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.

Cancers
|January 5, 2021
PubMed

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.