs and Th17/ Treg cell paradigm. In completion of our previous results, the findings here indicate that gastro-spheroids, as a model of GCSCs, represent higher level of STAT3 activity, up-regulation of TGF-b and VEGF with downregulation of IL-6. On the other hand, treatment of normal naïve T cells with conditioned medium derived from gastro-spheroids promotes T cell differentiation toward cells with a higher level of FOXP3, TGF-b, and IL-10 expression which is indicative of Treg cells. Suppression of STAT3 activation in cancer cells by using Stattic small molecule treatment, decreases stemness features (i.e. spheroid formation and integrity, stemness gene expression and in vivo tumorigenicity capacity) and downregulates TGF-b in the cancer cells. Furthermore, co-culture of conditioned medium of STAT3 inhibited cancer cells with normal PBMCs leads to reduction in the percentage of Treg accompanied with increase of Th17 cells with a decrease in the secretion of TGF-b and increase in IFN-γ in T cells under differentiation. Therefore, targeting the STAT3 pathway in cancer cells seems to control the tumor formation and also impact on immune cells shifting to antitumor Th17 population. |
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ISSN: | 1567-5769 1878-1705 |
DOI: | 10.1016/j.intimp.2022.109048 |