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A PBD-dimer containing antibody drug conjugate targeting CCRL2 for high-risk MDS/AML
Abstract:
Patients with myelodysplastic syndrome (MDS)/acute myeloid leukemia (AML) with high-risk features including TP53 mutations and deletions have poor outcomes due to lack of effective therapies. The atypical chemokine surface receptor C-C motif chemokine receptor-like 2 (CCRL2) is overexpressed in MDS and secondary AML (sAML) compared to healthy hematopoietic cells and we recently found that TP53 -mutated MDS/AML and AML with erythroid features express the highest levels of this receptor across MDS/AML subtypes. To illustrate the therapeutic potential of CCRL2 as a therapeutic target, we developed an anti-CCRL2 antibody-drug conjugate (ADC) by conjugating an anti-CCRL2 antibody with the cytotoxic drug pyrrolobenzodiazepine (PBD), which causes DNA double-strand breaks leading to cancer cell death. The anti-CCRL2 ADC demonstrated strong CCRL2-selective cytotoxicity against cell lines derived from MDS/AML patients with TP53 mutations and erythroid features, surpassing the cytotoxic effects observed with gemtuzumab and PBD-conjugated anti-CD33 and anti-CD123 ADCs. It also induced apoptosis and suppressed the clonogenicity of primary MDS/AML bone marrow samples without affecting the survival, differentiation and clonogenicity of healthy hematopoietic stem and progenitor cells. This agent also suppressed the leukemic growth of TP53- mutated MDS/AML cell line xenografts, improving mice survival and decreasing the leukemic burden in patient-derived TP53 -mutated MDS/AML xenografts. In conclusion, our study introduces CCRL2 as a potential new therapeutic target in high-risk MDS/AML.
Statement Of Significance:
Pyrrolobenzodiazepine(PBD)-conjugated anti-CCRL2 ADC shows anti-leukemic effect in MDS/AML models including TP53 -mutated disease without affecting healthy hematopoietic cells supporting that it is a promising candidate for single-agent or combination therapies in high-risk MDS/AML.
Insights
A novel antibody-drug conjugate targeting CCRL2 shows potent anti-leukemic effects in high-risk myelodysplastic syndrome/acute myeloid leukemia models, including TP53-mutated disease, while sparing healthy cells.
Area of Science:
- Hematology
- Oncology
- Immunology
Background:
- High-risk myelodysplastic syndrome (MDS) and acute myeloid leukemia (AML), particularly those with TP53 mutations, have poor prognoses due to limited therapeutic options.
- CC-motif chemokine receptor-like 2 (CCRL2) is overexpressed in MDS and secondary AML (sAML), with highest levels observed in TP53-mutated MDS/AML and AML with erythroid features.
Purpose of the Study:
- To evaluate the therapeutic potential of CCRL2 as a target in high-risk MDS/AML.
- To develop and assess an anti-CCRL2 antibody-drug conjugate (ADC) for its efficacy and safety in preclinical MDS/AML models.
Main Methods:
- Development of an anti-CCRL2 ADC by conjugating an anti-CCRL2 antibody with the cytotoxic pyrrolobenzodiazepine (PBD) payload.
- Assessment of the ADC's cytotoxicity against MDS/AML cell lines and primary patient samples.
- Evaluation of the ADC's in vivo efficacy in xenograft models of TP53-mutated MDS/AML.
Main Results:
- The anti-CCRL2 ADC exhibited potent, CCRL2-selective cytotoxicity against MDS/AML cell lines, outperforming gemtuzumab and other ADCs.
- The ADC induced apoptosis and suppressed clonogenicity in primary MDS/AML cells without harming healthy hematopoietic stem and progenitor cells.
- In vivo studies demonstrated that the anti-CCRL2 ADC suppressed leukemic growth, improved survival, and reduced tumor burden in xenograft models.
Conclusions:
- CCRL2 is a promising therapeutic target for high-risk MDS/AML.
- The developed anti-CCRL2 ADC demonstrates significant anti-leukemic activity and a favorable safety profile in preclinical models.
- This ADC holds potential as a single-agent or combination therapy for patients with high-risk MDS/AML, especially those with TP53 mutations.
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