Proton magnetic resonance spectroscopy predicts proliferative activity in diffuse low-grade gliomas

被引:0
作者
Remy Guillevin
Carole Menuel
Hugues Duffau
Michel Kujas
Laurent Capelle
Agnès Aubert
Sophie Taillibert
Ahmed Idbaih
Joan Pallud
Giovanni Demarco
Robert Costalat
Khê Hoang-Xuan
Jacques Chiras
Jean-Noel Vallée
机构
[1] Pitié Salpêtrière Hospital,Department of Neuroradiology
[2] CHU Gui de Chauliac,Department of Neurosurgery
[3] Pitié Salpêtrière Hospital,Department of Pathology
[4] Pitié Salpêtrière Hospital,Department of Neurosurgery
[5] INSERM U678 Paris-6 University,Department of Neuro
[6] Pitié Salpêtrière Hospital,oncology
[7] Amiens Hospital,Department of Neuroradiology
[8] INSERM U678 Paris-6 University,Laboratoire d’imagerie fonctionnelle
来源
Journal of Neuro-Oncology | 2008年 / 87卷
关键词
Magnetic resonance spectroscopy; KI-67 labeling index; Low-grade glioma;
D O I
暂无
中图分类号
学科分类号
摘要
The aim of the study was to investigate the ability of 1HMRS to reflect proliferative activity of diffuse low-grade gliomas (WHO grade II). Between November 2002 and March 2007, a prospective study was performed on consecutive patients with suspected supratentorial hemispheric diffuse low-grade tumors. All the patients underwent MR examination using uniform procedures, and then surgical resection or biopsy within 2 weeks of the MR examination. Proliferative activity of the tumors was assessed by Ki-67 immunochemistry (Mb-1) on paraffin embedded tumor sections. Spectroscopic data was compared with Ki-67 labeling index and other histologic data such as histological subtype, cellular atypia, cellular density using univariate and multivariate analysis. 82 of 97 consecutive patients had histologically confirmed WHO grade 2 gliomas. Ki-67 proliferation index (PI) was correlated with specific spectral patterns: (1) low PI (<4%) was associated with increased Cho/Cr and absence of both free lipids or lactates; (2) intermediate PI (4–8%) was associated with resonance of lactates; and (3) high PI (>8%) was characterized by a resonance of free lipids. On multivariate analysis, resonance of lactates and resonance of free lipids appeared as independent predictors of intermediate PI (P < 0.001) and high PI (P < 0.001), respectively; moreover, free lipids resonance was correlated with cellular atypia (P < 0.05). This study suggests that 1HMRS is a reliable tool to evaluate the proliferation activity of WHO grade 2 glioma and to identify potentially more aggressive clinical behavior.
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页码:181 / 187
页数:6
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共 56 条
  • [11] Vuori K(2002)Low-grade gliomas and focal cortical developmental malformations: differentiation with proton MR spectroscopy Neuroradiology 44 656-666
  • [12] Herminghaus S(2003)Determination of histopathological tumor grade in neuroepithelial brain tumors by using spectral pattern analysis of in vivo spectroscopic data Ann Neurol 53 524-528
  • [13] Yang D(1995)Cerebral gliomas: prospective comparison of multivoxel 2D chemical-shift imaging proton MR spectroscopy, echoplanar perfusion and diffusion-weighted MRI J Neurooncol 24 163-169
  • [14] Mandonnet E(1994)Continuous growth of mean tumor diameter in a subset of grade II gliomas Cytometry 17 258-265
  • [15] Hoyt JW(2000)Analysis of proliferative grade in glial neoplasms using antibodies to the Ki-67 defined antigen and PCNA in formalin fixed, deparaffinized tissues Cancer 88 2887-20
  • [16] Steck K(2000)Comparative flow cytometric analysis of Ki-67 and proliferating cell nuclear antigen (PCNA) in solid neoplasms Acta Neurochir Suppl 76 17-349
  • [17] el-Naggar AK(2002)World Health Organization classification of tumors Magn Reson Imaging 20 343-524
  • [18] Kleihues P(1997)Malignancy of brain tumors evaluated by proton magnetic resonance spectroscopy (1H-MRS) in vitro J Neurosurg 87 516-9
  • [19] Sobin LH(2001)Quantification of cerebral metabolites in glioma patients with proton MR spectroscopy using T2 relaxation time correction Clin Neurosurg 48 3-383
  • [20] Czernicki Z(2006)Increased choline signal coinciding with malignant degeneration of cerebral gliomas: a serial proton magnetic resonance spectroscopy imaging study Ann Neurol 60 380-878