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Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
Anti-vascular endothelial growth factor receptor-1 antagonist antibody as a therapeutic agent for cancer
Yan Wu1, Zhaojing Zhong, James Huber
1Department of Experimental Therapeutics, ImClone Systems, Inc., New York, New York 10014, USA. Yan.Wu@imclone.com
Purpose:
Vascular endothelial growth factor receptor-1 (VEGFR-1) plays important roles in promotion of tumor growth by mediating cellular functions in tumor vascular endothelium and cancer cells. Blockade of VEGFR-1 activation has been shown to inhibit pathologic angiogenesis and tumor growth, implicating VEGFR-1 as a potential therapeutic target for the treatment of cancer. We have thus developed a VEGFR-1 antagonist human monoclonal antibody designated as IMC-18F1 and evaluated its antitumor activity in preclinical experimental models to show the therapeutic potential of the antibody for cancer treatment in clinic.
Experimental Design:
Human IgG transgenic mice were used for generation of anti-VEGFR-1 antibodies. Anti-VEGFR-1-specific blocking antibodies were identified using solid-phase binding and blocking assays. Inhibitory antitumor cell activity of IMC-18F1 was assessed in cell-based kinase and growth assays. Pharmacokinetic/pharmacodynamic studies were done to determine the association of antibody blood level with antitumor efficacy of the antibody in vivo. Antitumor efficacy of the anti-VEGFR-1 antibodies as monotherapy and in combination with cytotoxic agents was evaluated in human breast cancer xenograft models.
Results:
A fully human neutralizing antibody, IMC-18F1, was shown to be a high-affinity (KD=54 pmol) inhibitor of VEGFR-1 ligand binding (VEGF-A, VEGF-B, and placental growth factor). IMC-18F1 inhibited ligand-induced intracellular activation of VEGFR-1 and mitogen-activated protein kinase signaling and prevented ligand-stimulated in vitro growth of breast cancer cells. In vivo, IMC-18F1 suppressed the growth of human breast tumor xenografts in association with reduced mitogen-activated protein kinase and Akt activation, reduced tumor cell proliferation, and increased tumor cell apoptosis. Pharmacokinetic/pharmacodynamic studies established a plasma elimination half-life of 5 days for IMC-18F1 and a steady-state trough plasma therapeutic threshold of 88 microg/mL. Importantly, inhibition of mouse and human VEGFR-1 with MF1 and IMC-18F1, respectively, enhanced the antitumor efficacy of cytotoxic agents commonly used to treat breast cancer.
Conclusions:
Based on preclinical validation studies, IMC-18F1 anti-VEGFR-1 has potential to provide clinical benefit to cancer patients.
Insights
A novel antibody, IMC-18F1, effectively blocks Vascular Endothelial Growth Factor Receptor-1 (VEGFR-1) signaling. This inhibition suppressed tumor growth and enhanced chemotherapy efficacy in preclinical cancer models.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Vascular Endothelial Growth Factor Receptor-1 (VEGFR-1) is crucial for tumor growth by influencing tumor vascular endothelium and cancer cells.
- Blocking VEGFR-1 activation inhibits pathological angiogenesis and tumor growth, identifying it as a potential cancer therapeutic target.
Purpose of the Study:
- To develop and evaluate the antitumor activity of IMC-18F1, a human monoclonal antibody targeting VEGFR-1, in preclinical cancer models.
- To assess the therapeutic potential of IMC-18F1 for clinical cancer treatment.
Main Methods:
- Generation of anti-VEGFR-1 antibodies in human IgG transgenic mice.
- Identification of specific blocking antibodies using binding and blocking assays.
- Assessment of IMC-18F1's inhibitory activity in cell-based kinase and growth assays.
- Evaluation of antitumor efficacy in human breast cancer xenograft models, both as monotherapy and in combination with cytotoxic agents.
Main Results:
- IMC-18F1 demonstrated high-affinity inhibition (KD=54 pmol) of VEGFR-1 ligand binding (VEGF-A, VEGF-B, placental growth factor).
- IMC-18F1 inhibited VEGFR-1 intracellular activation and downstream signaling, preventing ligand-stimulated breast cancer cell growth in vitro.
- In vivo, IMC-18F1 suppressed tumor xenograft growth, reducing MAPK and Akt activation, decreasing proliferation, and increasing apoptosis.
- Pharmacokinetic studies showed a 5-day half-life for IMC-18F1, with a therapeutic threshold of 88 microg/mL.
- Combination therapy with IMC-18F1 and cytotoxic agents enhanced antitumor efficacy.
Conclusions:
- Preclinical studies validated IMC-18F1 as a promising VEGFR-1 antagonist.
- IMC-18F1 exhibits significant potential for clinical benefit in cancer patients.
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