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Updated: Jun 16, 2026

Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
Generation and in vivo characterization of a novel high-affinity human antibody targeting carcinoembryonic antigen
Louis Plüss1,2, Frederik Peissert1, Abdullah Elsayed1,2
1Philochem AG, Libernstrasse 3, Otelfingen, Switzerland.
Abstract:
There are no effective treatment options for most patients with metastatic colorectal cancer (mCRC). mCRC remains a leading cause of tumor-related death, with a five-year survival rate of only 15%, highlighting the urgent need for novel pharmacological products. Current standard drugs are based on cytotoxic chemotherapy, VEGF inhibitors, EGFR antibodies, and multikinase inhibitors. The antibody-based delivery of pro-inflammatory cytokines provides a promising and differentiated strategy to improve the treatment outcome for mCRC patients. Here, we describe the generation of a novel fully human monoclonal antibody (termed F4) targeting the carcinoembryonic antigen (CEA), a tumor-associated antigen overexpressed in colorectal cancer and other malignancies. The F4 antibody was selected by antibody phage display technology after two rounds of affinity maturation. F4 in single-chain variable fragment format bound to CEA in surface plasmon resonance with an affinity of 7.7 nM. Flow cytometry and immunofluorescence on human cancer specimens confirmed binding to CEA-expressing cells. F4 selectively accumulated in CEA-positive tumors, as evidenced by two orthogonal in vivo biodistribution studies. Encouraged by these results, we genetically fused murine interleukin (IL) 12 to F4 in the single-chain diabody format. F4-IL12 exhibited potent antitumor activity in two murine models of colon cancer. Treatment with F4-IL12 led to an increased density of tumor-infiltrating lymphocytes and an upregulation of interferon γ expression by tumor-homing lymphocytes. These data suggest that the F4 antibody is an attractive delivery vehicle for targeted cancer therapy.
Insights
A novel antibody targeting carcinoembryonic antigen (CEA) delivers interleukin 12 (IL-12) to effectively treat metastatic colorectal cancer (mCRC) by boosting anti-tumor immune responses.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Metastatic colorectal cancer (mCRC) has limited treatment options and a poor prognosis.
- Current therapies for mCRC include chemotherapy and targeted agents, but novel strategies are urgently needed.
- Antibody-based delivery of cytokines offers a promising approach for enhanced cancer therapy.
Purpose of the Study:
- To develop a novel antibody-drug conjugate for targeted mCRC treatment.
- To evaluate the efficacy of an antibody targeting carcinoembryonic antigen (CEA) fused with interleukin 12 (IL-12).
Main Methods:
- Generation of a fully human monoclonal antibody (F4) against CEA using phage display and affinity maturation.
- Characterization of F4 binding affinity and specificity using surface plasmon resonance, flow cytometry, and immunofluorescence.
- In vivo biodistribution studies to confirm tumor accumulation.
- Genetic fusion of F4 with IL-12 (F4-IL12) and evaluation of its antitumor activity in murine colon cancer models.
Main Results:
- The F4 antibody demonstrated high affinity (7.7 nM) for CEA and selective binding to CEA-expressing tumor cells.
- In vivo studies confirmed F4's preferential accumulation in CEA-positive tumors.
- F4-IL12 treatment significantly inhibited tumor growth in murine models.
- F4-IL12 therapy increased tumor-infiltrating lymphocytes and interferon-γ expression.
Conclusions:
- The F4 antibody is a suitable delivery vehicle for targeted cancer therapy.
- F4-IL12 exhibits potent antitumor activity, suggesting its potential as a novel therapeutic agent for mCRC.
- Targeted delivery of IL-12 via F4 enhances anti-tumor immunity, offering a promising strategy for mCRC treatment.
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