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Drug Conjugates Based on a Monovalent Affibody Targeting Vector Can Efficiently Eradicate HER2 Positive Human Tumors
Tianqi Xu1, Haozhong Ding2, Anzhelika Vorobyeva1,3
1Department of Immunology, Genetics and Pathology, Uppsala University, 751 85 Uppsala, Sweden.
Abstract:
The human epidermal growth factor receptor 2 (HER2) is frequently overexpressed in a variety of cancers and therapies targeting HER2 are routinely used in the clinic. Recently, small engineered scaffold proteins, such as affibody molecules, have shown promise as carriers of cytotoxic drugs, and these drug conjugates may become complements or alternatives to the current HER2-targeting therapies. Here, we investigated if a monovalent HER2-binding affibody molecule, ZHER2:2891, fused with a plasma half-life extending albumin binding domain (ABD), may be used as carrier of the cytotoxic maytansine derivate mcDM1. We found that the resulting drug conjugate, ZHER2:2891-ABD-E3-mcDM1, had strong affinity for its cognate molecular targets: HER2 and serum albumin. ZHER2:2891-ABD-E3-mcDM1 displayed potent cytotoxic activity towards cells with high HER2 expression, with IC50 values ranging from 0.6 to 33 nM. In vivo, an unspecific increase in uptake in the liver, imparted by the hydrophobic mcDM1, was counteracted by incorporation of hydrophilic and negatively charged glutamate residues near the site of mcDM1 conjugation. A dose-escalation experiment showed that increasing doses up to 15.1 mg/kg gave a proportional increase in uptake in xenografted HER2-overexpressing SKOV3 tumors, after which the tumors became saturated. Experimental therapy with four once-weekly injection of 10.3 or 15.1 mg/kg led to efficient regression of tumors in all animals and complete regression in some. Weight loss was detected for some animals in the group receiving the highest dose, suggesting that it was close to the maximum tolerated dose. In conclusion, the monovalent HER2-targeting affibody drug conjugate presented herein have potent anti-tumor activity in vivo.
Insights
A novel HER2-targeting affibody drug conjugate, ZHER2:2891-ABD-E3-mcDM1, demonstrates potent anti-tumor activity. This engineered protein effectively delivers cytotoxic maytansine derivative mcDM1 to HER2-overexpressing cancer cells, leading to significant tumor regression in vivo.
Area of Science:
- Oncology
- Biotechnology
- Molecular Medicine
Background:
- Human Epidermal growth factor Receptor 2 (HER2) overexpression is common in various cancers.
- Current HER2-targeted therapies are established, but novel approaches are needed.
- Engineered scaffold proteins like affibody molecules show potential as drug carriers.
Purpose of the Study:
- To investigate the potential of a monovalent HER2-binding affibody molecule (ZHER2:2891) fused with an albumin-binding domain (ABD) as a carrier for the cytotoxic maytansine derivative mcDM1.
- To evaluate the drug conjugate ZHER2:2891-ABD-E3-mcDM1 for its affinity, cytotoxicity, in vivo efficacy, and safety.
Main Methods:
- Affinity assessment for HER2 and serum albumin.
- In vitro cytotoxicity assays on HER2-expressing cells.
- In vivo studies using xenografted HER2-overexpressing SKOV3 tumors in mice.
- Dose-escalation and therapeutic efficacy experiments.
Main Results:
- The conjugate ZHER2:2891-ABD-E3-mcDM1 exhibited strong binding affinity to HER2 and albumin.
- Potent in vitro cytotoxicity was observed against HER2-expressing cells (IC50: 0.6–33 nM).
- In vivo, the conjugate showed dose-dependent tumor uptake and significant tumor regression, with some complete regressions observed at 10.3 and 15.1 mg/kg doses.
Conclusions:
- The HER2-targeting affibody drug conjugate ZHER2:2891-ABD-E3-mcDM1 possesses potent anti-tumor activity.
- The engineered conjugate demonstrates promising therapeutic potential as an alternative or complement to existing HER2-targeted therapies.
- Further studies are warranted to optimize dosage and assess maximum tolerated dose in preclinical models.
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