학술논문

Serial monitoring of human systemic and xenograft models of leukemia using a novel vascular disrupting agent.
Document Type
Article
Source
Leukemia (08876924). Aug2012, Vol. 26 Issue 8, p1771-1778. 8p. 4 Graphs.
Subject
*ACUTE leukemia
*XENOGRAFTS
*PYROPHOSPHATES
*REPORTER genes
*BIOLUMINESCENCE
*BIOMARKERS
*ENDOTHELIAL cells
*LEUKEMIA treatment
Language
ISSN
0887-6924
Abstract
Advances in the treatment of acute leukemia have resulted in significantly improved remission rates, although disease relapse poses a significant risk. By utilizing sensitive, non-invasive imaging guidance, detection of early leukemic infiltration and the extent of residual tumor burden after targeted therapy can be expedited, leading to more efficient treatment planning. We demonstrated marked survival benefit and therapeutic efficacy of a new-generation vascular disrupting agent, combretastatin-A1-diphosphate (OXi4503), using reporter gene-imaging technologies and mice systemically administered luc+ and GFP+ human leukemic cells (LCs). Before treatment, homing of double-transduced cells was serially monitored and whole-body cellular distributions were mapped using bioluminescence imaging (BLI). Imaging findings strongly correlated with quantitative GFP expression levels in solid organs/tissues, suggesting that the measured BLI signal provides a highly sensitive and reliable biomarker of tumor tissue burden in systemic leukemic models. Such optical technologies can thereby serve as robust non-invasive imaging tools for preclinical drug discovery and for rapidly screening promising therapeutic agents to establish potency, treatment efficacy and survival advantage. We further show that GFP+ HL-60 cells reside in close proximity to VE-cadherin- and CD31-expressing endothelial cells, suggesting that the perivascular niche may have a critical role in the maintenance and survival of LCs. [ABSTRACT FROM AUTHOR]