An in vitro model for cytogenetic conversion in CML. Interferon-α preferentially inhibits the outgrowth of malignant stem cells preserved in long-term culture

24Citations
Citations of this article
9Readers
Mendeley users who have this article in their library.

Abstract

IFN-α has been shown to prolong survival in chronic myeloid leukemia patients, but its mechanism of action is still not understood. The human cobblestone area-forming cell (CAFC) assay allows for the measurement of the concentration of normal as well as malignant stem cells, while their progeny can be measured in parallel long-term culture (LTC) in flasks. Using CAFC and LTC assays, we have examined direct effects of IFN-α (500; 5,000 IU/ml) on the maintenance and outgrowth of CD34-enriched normal and malignant stem cells, obtained from six patients with an established major cytogenetic response to IFN-α and from four nonresponding patients. CAFC concentrations were not affected by IFN-α. In contrast, IFN-α strongly inhibited the clonogenic output in flask LTC. Nucleated cells (NC) produced in LTC were evaluated by fluorescent in situ hybridization (FISH) for the presence of the Philadelphia (Ph) translocation. After 8 wk of LTC, the percentage of Ph+ NCs produced was significantly more inhibited by IFN-α in responding patients than in nonresponders. Control LTC without IFN-α showed no significant differences of Ph+ NC production between responders and nonresponders. These findings provide the first in vitro model for cytogenetic conversion and suggest that direct antiproliferative effects of IFN-α account for the cytogenetic response observed clinically.

Cite

CITATION STYLE

APA

Cornelissen, J. J., Ploemacher, R. E., Wognum, B. W., Borsboom, A., Kluin-Nelemans, H. C., Hagemeijer, A., & Löwenberg, B. (1998). An in vitro model for cytogenetic conversion in CML. Interferon-α preferentially inhibits the outgrowth of malignant stem cells preserved in long-term culture. Journal of Clinical Investigation, 102(5), 976–983. https://doi.org/10.1172/JCI2366

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free