drugset / Trial / NCT02123836

Natural Killer Cells in Acute Leukaemia and Myelodysplastic Syndrome

NCT02123836

Phase 1 Unknown 20 enrolled National University Hospital, Singapore
NaSingle-groupOpen-labelTreatment

Summary

A novel method has been developed to expand natural (NK) cells and enhance their cytotoxicity against cancer cells while maintaining low killing capacity against non-transformed cells. In this method, donor NK cells are expanded by co-culture with the irradiated K562 cell line modified to express membrane bound IL-15 and 41BB ligand (K562-mb15-41BBL). Expression of these proteins in conjunction with unknown stimuli provided by K562 cells promotes selective growth of NK cells. Then, the expanded NK cell population is depleted of T cells to prevent graft versus host disease (GVHD). Expanded and activated NK cells showed powerful anti-leukemic activity against acute myeloid leukemia (AML) cells in vitro and in animal models of leukemia.Unpublished laboratory results also demonstrated that T-cell acute lymphoblastic leukaemia (T-ALL) is extremely sensitive to the cytotoxicity exerted by the expanded and activated NK cells. The present study represents the translation of the laboratory findings into clinical application. The study proposes to determine the feasibility, safety and efficacy of infusing expanded NK cells into patients who have AML or T-lineage ALL which is resistant to standard therapy as demonstrated by persistent minimal residual disease (MRD). Patients with myelodysplastic syndrome (MDS), who are at high risk to develop AML will also be eligible for the study. In this patient cohort, the study will also investigate the in vivo lifespan and phenotype of the expanded NK cells. The main hypothesis to be tested in this study is that infusion of expanded activated NK cells can produce measurable clinical responses in patients with AML or T-ALL.

Timeline

Start
2014-04
Primary completion
2020-09
Completion
2020-10

Drugs

EvaluationDrugModalityDoseRoute
Subject TROCULEUCEL Cell therapy 5e+06 cells/kg Intravenous
Subject TROCULEUCEL Cell therapy 1e+08 cells/kg Intravenous
Subject TROCULEUCEL Cell therapy 2e+08 cells/kg Intravenous