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:Directed-Complement Activation as a Novel Immunotherapeutic Approach for HER2-Breast Cancer.
Directed-Complement Activation as a Novel Immunotherapeutic Approach for HER2-Breast Cancer.
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我们在此表明,在标准治疗耐药后,肿瘤细胞上的定向补体激活可作为未来联合治疗中替代治疗性抗体的一种选择。
将补体选择性靶向激活于肿瘤细胞,是促进肿瘤清除的有吸引力策略。我们开发了补体激活型多聚免疫治疗复合物(CoMiX),可在HER2表达肿瘤细胞上激活替代途径(通过H因子相关蛋白4[FHR4])或经典途径(通过三联Fc二聚体)。
利用C4结合蛋白(C4bp)C端α链多聚化支架,构建CoMiX-FHR4和CoMiX-Fc;同时引入两种不同抗HER2 VHH:VHH(T)和VHH(P),分别识别与trastuzumab或pertuzumab竞争的表位。体外比较不同CoMiX引起的C3b和C5b9沉积、补体依赖性细胞毒作用(CDC),以及活化NK细胞和巨噬细胞吞噬作用的能力。我们还在裸鼠中建立人BT474肿瘤异种移植模型,探索其治疗效果。
CoMiX-FHR4/VHH(T)和CoMiX-FHR4/VHH(P)单独使用或与相应CoMiX-Fc联合时,均使BT474肿瘤细胞表面C3b和C5b9沉积最多、CDC最强(p<0.0001),超过trastuzumab和pertuzumab较低的补体激活能力。所有CoMiX均可诱导BT474细胞死亡和巨噬细胞吞噬肿瘤细胞,CoMiX-Fc还可刺激NK细胞活化。在对trastuzumab敏感的人BT474异种移植瘤中,注射后6小时观察到大量C3b沉积。CoMiX-FHR4与对照相比降低了肿瘤体积(p<0.05),但效果不如trastuzumab(p<0.001);CoMiX-VHH(P)/Fc则将肿瘤体积降低至与pertuzumab相似的程度。两种CoMiX-FHR4或两种CoMiX-Fc联合使用时效果更强,与trastuzumab联合pertuzumab的效果相似,并增加异种移植瘤中NK细胞浸润。重要的是,CoMiX-FHR4对trastuzumab耐药异种移植瘤仍有活性,可延缓肿瘤生长并诱导大量NK细胞浸润。
本研究显示,将补体定向激活于肿瘤细胞可作为标准治疗耐药后用于未来联合疗法的治疗性抗体替代策略。
Directing selective complement activation towards tumor cells is an attractive strategy to promote their elimination. We have generated complement-activating multimeric immunotherapeutic complexes (CoMiX), stimulating either the alternative pathway (via Factor H Related protein 4 (FHR4)) or the classical pathway (via triple Fc dimers) on HER2-expressing tumor cells.
We used the C-terminal -chain multimerizing scaffold of the C4 binding protein (C4bp) to generate CoMiX-FHR4 as well as CoMiX-Fc with 2 different anti-HER2 V H H, V H H(T) and V H H(P), recognizing trastuzumab- or pertuzumab-competing epitopes, respectively. The different CoMiX were compared in vitro for C3b and C5b9 depositions, complement-dependent cytotoxicity (CDC), and their ability to activate NK cells and phagocytosis by macrophages. We further explored their therapeutic efficacy on human BT474 tumor xenografts established in nude mice.
CoMiX-FHR4/V H H(T) and -FHR4/V H H(P) lead to the highest C3b and C5b9 depositions and CDC on BT474 tumor cells (p<0.0001), both individually and in combinations with their CoMiX-Fc counterparts, surpassing the low complement activating capacity of trastuzumab and pertuzumab. All CoMiX induced BT474 cell death and phagocytosis of tumor cells by macrophages while CoMiX-Fc also stimulated NK cell activation. In human BT474 xenografts sensitive to trastuzumab, CoMiX induced a massive C3b deposition 6 hours after injection. CoMiX-FHR4 reduced the tumor volume compared to controls (p< 0.05) but to a lesser extent than trastuzumab (p< 0.001) while CoMiX-V H H(P)/Fc led to a tumor volume reduction similar to pertuzumab. Combinations of two CoMiX-FHR4 or two CoMiX-Fc were more potent, similarly to the combination of trastuzumab and pertuzumab, leading to increased NK cell infiltration in xenografts. Importantly, CoMiX-FHR4 was still active against trastuzumab-resistant xenografts, delaying tumor growth and inducing a large NK cell infiltration.
We showed here that directed complement activation on tumor cells is an alternative to therapeutic antibodies for future combination therapies upon resistance to standard-of-care treatment.
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