IMGN853, a Folate Receptor-α (FRα)-Targeting Antibody-Drug Conjugate, Exhibits Potent Targeted Antitumor Activity against FRα-Expressing Tumors

  • Mol Cancer Ther. 2015 Jul;14(7):1605-13. doi: 10.1158/1535-7163.MCT-14-1095.
Olga Ab  1 Kathleen R Whiteman  2 Laura M Bartle  3 Xiuxia Sun  4 Rajeeva Singh  4 Daniel Tavares  5 Alyssa LaBelle  6 Gillian Payne  7 Robert J Lutz  8 Jan Pinkas  2 Victor S Goldmacher  3 Thomas Chittenden  9 John M Lambert  9
Affiliations
  • 1. Department of Cell Biology, ImmunoGen, Inc., Waltham, Massachusetts. [email protected].
  • 2. Department of Pharmacology Toxicology, ImmunoGen, Inc., Waltham, Massachusetts.
  • 3. Department of Cell Biology, ImmunoGen, Inc., Waltham, Massachusetts.
  • 4. Department of Biochemistry, ImmunoGen, Inc., Waltham, Massachusetts.
  • 5. Department of Antibody Engineering, ImmunoGen, Inc., Waltham, Massachusetts.
  • 6. Department of Biomarkers, ImmunoGen, Inc., Waltham, Massachusetts.
  • 7. Department of Bioanalytical Science, ImmunoGen, Inc., Waltham, Massachusetts.
  • 8. Department of Translational Research and Development, ImmunoGen, Inc., Waltham, Massachusetts.
  • 9. Research and Development, ImmunoGen, Inc., Waltham, Massachusetts.
Abstract

A majority of ovarian and non-small cell lung adenocarcinoma cancers overexpress folate receptor α (FRα). Here, we report the development of an anti-FRα antibody-drug conjugate (ADC), consisting of a FRα-binding antibody attached to a highly potent maytansinoid that induces cell-cycle arrest and cell death by targeting microtubules. From screening a large panel of anti-FRα monoclonal antibodies, we selected the humanized antibody M9346A as the best antibody for targeted delivery of a maytansinoid payload into FRα-positive cells. We compared M9346A conjugates with various linker/maytansinoid combinations, and found that a conjugate, now denoted as IMGN853, with the N-succinimidyl 4-(2-pyridyldithio)-2-sulfobutanoate (sulfo-SPDB) linker and N(2')-deacetyl-N(2')-(4-mercapto-4-methyl-1-oxopentyl)-maytansine (DM4) exhibited the most potent antitumor activity in several FRα-expressing xenograft tumor models. The level of expression of FRα on the surface of cells was a major determinant in the sensitivity of tumor cells to the cytotoxic effect of the conjugate. Efficacy studies of IMGN853 in xenografts of ovarian Cancer and non-small cell lung Cancer cell lines and of a patient tumor-derived xenograft model demonstrated that the ADC was highly active against tumors that expressed FRα at levels similar to those found on a large fraction of ovarian and non-small cell lung Cancer patient tumors, as assessed by immunohistochemistry. IMGN853 displayed cytotoxic activity against FRα-negative cells situated near FRα-positive cells (bystander cytotoxic activity), indicating its ability to eradicate tumors with heterogeneous expression of FRα. Together, these findings support the clinical development of IMGN853 as a novel targeted therapy for patients with FRα-expressing tumors.

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