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Methionine Enkephalin (MENK) Inhibits tumor growth through regulating CD4+Foxp3+ Regulatory T cells (Tregs) in mice

机译:蛋氨酸脑啡肽(MENK)通过调节小鼠的CD4 + Foxp3 +调节性T细胞(Tregs)抑制肿瘤生长

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摘要

Methionine enkephalin (MENK), an endogenous neuropeptide, plays an crucial role in both neuroendocrine and immune systems. CD4+Foxp3+ regulatory T cells (Tregs) are identified as a major subpopulation of T lymphocytes in suppressing immune system to keep balanced immunity. The aim of this research work was to elucidate the mechanisms via which MENK interacts with Tregs in cancer situation. The influence of MENK on transforming growth factor-β (TGF-β) mediated conversion from naïve CD4+CD25- T cells to CD4+CD25+ Tregs was determined and the data from flow cytometry (FCM) analysis indicated that MENK effectively inhibited the expression of Foxp3 during the process of TGF-βinduction. Furthermore, this inhibiting process was accompanied by diminishing phosphorylation and nuclear translocation of Smad2/3, confirmed by western blot (WB) analysis and immunofluorescence (IF) at molecular level. We established sarcoma mice model with S180 to investigate whether MENK could modulate Tregs in tumor circumstance. Our findings showed that MENK delayed the development of tumor in S180 tumor bearing mice and down-regulated level of Tregs. Together, these novel findings reached a conclusion that MENK could inhibit Tregs activity directly and retard tumor development through down-regulating Tregs in mice. This work advances the deepening understanding of the influence of MENK on Tregs in cancer situation, and relation of MENK with immune system, supporting the implication of MENK as a new strategy for cancer immunotherapy.
机译:蛋氨酸脑啡肽(MENK)是一种内源性神经肽,在神经内分泌和免疫系统中都起着至关重要的作用。 CD4 + Foxp3 +调节性T细胞(Tregs)被认为是抑制免疫系统以保持平衡免疫力的T淋巴细胞的主要亚群。这项研究工作的目的是阐明在癌症情况下MENK与Treg相互作用的机制。确定了MENK对转化生长因子β(TGF-β)介导的从原始CD4 + CD25- T细胞到CD4 + CD25 + Tregs转化的影响,流式细胞术(FCM)分析的数据表明MENK有效抑制了CD4 + CD25 + Tregs的表达。 TGF-β诱导过程中的Foxp3。此外,该抑制过程伴随着Smad2 / 3的磷酸化和核易位减少,这在分子水平上通过蛋白质印迹(WB)分析和免疫荧光(IF)得以证实。我们用S180建立肉瘤小鼠模型,以研究MENK是否可以在肿瘤情况下调节Treg。我们的发现表明,MENK可以延缓S180荷瘤小鼠的肿瘤发展,并降低Tregs的水平。在一起,这些新发现得出一个结论,即MENK可以直接抑制Tregs的活性,并通过下调Tregs来延缓小鼠的肿瘤发展。这项工作进一步加深了人们对癌症情况下MENK对Treg的影响以及MENK与免疫系统的关系的加深理解,支持了MENK作为癌症免疫治疗新策略的意义。

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