PO.IM01.14 · 免疫学

通过amivantamab同时靶向EGFR和MET增强间皮瘤中的抗体依赖性细胞毒性

Enhancing antibody-dependent cellular cytotoxicityin mesothelioma through concurrent EGFR and MET targeting withamivantamab

海报缩略图:通过amivantamab同时靶向EGFR和MET增强间皮瘤中的抗体依赖性细胞毒性
编号 5547 展板 19 时间 4/21 02:00–05:00 区域 Section 6 主讲 Shinichiro Suzuki, MD;PhD
分会场 Bi- and Tri-Specific Antibody Therapies
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作者与单位 Authors & Affiliations

Shinichiro Suzuki, Kaushal Parikh, Ezequiel Tolosa, Kuan-Li Wu, Jennifer Ayers-Ringler, Lin Yang, Katherine E. R. Smith, Farhad Kosari, Aaron S. Mansfield

Mayo Clinic, Rochester, MN

摘要 Abstract

中文摘要
背景:弥漫性胸膜间皮瘤(DPM)是一种高度侵袭性的恶性肿瘤,治疗选择有限且预后不佳。尽管免疫检查点抑制剂已改善了预后,尤其对于非上皮样亚型,但间皮瘤仍无获批的靶向疗法。EGFR和MET是在DPM中经常过表达的受体酪氨酸激酶,提示其对靶向抗体治疗的易感性。Amivantamab是一种双特异性EGFR/MET抗体,最初为EGFR突变型肺癌开发,可阻断生长信号并激活免疫机制。鉴于间皮瘤中EGFR和MET的高表达水平,我们评估了amivantamab在临床前模型中的治疗潜力。 方法:使用TCGA分析DPM中EGFR和MET的转录本水平。通过Western印迹和流式细胞术评估了八种人间皮瘤细胞系。使用流式细胞术、共聚焦显微镜和配体刺激的磷酸化检测,考察了amivantamab的结合、内化和信号抑制。使用来自健康供体的PBMC、NK细胞和单核细胞以及ADCC报告基因检测,定量了细胞毒性和免疫效应活性。在补充人NK细胞并接受amivantamab或对照IgG治疗的NOD/SCID-γ(NSG)小鼠的DPM患者来源异种移植(PDX)模型中测试了体内疗效。 结果:TCGA分析显示DPM中EGFR/MET频繁共表达。与间皮细胞相比,间皮瘤细胞系表达更高水平的EGFR和MET。Amivantamab与两种受体强烈结合,诱导受体内化,并抑制EGF和HGF刺激的EGFR、MET磷酸化以及下游AKT/ERK信号传导。直接细胞毒性极小;然而,加入PBMC或NK细胞导致了强效的、剂量依赖性的肿瘤细胞杀伤,与抗体依赖性细胞毒性(ADCC)一致。报告基因检测显示肿瘤细胞中Fcγ受体激活为7-11倍,而非恶性间皮细胞中约为2倍。与单核细胞共培养揭示了amivantamab诱导的胞啃作用(trogocytosis),表现为肿瘤细胞膜上EGFR和MET的丢失。在DPM PDX模型中,amivantamab相对于对照产生了89.1%的肿瘤生长抑制(TGI)(P < 0.0001),且在受治疗小鼠中未观察到明显毒性。 结论:通过amivantamab双重靶向EGFR/MET,经由协调的受体信号阻断、ADCC和单核细胞介导的胞啃作用,在间皮瘤中产生了强效抗肿瘤效应。这些结果支持amivantamab作为EGFR/MET阳性DPM——尤其是目前从免疫治疗中获益有限的上皮样亚型——的一种有前景的靶向治疗策略。
查看英文原文 English abstract
Background: Diffuse pleural mesothelioma (DPM) is a highly aggressive malignancy with limited treatment options and poor prognosis. Although immune checkpoint inhibitors have improved outcomes, particularly for non-epithelioid subtypes, there remains no approved targeted therapy for mesothelioma. EGFR and MET are receptor tyrosine kinases frequently overexpressed in DPM, suggesting susceptibility to targeted antibody therapy. Amivantamab is a bispecific EGFR/MET antibody, originally developed for EGFR-mutant lung cancer, that blocks growth signals and engaging immune mechanisms. Given the high levels of EGFR and MET expression in mesothelioma, we evaluated the therapeutic potential of amivantamab in preclinical models. Methods: EGFR and MET transcript levels in DPM were analyzed using TCGA. Eight human mesothelioma cell lines were assessed by Western blotting and flow cytometry. Amivantamab binding, internalization, and signaling inhibition were examined using flow cytometry, confocal microscopy, and ligand-stimulated phosphorylation assays. Cytotoxicity and immune-effector activity were quantified using PBMCs, NK cells, and monocytes from healthy donors, along with an ADCC reporter assay. In vivo efficacy was tested in a DPM patient-derived xenograft (PDX) model in NOD/SCID-gamma (NSG) mice supplemented with human NK cells and treated with amivantamab or control IgG. Results: TCGA analysis showed frequent EGFR/MET co-expression in DPM. Mesothelioma cell lines expressed higher EGFR and MET levels compared with mesothelial cells. Amivantamab strongly bound both receptors, induced receptor internalization, and inhibited EGF- and HGF-stimulated phosphorylation of EGFR, MET, and downstream AKT/ERK signaling. Direct cytotoxicity was minimal; however, the addition of PBMCs or NK cells resulted in robust, dose-dependent tumor cell killing consistent with antibody-dependent cellular cytotoxicity (ADCC). Reporter assays demonstrated 7-11-fold Fcgamma receptor activation in tumor cells compared with ~2-fold activation in non-malignant mesothelial cells. Co-culture with monocytes revealed amivantamab-induced trogocytosis, evidenced by loss of EGFR and MET from tumor-cell membranes. In the DPM PDX model, amivantamab produced 89.1% tumor-growth inhibition (TGI) relative to controls (P < 0.0001), with no overt toxicity observed in treated mice. Conclusions: Dual EGFR/MET targeting with amivantamab produced potent antitumor effects in mesothelioma through coordinated receptor-signaling blockade, ADCC, and monocyte-mediated trogocytosis. These results support amivantamab as a promising targeted therapeutic strategy for EGFR/MET-positive DPM, particularly epithelioid subtypes that currently derive limited benefit from immunotherapy.
利益披露 Disclosure
S. Suzuki, Boehringer Ingelheim ). K. Parikh, None.. E. Tolosa, None.. K. Wu, None.. J. Ayers-Ringler, None.. L. Yang, None.. K. E. R. Smith, None.. F. Kosari, None.. A. S. Mansfield, None.

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