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Clinical Trial Summary

Acute myeloid leukemia (AML) accounts for more than 40% of leukemia mortality in the United States. Each year around ten thousand people die from the disease, most within a few years of diagnosis. Despite advances in our understanding of the disease, few improvements in the therapy of AML have been made. Collecting specimens from the blood and bone marrow will increase understanding of the effect of Dipeptidyl Peptidase-4 (DPP-4) Inhibitors on human AML-SCP to develop individualized therapies. We also found DPP4 is highly expressed in other hematological malignancies in our mouse model, thus we would like to use human samples to investigate the role of DPP4 in hematological malignancy development and the mechanism underlying, especially to deeply understand the role of DDP4 in leukemia.


Clinical Trial Description

Specific targets and novel strategies to eliminate AML stem cells are required for AML treatment. Collecting specimens from the blood and bone marrow will increase understanding of the effect of DPP4 inhibitors on human AML-SCP to develop individualized therapies. We will test the effect of DPP4 inhibitors on human AML-SCP in vitro and in vivo and whether the addition of DPP4 inhibitors can prevent AML relapse once the disease is in the remission stage. Chronic myeloid leukemia (CML) is a stem cell (SC) neoplasm characterized by the BCR/ABL1 oncogene. CML is a steadily developing blood and bone marrow disease that has three stages: chronic, accelerated, and blastic. If it reaches the blastic process, it is known as acute leukemia, which is the same as AML. While the mechanisms of BCR/ABL1-induced transformation are well understood, little is known about the effector molecules that contribute to leukemic SC (LSC) malignant expansion and extramedullary spread in CML. Furthermore, DPP4 is not only highly expressed in leukemia samples, but also specifically expressed in some of the other hematological malignancies, such as AML, CML, ALL, CLL, Lymphomas, or Myelomas, and may work as a stem cell marker as well. At this point, we would like to use human blood samples to investigate the role of DPP4 in hematological malignancy to deeply understand the role of DPP4 in leukemia. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT04841447
Study type Observational
Source University of Missouri-Columbia
Contact Xunlei Kang, MD.PhD
Phone 5738844524
Email kangxu@health.missouri.edu
Status Recruiting
Phase
Start date March 20, 2020
Completion date March 20, 2026

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