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:Fulvestrant increases the susceptibility of enzalutamide-resistant prostate cancer cells to NK-mediated lysis.
Fulvestrant increases the susceptibility of enzalutamide-resistant prostate cancer cells to NK-mediated lysis.
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NK 细胞正在成为前列腺癌中一种有前景的治疗方法。
Enzalutamide 是一种新一代抗雄激素药物,已获批用于治疗转移性去势抵抗性前列腺癌(CRPC)。尽管 enzalutamide 已被证明可改善 CRPC 男性患者的疾病进展时间并延长总生存期,多数患者最终仍会产生耐药。免疫疗法在这一患者群体中的临床获益有限,了解耐药机制有助于开发新型、更有效的 CRPC 治疗。肿瘤对多种治疗耐药的机制之一是肿瘤表型可塑性,即癌细胞获得间质特征,同时可能保留或丧失经典上皮特征。本研究探讨 enzalutamide 耐药、肿瘤表型可塑性和前列腺癌免疫介导裂解耐药之间的潜在联系。
通过人前列腺癌细胞系长期暴露于 enzalutamide,建立 enzalutamide 耐药模型。研究在体外和体内评估肿瘤细胞表型特征,以及其对免疫效应细胞介导细胞毒作用的敏感性。
Enzalutamide 耐药与肿瘤间质特征获得、雌激素受体表达上调,以及对 NK 细胞介导裂解的敏感性显著降低相关;这与 enzalutamide 耐药细胞形成肿瘤/NK 细胞结合物减少有关。选择性雌激素受体降解剂 fulvestrant 可在体外恢复靶细胞/NK 细胞结合物形成,并提高细胞对 NK 细胞裂解的敏感性。体内实验中,fulvestrant 对 enzalutamide 耐药细胞表现出抗肿瘤活性,该效应与 NK 细胞活化相关。
NK 细胞正成为前列腺癌治疗的有前景策略。通过 fulvestrant 阻断雌激素受体以调节肿瘤可塑性,可能为采用 NK 细胞疗法干预 enzalutamide 耐药 CRPC 提供机会。
Enzalutamide, a next-generation antiandrogen agent, is approved for the treatment of metastatic castration-resistant prostate cancer (CRPC). While enzalutamide has been shown to improve time to progression and extend overall survival in men with CRPC, the majority of patients ultimately develop resistance to treatment. Immunotherapy approaches have shown limited clinical benefit in this patient population; understanding resistance mechanisms could help develop novel and more effective treatments for CRPC. One of the mechanisms involved in tumor resistance to various therapeutics is tumor phenotypic plasticity, whereby carcinoma cells acquire mesenchymal features with or without the loss of classical epithelial characteristics. This work investigated a potential link between enzalutamide resistance, tumor phenotypic plasticity, and resistance to immune-mediated lysis in prostate cancer.
Models of prostate cancer resistant to enzalutamide were established by long-term exposure of human prostate cancer cell lines to the drug in culture. Tumor cells were evaluated for phenotypic features in vitro and in vivo, as well as for sensitivity to immune effector cell-mediated cytotoxicity.
Resistance to enzalutamide was associated with gain of mesenchymal tumor features, upregulation of estrogen receptor expression, and significantly reduced tumor susceptibility to natural killer (NK)-mediated lysis, an effect that was associated with decreased tumor/NK cell conjugate formation with enzalutamide-resistant cells. Fulvestrant, a selective estrogen receptor degrader, restored the formation of target/NK cell conjugates and increased susceptibility to NK cell lysis in vitro. In vivo, fulvestrant demonstrated antitumor activity against enzalutamide-resistant cells, an effect that was associated with activation of NK cells.
NK cells are emerging as a promising therapeutic approach in prostate cancer. Modifying tumor plasticity via blockade of estrogen receptor with fulvestrant may offer an opportunity for immune intervention via NK cell-based approaches in enzalutamide-resistant CRPC.
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