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岛叶胶质瘤不同分子病理亚型中的对侧结构可塑性

Contralesional Structural Plasticity in Different Molecular Pathologic Subtypes of Insular Glioma.

作者信息

Huang Zhenxing, Li Gen, Li Zhenye, Sun Shengjun, Zhang Yazhuo, Hou Zonggang, Xie Jian

机构信息

Department of Neurosurgery, Beijing Tiantan Hospital, Capital Medical University, Beijing, China.

China National Clinical Research Centre for Neurological Diseases, Beijing, China.

出版信息

Front Neurol. 2021 Apr 14;12:636573. doi: 10.3389/fneur.2021.636573. eCollection 2021.

Abstract

Neuroplasticity may preserve neurologic function in insular glioma, thereby improving prognosis following resection. However, the anatomic and molecular bases of this phenomenon are not known. To address this gap in knowledge, the present study investigated contralesional compensation in different molecular pathologic subtypes of insular glioma by high-resolution three-dimensional T1-weighted structural magnetic resonance imaging. A total of 52 patients with insular glioma were examined. We compared the gray matter volume (GMV) of the contralesional insula according to histological grade [low-grade glioma (LGG) and high-grade glioma (HGG)] and molecular pathology status [isocitrate dehydrogenase (IDH) mutation, telomerase reverse-transcriptase () promoter mutation, and 1p19q codeletion] by voxel-based morphometry (VBM). A cluster of 320 voxels in contralesional insula with higher GMV was observed in glioma with IDH mutation as compared to IDH wild-type tumors by region of interest-based VBM analysis (family-wise error-corrected at < 0.05). The GMV of the entire contralesional insula was also larger in insular glioma patients with IDH mutation than in patients with wild-type IDH. However, there was no association between histological grade, promoter mutation, or 1p19q codeletion and GMV in the contralesional insula. Thus, IDH mutation is associated with greater structural compensation in insular glioma. These findings may be useful for predicting neurocognitive and functional outcomes in patients undergoing resection surgery.

摘要

神经可塑性可能保留岛叶胶质瘤中的神经功能,从而改善切除后的预后。然而,这一现象的解剖学和分子基础尚不清楚。为了填补这一知识空白,本研究通过高分辨率三维T1加权结构磁共振成像研究了岛叶胶质瘤不同分子病理亚型中的对侧代偿情况。共检查了52例岛叶胶质瘤患者。我们通过基于体素的形态学测量(VBM),根据组织学分级[低级别胶质瘤(LGG)和高级别胶质瘤(HGG)]以及分子病理状态[异柠檬酸脱氢酶(IDH)突变、端粒酶逆转录酶()启动子突变和1p19q共缺失]比较了对侧岛叶的灰质体积(GMV)。通过基于感兴趣区域的VBM分析,与IDH野生型肿瘤相比,在IDH突变的胶质瘤中观察到对侧岛叶有一组320个具有较高GMV的体素(家族性错误校正,<0.05)。IDH突变的岛叶胶质瘤患者对侧岛叶的整体GMV也大于IDH野生型患者。然而,组织学分级、启动子突变或1p19q共缺失与对侧岛叶的GMV之间没有关联。因此,IDH突变与岛叶胶质瘤中更大的结构代偿相关。这些发现可能有助于预测接受切除手术患者的神经认知和功能结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1bdd/8079625/fdb62cb414ea/fneur-12-636573-g0001.jpg

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