TY - JOUR T1 - Antiangiogenic Effect of Bevacizumab: Application of Arterial Spin-Labeling Perfusion MR Imaging in a Rat Glioblastoma Model JF - American Journal of Neuroradiology JO - Am. J. Neuroradiol. SP - 1650 LP - 1656 DO - 10.3174/ajnr.A4800 VL - 37 IS - 9 AU - T.J. Yun AU - H.R. Cho AU - S.H. Choi AU - H. Kim AU - J.-K. Won AU - S.-W. Park AU - J.-h. Kim AU - C.-H. Sohn AU - M.H. Han Y1 - 2016/09/01 UR - http://www.ajnr.org/content/37/9/1650.abstract N2 - BACKGROUND AND PURPOSE: The usefulness of arterial spin-labeling for the evaluation of the effect of the antiangiogenic therapy has not been elucidated. Our aim was to evaluate the antiangiogenic effect of bevacizumab in a rat glioblastoma model based on arterial spin-labeling perfusion MR imaging.MATERIALS AND METHODS: DSC and arterial spin-labeling perfusion MR imaging were performed by using a 9.4T MR imaging scanner in nude rats with glioblastoma. Rats were randomly assigned to the following 3 groups: control, 3-day treatment, and 10-day treatment after bevacizumab injection. One-way analysis of variance with a post hoc test was used to compare perfusion parameters (eg, normalized CBV and normalized CBF from DSC MR imaging and normalized CBF based on arterial spin-labeling) with microvessel area on histology. The Pearson correlations between perfusion parameters and microvessel area were also determined.RESULTS: All of the normalized CBV from DSC, normalized CBF from DSC, normalized CBF from arterial spin-labeling, and microvessel area values showed significant decrease after treatment (P < .001, P < .001, P = .005, and P < .001, respectively). In addition, normalized CBV and normalized CBF from DSC and normalized CBF from arterial spin-labeling strongly correlated with microvessel area (correlation coefficient, r = 0.911, 0.869, and 0.860, respectively; P < .001 for all).CONCLUSIONS: Normalized CBF based on arterial spin-labeling and normalized CBV and normalized CBF based on DSC have the potential for evaluating the effect of antiangiogenic therapy on glioblastomas treated with bevacizumab, with a strong correlation with microvessel area.ASLarterial spin-labelingGBMglioblastomaMVAmicrovessel areanCBFnormalized CBFnCBVnormalized CBVrCBFrelative CBFrCBVrelative CBV ER -