BCL-X<sub>L</sub>-targeting antibody-drug conjugates are active in preclinical models and mitigate on-mechanism toxicity of small-molecule inhibitors.

Judd, Andrew S; Bawa, Bhupinder; Buck, Wayne R; Tao, Zhi-Fu; Li, Yingchun; Mitten, Michael J; Bruncko, Milan; Catron, Nathaniel et al. · Sci Adv · 2024

basic_science · Level V

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Abstract

Overexpression of the antiapoptotic protein B-cell lymphoma-extra large (BCL-X<sub>L</sub>) is associated with drug resistance and disease progression in numerous cancers. The compelling nature of this protein as a therapeutic target prompted efforts to develop selective small-molecule BCL-X<sub>L</sub> inhibitors. Although efficacious in preclinical models, we report herein that selective BCL-X<sub>L</sub> inhibitors cause severe mechanism-based cardiovascular toxicity in higher preclinical species. To overcome this liability, antibody-drug conjugates were constructed using altered BCL-X<sub>L</sub>-targeting warheads, unique linker technologies, and therapeutic antibodies. The epidermal growth factor receptor-targeting antibody-drug conjugate AM1-15 inhibited growth of tumor xenografts and did not cause cardiovascular toxicity nor dose-limiting thrombocytopenia in monkeys. While an unprecedented BCL-X<sub>L</sub>-mediated toxicity was uncovered in monkey kidneys upon repeat dosing of AM1-15, this toxicity was mitigated via further drug-linker modification to afford AM1-AAA (AM1-25). The AAA drug-linker has since been incorporated into mirzotamab clezutoclax, the first selective BCL-X<sub>L</sub>-targeting agent to enter human clinical trials.

Medical subject headings