A novel CD7-directed antibody-drug conjugate targeting BCL-XL with potent anti-leukemic activity in T-cell acute lymphoblastic leukemia
摘要
Current treatments of T-cell acute lymphoblastic leukemia (T-ALL) are based on intensive chemotherapy regimens which provide overall survival rates of ~85% in children and <50% in adults. Therefore, there is an unmet need for novel therapeutic options in T-ALL. Pre-clinical studies and clinical trials have demonstrated that inhibitors of BCL-XL and/or BCL-2, two anti-apoptotic proteins of the BCL-2 family, are anti-leukemic in T-ALL. However, BCL-XL inhibitors (BCL-XLi) efficacy is undermined by severe, on-target thrombocytopenia. We report here the design of a novel anti-hCD7 mAb-based ADC carrying a BCL-XL-selective inhibitor (ADC-CD7-BCL-XLi) that circumvents this significant limitation. We show that ADC-CD7-BCL-XLi efficiently kills most T-ALL cell lines. Using T-ALL PDXs we further show that (i) ADC-CD7-BCL-XLi displays potent anti-leukemic activity and is devoid of toxicity to platelets; (ii) ADC-CD7-BCL-XLi acts synergistically with venetoclax, a BCL-2 selective antagonist, to prolong leukemia remission and mouse survival; (iii) the anti-leukemic effect of the ADC-CD7-BCL-XLi+venetoclax combination can lead to cure when combined with chemotherapy. These pre-clinical data strongly support the evaluation of ADC-CD7-BCL-XLi in T-ALL patients, including as a potential bridging option to curative hematopoietic stem cell transplantation (HSCT).