Antibody-drug conjugates designed to eradicate tumors with homogeneous and heterogeneous expression of the target antigen

Conjugates of the anti-CanAg humanized monoclonal antibody huC242 with the microtubule-formation inhibitor DM1 (a maytansinoid), or with the DNA alkylator DC1 (a CC1065 analogue), have been evaluated for their ability to eradicate mixed cell populations formed from CanAg-positive and CanAg-negative...

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Veröffentlicht in:Cancer research (Chicago, Ill.) Ill.), 2006-03, Vol.66 (6), p.3214-3221
Hauptverfasser: KOVTUN, Yelena V, AUDETTE, Charlene A, YUMEI YE, HONGSHENG XIE, RUBERTI, Mary F, PHINNEY, Sara J, LEECE, Barbara A, CHITTENDEN, Thomas, BLÄTTLER, Walter A, GOLDMACHER, Victor S
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Sprache:eng
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Zusammenfassung:Conjugates of the anti-CanAg humanized monoclonal antibody huC242 with the microtubule-formation inhibitor DM1 (a maytansinoid), or with the DNA alkylator DC1 (a CC1065 analogue), have been evaluated for their ability to eradicate mixed cell populations formed from CanAg-positive and CanAg-negative cells in culture and in xenograft tumors in mice. We found that in culture, conjugates of either drug killed not only the target antigen-positive cells but also the neighboring antigen-negative cells. Furthermore, we showed that, in vivo, these conjugates were effective in eradicating tumors containing both antigen-positive and antigen-negative cells. The presence of antigen-positive cells was required for this killing of bystander cells. This target cell-activated killing of bystander cells was dependent on the nature of the linker between the antibody and the drug. Conjugates linked via a reducible disulfide bond were capable of exerting the bystander effect whereas equally potent conjugates linked via a nonreducible thioether bond were not. Our data offer a rationale for developing optimally constructed antibody-drug conjugates for treating tumors that express the target antigen either in a homogeneous or heterogeneous manner.
ISSN:0008-5472
1538-7445
DOI:10.1158/0008-5472.CAN-05-3973