The oncofetal protein, 5T4, is a suitable target for antibody-guided anti-cancer chemotherapy with calicheamicin

E R Boghaert1, L Sridharan, K M Khandke

  • 1Wyeth Research, 10965 Pearl River, NY, USA. boghaee@wyeth.com

Insights

Antibody-drug conjugates targeting the 5T4 oncofetal antigen demonstrated potent and selective anti-tumor efficacy. These calicheamicin-H8 conjugates show promise for targeted cancer chemotherapy.

Area of Science:

  • Oncology
  • Immunotherapy
  • Molecular Biology

Background:

  • 5T4 is an oncofetal antigen found on various carcinomas, making it a potential target for cancer therapies.
  • Previous research explored 5T4 for anti-tumor vaccines and exotoxin therapy, but its use in antibody-guided chemotherapy was not established.

Purpose of the Study:

  • To evaluate the oncolytic efficacy and selectivity of immuno-conjugates comprising calicheamicin (CM) and the anti-5T4 antibody (H8).
  • To investigate the potential of 5T4 as a target for antibody-guided chemotherapy using novel drug conjugates.

Main Methods:

  • Development of calicheamicin-H8 conjugates using both acid-labile and acid-stabile linkers.
  • In vitro assessment of conjugate toxicity on 5T4-positive and 5T4-deficient cell lines.
  • In vivo evaluation of conjugate efficacy and selectivity in four subcutaneous 5T4-positive tumor models and one orthotopic lung cancer model.

Main Results:

  • CM-H8 conjugates showed significantly higher toxicity against 5T4-positive cells in vitro compared to free drug or control conjugates.
  • In vivo studies demonstrated significant tumor growth reduction in 5T4-positive models treated with CM-H8 conjugates.
  • Conjugates exhibited selectivity, outperforming unconjugated drug, antibody, or control conjugates, with efficacy varying between acid-labile and acid-stabile linkers depending on the tumor model.

Conclusions:

  • Calicheamicin-H8 conjugates are effective and selective against 5T4-expressing tumors.
  • The study validates 5T4 as a viable target for antibody-drug conjugate-based cancer therapy.
  • Linker stability influences conjugate efficacy, suggesting tailored conjugate design for specific tumor types.

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