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Glutaminase inhibition in combination with azacytidine in myelodysplastic syndromes: a phase 1b/2 clinical trial and correlative analyses

  • Courtney D. DiNardo,
  • Divij Verma,
  • Natalia Baran,
  • Tushar D. Bhagat,
  • Anna Skwarska,
  • Alessia Lodi,
  • Kapil Saxena,
  • Tianyu Cai,
  • Xiaoping Su,
  • Veronica A. Guerra,
  • Gowri Poigaialwar,
  • Vinitha M. Kuruvilla,
  • Sergej Konoplev,
  • Shanisha Gordon-Mitchell,
  • Kith Pradhan,
  • Srinivas Aluri,
  • G. Lavender Hackman,
  • Sovira Chaudhry,
  • Meghan Collins,
  • Shannon R. Sweeney,
  • Jonathan Busquets,
  • Atul Singh Rathore,
  • Qing Deng,
  • Michael R. Green,
  • Steven Grant,
  • Susan Demo,
  • Gaurav S. Choudhary,
  • Srabani Sahu,
  • Beamon Agarwal,
  • Mason Spodek,
  • Victor Thiruthuvanathan,
  • Britta Will,
  • Ulrich Steidl,
  • George D. Tippett,
  • Jan Burger,
  • Gautam Borthakur,
  • Elias Jabbour,
  • Naveen Pemmaraju,
  • Tapan Kadia,
  • Steven Kornblau,
  • Naval G. Daver,
  • Kiran Naqvi,
  • Nicholas J. Short,
  • Guillermo Garcia-Manero,
  • Stefano Tiziani,
  • Amit Verma,
  • Marina Konopleva

摘要

Malignancies are reliant on glutamine as an energy source and a facilitator of aberrant DNA methylation. We demonstrate preclinical synergy of telaglenastat (CB-839), a selective glutaminase inhibitor, combined with azacytidine (AZA), followed by a single-arm, open-label, phase 1b/2 study in persons with advanced myelodysplastic syndrome (MDS). The dual primary endpoints evaluated clinical activity, safety and tolerability; secondary endpoints evaluated pharmacokinetics, pharmacodynamics, overall survival, event-free survival and duration of response. The dose-escalation study included six participants and the dose-expansion study included 24 participants. Therapy was well tolerated and led to an objective response rate of 70% with (marrow) complete remission in 53% of participants and a median overall survival of 11.6 months, with evidence of myeloid differentiation in responders determined by single-cell RNA sequencing. Glutamine transporter solute carrier family 38 member 1 in MDS stem cells was associated with clinical responses and predictive of worse prognosis in a large MDS cohort. These data demonstrate the safety and efficacy of CB-839 and AZA as a combined metabolic and epigenetic approach in MDS. ClinicalTrials.gov identifier: NCT03047993.