Targeting IL-7Rα with PNU-159682 antibody-drug conjugates in acute lymphoblastic leukemia: translational implications
Shiqi Yang1,2, Takahiro Anzai1,3, Ryo Tsumura1
1Division of Developmental Therapeutics, Exploratory Oncology Research & Clinical Trial Center, National Cancer Center, Kashiwa, Chiba, Japan.
Abstract:
Relapsed acute lymphoblastic leukemia (ALL), particularly with central nervous system (CNS) involvement, remains a major cause of treatment failure and is inadequately controlled by existing antibody-drug conjugates (ADCs) with tubulin inhibitors. To address this limitation, we developed IL-7Rα-targeted monoclonal antibodies and identified clone 577 as the lead candidate. Using this antibody, we generated ADCs conjugated with either monomethyl auristatin E (MMAE) or the highly potent DNA-damaging payload-PNU-159682 (PNU). In head-to-head comparisons, 577-PNU showed >50-fold greater potency than 577-MMAE in vitro and induced complete tumor regression in xenografts at a 20-fold lower dose. Additionally, 577-PNU provided durable systemic disease control and markedly reduced leukemic infiltration in the brain and spinal cord in both preventive and established murine CNS disease models, offering direct evidence of effective CNS penetration. Safety assessments demonstrated stable body weight, normal hematology and serum biochemistry, and no treatment-related pathologies. Collectively, these findings provide the first preclinical evidence that IL-7Rα-directed ADCs armed with DNA-targeting payload PNU-159682 can achieve durable elimination of systemic and CNS leukemia at tolerable doses, demonstrating both clinical feasibility and CNS disease control, and establishing a compelling rationale for their translational and clinical development in relapsed and refractory ALL.
Insights
New antibody-drug conjugates targeting IL-7Rα show potent activity against relapsed acute lymphoblastic leukemia (ALL), including CNS involvement. The PNU-159682 payload demonstrated superior efficacy and CNS penetration in preclinical models.
Area of Science:
- Oncology
- Immunotherapy
- Drug Development
Background:
- Relapsed acute lymphoblastic leukemia (ALL) with central nervous system (CNS) involvement presents a significant therapeutic challenge.
- Existing antibody-drug conjugates (ADCs) targeting tubulin inhibitors show limited efficacy in CNS ALL.
Purpose of the Study:
- To develop novel IL-7Rα-targeted ADCs with enhanced potency and CNS penetration for relapsed ALL.
- To evaluate the efficacy and safety of ADCs conjugated with monomethyl auristatin E (MMAE) or PNU-159682.
Main Methods:
- Development of IL-7Rα-targeted monoclonal antibody clone 577.
- Generation of ADCs by conjugating clone 577 with MMAE or PNU-159682.
- In vitro potency assays, xenograft studies, and murine CNS leukemia models were used for evaluation.
Main Results:
- The 577-PNU ADC exhibited >50-fold greater potency than 577-MMAE in vitro.
- 577-PNU achieved complete tumor regression at a 20-fold lower dose in xenografts.
- Significant reduction in systemic and CNS leukemia burden was observed with 577-PNU, demonstrating CNS penetration.
Conclusions:
- IL-7Rα-directed ADCs with the DNA-targeting payload PNU-159682 offer a promising therapeutic strategy for relapsed and refractory ALL.
- These novel ADCs demonstrate preclinical efficacy in controlling both systemic and CNS leukemia with a favorable safety profile.
- The findings support the translational and clinical development of 577-PNU for ALL treatment.


