RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Genistein Sensitizes Human Cholangiocarcinoma Cell Lines to Be Susceptible to Natural Killer Cells.
Genistein Sensitizes Human Cholangiocarcinoma Cell Lines to Be Susceptible to Natural Killer Cells.
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胆管癌(CCA)是一种致死性胆管肿瘤,因对化疗耐药性高且容易复发,治疗结局较差。异常抗凋亡信号通路激活被认为是CCA化疗耐药和免疫逃逸的机制之一。
因此,逆转抗凋亡信号通路是一种可行策略,尤其适用于化疗耐药性较高的CCA。本研究展示了染料木素重新激活凋亡级联反应并提高CCA细胞对NK-92NK 细胞敏感性的作用。50和100 μM染料木素可显著激活CCA细胞(KKU055、KKU100和KKU213A)的外源性凋亡通路,表现为procaspase-8和procaspase-3表达减少。以50 μM染料木素预处理CCA细胞(但不预处理NK-92细胞),可显著提高NK-92细胞相较未处理对照的杀伤能力,提示染料木素能够使CCA细胞增敏。
值得注意的是,染料木素还显著降低抗凋亡蛋白cFLIP(参与免疫逃逸通路)的表达,并上调CCA细胞死亡受体Fas和TRAIL受体,这可能是其提高CCA细胞对NK-92细胞敏感性的分子机制。
综上,染料木素可作为增敏剂,提高NK细胞免疫疗法治疗CCA的效率。
Cholangiocarcinoma (CCA) is a lethal bile duct cancer, which has poor treatment outcomes due to its high resistance to chemotherapy and cancer recurrence. Activation of aberrant anti-apoptotic signaling pathway has been reported to be a mechanism of chemoresistance and immune escape of CCA.
Therefore, reversal of anti-apoptotic signaling pathway represents a feasible approach to potentiate effective treatments, especially for CCA with high chemoresistance. In this study, we demonstrated the effects of genistein on reactivation of apoptosis cascade and increase the susceptibility of CCA cells to natural killer (NK-92) cells. Genistein at 50 and 100 M significantly activated extrinsic apoptotic pathway in CCA cells (KKU055, KKU100, and KKU213A), which was evident by reduction of procaspase-8 and -3 expression.
Pretreatment of CCA cells with genistein at 50 M, but not NK-92 cells, significantly increased NK-92 cell killing ability over the untreated control, suggesting the ability of genistein to sensitize CCA cells.
Interestingly, genistein treatment could greatly lower the expression of cFLIP, an anti-apoptotic protein involved in the immune escape pathway, in addition to upregulation of death receptors, Fas- and TRAIL-receptors, in CCA cells, which might be the underlying molecular mechanism of genistein to sensitize CCA to be susceptible to NK-92 cells. Taken together, this finding revealed the benefit of genistein as a sensitizer to enhance the efficiency of NK cell immunotherapy for CCA.
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