PO.IM01.15 · 免疫学

一种人源化抗VEGFR-1单克隆抗体及其衍生的抗体-药物偶联物靶向肿瘤细胞和肿瘤微环境组分的抗癌活性

Anticancer activity of a humanized anti-VEGFR-1 monoclonal antibody and its derived antibody-drug conjugates targeting tumor cells and tumor-microenvironment components

编号 4348 展板 19 时间 4/21 09:00–12:00 区域 Section 9 主讲 Grazia Graziani
分会场 Monoclonal Antibodies and Antibody-Cytokine Platforms
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作者与单位 Authors & Affiliations

Pedro M. Lacal1, Maria Grazia Atzori2, Claudia Ceci2, Federica Ruffini1, Sonia Valentini2, Lauretta Levati1, Grazia Graziani2

1IDI-IRCCS, Rome, Italy,2Systems Medicine, University of Rome Tor Vergata, Rome, Italy

摘要 Abstract

中文摘要
血管内皮生长因子受体-1(VEGFR-1)是VEGF-A和胎盘生长因子(PlGF)的酪氨酸激酶受体,参与病理性血管生成、肿瘤侵袭性以及促肿瘤M2巨噬细胞的浸润。本研究旨在探讨人源化抗VEGFR-1单克隆抗体(mAb)hD16F7及其抗体-药物偶联物(ADC)衍生物的抗肿瘤活性。该抗VEGFR-1 mAb的一个独特特性是能够保留可溶性VEGFR-1的诱饵/抗血管生成功能,后者在肿瘤微环境(TME)中螯合VEGF-A/PlGF。首先检验了该人源化抗VEGFR-1 mAb抑制人黑色素瘤、胶质母细胞瘤(GBM)和内皮细胞对PlGF响应性迁移的能力。随后,在黑色素瘤和GBM类器官的患者来源肿瘤异种移植(PDTX)中进行检验。此外,还评估了由hD16F7 mAb经与单甲基澳瑞他汀E(MMAE)或吡咯并苯二氮卓(PBD)偶联衍生的两种抗VEGFR-1 ADC对表达VEGFR-1的黑色素瘤和GBM细胞以及TME细胞(即内皮细胞和M2极化巨噬细胞)的细胞毒活性。hD16F7 mAb抑制了VEGFR-1阳性人黑色素瘤(CR-Mel)和GBM(U87和SJ-GBM)细胞系的PlGF诱导迁移。此外,hD16F7 mAb强烈阻碍了人内皮细胞(HUV-ST)对PlGF的响应性迁移。通过RT-PCR表征黑色素瘤PDTX的VEGFR-1表达,通过DNA测序表征BRAF基因的突变状态。hD16F7 mAb(10 mg/kg)治疗显著抑制了移植于免疫缺陷小鼠中的PDTX的生长,无论是BRAF野生型还是突变型肿瘤,且与黑色素瘤细胞中的VEGFR-1表达无关。事实上,hD16F7 mAb也可作用于TME细胞,因为它识别人和鼠受体。此外,在BRAF突变型PDTX中,hD16F7 mAb还增强了BRAF抑制剂维莫非尼(vemurafenib)的疗效。hD16F7衍生的ADC——hD16F7-MMAE和hD16F7-PBD,对VEGFR-1过表达黑色素瘤细胞(M14-MF5)的细胞毒性大于对其VEGFR-1阴性对应细胞(M14-C2),IC50值如下:hD16F7-MMAE 5.84 μg/ml ± 0.59对12.17 μg/ml ± 1.56;hD16F7-PBD 12.4 μg/ml ± 1.9对19.2 μg/ml ± 0.8。hD16F7-PBD还有效阻碍了M2巨噬细胞和人内皮细胞的活力(IC50值分别为:5.8 μg/ml ± 0.3和12.2 μg/ml ± 3.9)。通过测量钙黄绿素-AM(活细胞)和碘化丙啶(死细胞)的荧光强度,也在GBM类器官上证明了hD16F7-PBD的细胞毒作用。总之,人源化抗VEGFR-1 mAb hD16F7及其衍生的ADC在更贴近临床应答的临床前肿瘤模型上显示出有前景的抗肿瘤作用。资助:AIRC IG 2024-ID 30361和意大利卫生部NRR计划,拨款PNRR-MCNT2-2023-12377670(CUP F93C24000250007)。
查看英文原文 English abstract
The vascular endothelial growth factor receptor-1 (VEGFR-1) is a tyrosine kinase receptor for VEGF-A and placental growth factor (PlGF), involved in pathological angiogenesis, tumor invasiveness and infiltration by protumoral M2 macrophages. Aim of the study was to investigate the antitumor activity of the humanized anti-VEGFR-1 monoclonal antibody (mAb) hD16F7 and its antibody-drug conjugates (ADCs) derivatives. A unique property of this anti VEGFR-1 mAb is its ability of preserving the decoy/anti-angiogenic function of the soluble VEGFR-1, which sequesters VEGF-A/PlGF in the tumor microenvironment (TME). The humanized anti-VEGFR-1 mAb was initially tested for its ability to hamper migration of human melanoma, glioblastoma (GBM) and endothelial cells in response to PlGF. Thereafter, it was tested in patient-derived tumor xenografts (PDTXs) of melanoma and GBM organoids. Two anti-VEGFR-1 ADCs, derived from hD16F7 mAb by conjugation with monomethyl auristatin E (MMAE) or pyrrolobenzodiazepine (PBD), were also evaluated for their cytotoxic activity on VEGFR-1 expressing melanoma and GBM cells, as well as on cells of the TME (i.e., endothelial cells and M2 polarized macrophages). The hD16F7 mAb inhibited PlGF-induced migration of VEGFR-1 positive human melanoma (CR-Mel) and GBM (U87 and SJ-GBM) cell lines. Moreover, hD16F7 mAb strongly hampered migration of human endothelial cells (HUV-ST) in response to PlGF. Melanoma PDTXs were characterized for VEGFR-1 expression by RT-PCR and for the mutational status of BRAF gene by DNA sequencing. Treatment with hD16F7 mAb (10 mg/kg) significantly inhibited the growth of PDTXs transplanted in immunodeficient mice, both in the case of BRAF wild-type and mutated tumors and regardless of VEGFR-1 expression in melanoma cells. Indeed, hD16F7 mAb can also act on cells of the TME as it recognizes both the human and murine receptors. Moreover, in the case of BRAF mutated PDTXs, hD16F7 mAb also enhanced the efficacy of the BRAF inhibitor vemurafenib. The hD16F7-derived ADCs, hD16F7-MMAE and hD16F7-PBD, exerted a greater cytotoxicity on VEGFR-1 overexpressing melanoma cells (M14-MF5) than on their VEGFR-1 negative counterparts (M14-C2) with the following IC50 values: hD16F7-MMAE 5.84 μg/ml ± 0.59 vs 12.17 μg/ml ± 1.56; hD16F7-PBD 12.4 μg/ml ± 1.9 vs 19.2 μg/ml ± 0.8. The hD16F7-PBD also effectively hampered the viability of M2 macrophages and human endothelial cells (IC50 values: 5.8 µg/ml ± 0.3 and 12.2 µg/ml± 3.9, respectively). The cytotoxic effects of hD16F7-PBD were also demonstrated on GBM organoids by measuring the fluorescence intensity of calcein-AM (viable cells) and propidium iodide (dead cells). In conclusion, the humanized anti-VEGFR-1 mAb hD16F7 and its derived ADCs showed promising antitumor effects on preclinical tumor models that more closely reflect the clinical response.Funding: AIRC IG 2024-ID 30361 and Italian Ministry of Health NRR Plan, grant PNRR-MCNT2-2023-12377670 (CUP F93C24000250007)
利益披露 Disclosure
P. M. Lacal, None.. M. Atzori, None.. C. Ceci, None.. F. Ruffini, None.. S. Valentini, None.. L. Levati, None.. G. Graziani, None.

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