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Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
Targeting CEACAM5-positive solid tumors using NILK-2401, a novel CEACAM5xCD47 κλ bispecific antibody
Anja Seckinger1,2, Vanessa Buatois3, Valéry Moine3
1LamKap Bio beta AG, Pfäffikon SZ, Switzerland.
Background:
Blocking the CD47 "don't eat me"-signal on tumor cells with monoclonal antibodies or fusion proteins has shown limited clinical activity in hematologic malignancies and solid tumors thus far. Main side effects are associated with non-tumor targeted binding to CD47 particularly on blood cells.
Methods:
We present here the generation and preclinical development of NILK-2401, a CEACAM5×CD47 bispecific antibody (BsAb) composed of a common heavy chain and two different light chains, one kappa and one lambda, determining specificity (so-called κλ body format).
Results:
NILK-2401 is a fully human BsAb binding the CEACAM5 N-terminal domain on tumor cells by its lambda light chain arm with an affinity of ≈4 nM and CD47 with its kappa chain arm with an intendedly low affinity of ≈500 nM to enabling tumor-specific blockade of the CD47-SIRPα interaction. For increased activity, NILK-2401 features a functional IgG1 Fc-part. NILK-2401 eliminates CEACAM5-positive tumor cell lines (3/3 colorectal, 2/2 gastric, 2/2 lung) with EC50 for antibody-dependent cellular phagocytosis and antibody-dependent cellular cytotoxicity ranging from 0.38 to 25.84 nM and 0.04 to 0.25 nM, respectively. NILK-2401 binds neither CD47-positive/CEACAM5-negative cell lines nor primary epithelial cells. No erythrophagocytosis or platelet activation is observed. Quantification of the pre-existing NILK-2401-reactive T-cell repertoire in the blood of 14 healthy donors with diverse HLA molecules shows a low immunogenic potential. In vivo, NILK-2401 significantly delayed tumor growth in a NOD-SCID colon cancer model and a syngeneic mouse model using human CD47/human SIRPα transgenic mice and prolonged survival. In cynomolgus monkeys, single doses of 0.5 and 20 mg/kg were well tolerated; PK linked to anti-CD47 and Fc-binding seemed to be more than dose-proportional for Cmax and AUC0-inf. Data were validated in human FcRn TG32 mice. Combination of a CEACAM5-targeting T-cell engager (NILK-2301) with NILK-2401 can either boost NILK-2301 activity (Emax) up to 2.5-fold or allows reaching equal NILK-2301 activity at >600-fold (LS174T) to >3,000-fold (MKN-45) lower doses.
Conclusion:
NILK-2401 combines promising preclinical activity with limited potential side effects due to the tumor-targeted blockade of CD47 and low immunogenicity and is planned to enter clinical testing.
Insights
NILK-2401, a novel bispecific antibody, effectively targets CEACAM5-positive tumors by blocking the CD47 "don't eat me" signal. This approach shows promising preclinical efficacy with reduced side effects and low immunogenicity, paving the way for clinical trials.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- CD47 blockade is a promising cancer immunotherapy, but clinical activity has been limited.
- Off-target binding of CD47 inhibitors to blood cells causes significant side effects.
- Developing targeted CD47 blockade strategies is crucial for improving efficacy and safety.
Purpose of the Study:
- To develop and evaluate NILK-2401, a novel bispecific antibody targeting CEACAM5 and CD47.
- To assess the preclinical efficacy and safety of NILK-2401 in various cancer models.
- To investigate the potential of NILK-2401 in combination therapies.
Main Methods:
- Generation of NILK-2401, a CEACAM5×CD47 bispecific antibody in a κλ body format.
- In vitro evaluation of NILK-2401's binding affinity, tumor cell elimination (ADCP and ADCC), and specificity.
- In vivo assessment of NILK-2401's anti-tumor activity in mouse models and safety/pharmacokinetics in cynomolgus monkeys.
- Evaluation of NILK-2401 in combination with a CEACAM5-targeting T-cell engager.
Main Results:
- NILK-2401 demonstrated potent elimination of CEACAM5-positive tumor cell lines with low nanomolar EC50 values.
- The bispecific antibody showed tumor-specific binding and activity, with no observed erythrophagocytosis or platelet activation.
- NILK-2401 significantly delayed tumor growth and prolonged survival in preclinical models.
- Combination therapy with NILK-2401 enhanced the efficacy of a CEACAM5-targeting T-cell engager.
Conclusions:
- NILK-2401 exhibits strong preclinical anti-tumor activity and a favorable safety profile.
- Tumor-targeted CD47 blockade with NILK-2401 offers a promising strategy for cancer treatment.
- NILK-2401 demonstrates low immunogenic potential and is well-tolerated in preclinical studies.
- NILK-2401 is poised for clinical development as a novel cancer therapeutic.
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