The sesquiterpene lactone parthenolide induces apoptosis of human acute myelogenous leukemia stem and progenitor cells
Сесквитерпеновый лактон партенолид индуцирует апоптоз стволовых и прогениторных клеток острого миелолейкоза человека
2005-02-02
SCID: 54.1/77wtsbp9
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NF-kappaB inhibitionNOD/SCID xenograft modelacute myelogenous leukemia stem cellsleukemia stem cell apoptosisparthenolide
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Abstract (AI)
Recent studies have described malignant stem cells as central to the initiation, growth, and potential relapse of acute and chronic myelogenous leukemia (AML and CML). Because of their important role in pathogenesis, rare and biologically distinct leukemia stem cells (LSCs) represent a critical target for therapeutic intervention. However, to date, very few agents have been shown to directly target the LSC population. The present studies demonstrate that parthenolide (PTL), a naturally occurring small molecule, induces robust apoptosis in primary human AML cells and blast crisis CML (bcCML) cells while sparing normal hematopoietic cells. Furthermore, analysis of progenitor cells using in vitro colony assays, as well as stem cells using the nonobese diabetic/severe combined immunodeficient (NOD/SCID) xenograft model, show that PTL also preferentially targets AML progenitor and stem cell populations. Notably, in comparison to the standard chemotherapy drug cytosine arabinoside (Ara-C), PTL is much more specific to leukemia cells. The molecular mechanism of PTL-mediated apoptosis is strongly associated with inhibition of nuclear factor kappa B (NF-kappaB), proapoptotic activation of p53, and increased reactive oxygen species (ROS). On the basis of these findings, we propose that the activity of PTL triggers LSC-specific apoptosis and as such represents a potentially important new class of drugs for LSC-targeted therapy.
Key Findings
1
Compared with cytosine arabinoside, parthenolide shows substantially greater specificity for leukemia cells.
2
Parthenolide induces robust apoptosis in primary human AML and blast-crisis CML cells while sparing normal hematopoietic cells.
3
Parthenolide preferentially targets AML progenitor and leukemia stem-cell populations, demonstrated through colony assays and NOD/SCID xenografts.
4
Parthenolide-mediated apoptosis is associated with NF-κB inhibition, proapoptotic p53 activation, and increased reactive oxygen species.
5
The findings identify parthenolide as a potential leukemia stem-cell-targeted therapeutic agent.
Research Object
Human acute myelogenous leukemia (AML) stem, progenitor, and primary leukemia cells
Research Subject
Parthenolide-induced preferential apoptosis and its molecular mechanisms, including NF-κB inhibition, p53 activation, and increased reactive oxygen species
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2005-02-02
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