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Updated: Jul 9, 2026

Analyzing Tumor and Tissue Distribution of Target Antigen Specific Therapeutic Antibody
Published on: May 16, 2020
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
Abstract:
The oncofetal protein, 5T4, is a tumor-associated protein displayed on the cell membrane of various carcinomas. This molecule is a promising target for anti-tumor vaccine development and for targeted therapy with staphylococcus exotoxin. The potential use of 5T4 as a target for antibody-guided chemotherapy has not been demonstrated. We report oncolytic efficacy and selectivity in vitro and in vivo with immuno-conjugates of calicheamicin (CM) and the anti-5T4 antibody, H8. CM is a potent cytotoxic drug that causes double strand breaks in DNA. Conjugates of CM and H8 were constructed with acid-labile as well as acid-stabile linkers. In vitro, when applied to monolayers of 5T4(+) cells, CM-conjugates targeting 5T4 were consistently more toxic than either free drug or a non-binding control CM-conjugate. This difference was less pronounced on 5T4-deficient cells. In vivo, four 5T4-positive subcutaneous tumor models were treated with conjugates. Efficacy was demonstrated by reduction of tumor growth relative to controls treated with drug vehicle. To evidence selectivity, the efficacy of the anti-5T4 conjugates was compared to the efficacy of H8, a mixture of H8 and calicheamicin, calicheamicin alone or calicheamicin conjugated to the anti-CD33 antibody, hP67.6. In addition, the efficacy and selectivity of an acid-labile conjugate of H8 was evaluated in an orthotopic model for 5T4(+) lung cancer. Increased survival following treatment was used as a parameter of efficacy. Calicheamicin conjugates of H8 were effective and selective in all the examined tumor models. Differences in efficacy between the acid-labile and acid-stabile conjugates depended on the investigated tumor model.
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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