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:NK cell line modified to express a potent, DR5 specific variant of TRAIL, show enhanced cytotoxicity in ovarian cancer models.
NK cell line modified to express a potent, DR5 specific variant of TRAIL, show enhanced cytotoxicity in ovarian cancer models.
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与非修饰 NK 细胞相比,TRAILv-KHYG-1 细胞显著降低了 OVCAR-3 细胞的活力。然而,当 SKOV-3 细胞与 NK 细胞共培养时,未观察到活力的显著降低,尽管其 DR5 表面表达高于 OVCAR-3 细胞。这些数据表明,除 DR5 表达外,其他机制驱动了卵巢癌中的 TRAIL 耐药。
卵巢癌是一种致死性妇科恶性肿瘤,5年生存率为30-50%,令人不满意。细胞免疫疗法是一种有前景的新型癌症治疗方法,通过给予免疫细胞,如自然杀伤(NK)细胞,使患者能够通过直接细胞毒性对抗癌症。NK细胞通过促进肿瘤抗原的释放来协调适应性免疫反应。NK细胞的细胞毒性和效应反应在很大程度上由TRAIL参与驱动。在本研究中,我们研究了一株经过修饰以表达强效DR5特异性TRAIL变体的人NK细胞系的细胞毒性潜力。我们假设这种修饰将在体外增强NK细胞对TRAIL敏感和耐药卵巢癌细胞系的细胞毒性。
KHYG-1 人 NK 细胞经靶向 DR5 的 TRAIL 变体修饰(TRAILv-KHYG-1)。人卵巢癌细胞系 OVCAR-3 和 SKOV-3 与修饰或未修饰的 NK 细胞以不同效靶比(E:T)共培养 4 或 16 h。通过 Annexin-APC 和 7-AAD 评估细胞凋亡,并使用流式细胞术检测。凋亡细胞定义为 annexin V 7-AAD 双阳性。通过多重 ELISA 检测细胞因子表达,并通过流式细胞术分析。
与单独培养的OVCAR-3细胞相比,经修饰和未经修饰的NK细胞在治疗4和16小时后均显著降低了OVCAR-3细胞的活力。以1:1的E:T比例用TRAILv-KHYG-1细胞治疗16小时后,OVCAR-3细胞活力降低。相反,尽管SKOV-3细胞的DR5表面表达高于OVCAR-3细胞,但两种NK细胞系对SKOV-3细胞活力均无影响。
Ovarian cancer is a lethal gynaecological malignancy with unsatisfactory 5 year survival rates of 30-50 %. Cell immunotherapy is a promising new cancer treatment where immune cells, such as Natural Killer (NK) cells, are administered to enable the patient to fight cancer through direct cytotoxicity. NK cells orchestrate an adaptive immune response by enabling the release of tumour antigens. NK cell cytotoxicity and effector responses are largely driven by TRAIL engagement. In this study we investigated the cytotoxic potential of a human NK cell line that were modified to express a potent DR5 specific TRAIL variant. We hypothesised that this modification would enhance NK cell cytotoxicity against TRAIL sensitive and resistant ovarian cancer cell lines in vitro .
KHYG-1 human NK cells were modified with a TRAIL variant targeting DR5 (TRAILv-KHYG-1). Human ovarian cancer cell lines, OVCAR-3 and SKOV-3, were cultured with modified or non-modified NK cells at different effector:target (E:T) ratios for 4 or 16 h. Apoptosis was assessed by Annexin-APC and 7-AAD and measured using flow cytometry. Apoptotic cells were defined as annexin V 7-AAD double positive. Cytokine expression was measured by multiplex ELISA, and analysed by flow cytometry.
Modified and non-modified NK cells significantly reduced OVCAR-3 cell viability as compared to OVCAR-3 cells that were cultured alone after 4 and 16 h treatment. OVCAR-3 cell viability was reduced after treatment with 1:1 E:T ratio with TRAILv-KHYG-1 cells after 16 h. On the contrary, neither NK cell line had any effect of SKOV-3 cell viability despite SKOV-3 cells having more DR5 surface expression compared to OVCAR-3 cells.
TRAILv-KHYG-1 cells significantly reduced OVCAR-3 cell viability as compared to non-modified NK cells. However, no significant reduction in viability was observed when SKOV-3 cell were cultured with either NK cells, despite having more DR5 surface expression compared to OVCAR-3 cells. These data indicate that mechanisms other than DR5 expression drive TRAIL resistance in ovarian cancer.
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