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首页> 外文期刊>Current molecular imaging >Molecular Markers of Glioblastoma and the Potential for Integration with Imaging: the Future for Assigning Prognosis and Best Treatment Strategy
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Molecular Markers of Glioblastoma and the Potential for Integration with Imaging: the Future for Assigning Prognosis and Best Treatment Strategy

机译:胶质母细胞瘤的分子标记和与影像学整合的潜力:分配预后和最佳治疗策略的未来

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摘要

Glioblastoma is an aggressive form of brain tumor with a poor outcome. Recent advancements using molecular techniques have identified subtypes of glioblastoma that have emerged from the traditional classification. The molecular subtypes are associated with different prognoses and responses to treatment. Both features make molecular sub-typing important in the clinical setting. Detection of each subtype, or key mutations within, currently occurs post-surgically using histological and biochemical based techniques. Non-invasive imaging, particularly magnetic resonance imaging (MRI), is an integral part of glioblastoma diagnosis and patient management. Whether non-invasive imaging can identify molecular subtypes pre-surgically is likely to be true based on recent proof of concept approaches. Correlating molecular subtypes and imaging features will led to more detailed subtypes, a greater stratification of patients, and assignment of the best treatment option. This review summaries the current molecular subtypes based on telomere maintenance mechanisms or genomic approaches, key genetic markers in each tumor subtype, and whether these markers correlate with patient prognosis. An outline of methods to distinguish tumor subtypes is given including efforts toward detecting molecular changes by non-invasive imaging.
机译:胶质母细胞瘤是侵袭性形式的脑肿瘤,预后较差。使用分子技术的最新进展已经确定了胶质母细胞瘤的亚型,这些亚型已从传统分类中出现。分子亚型与不同的预后和对治疗的反应有关。两种功能都使得分子亚型化在临床中很重要。当前,使用基于组织学和生化的技术在手术后对每种亚型或其中的关键突变进行检测。非侵入性成像,尤其是磁共振成像(MRI),是胶质母细胞瘤诊断和患者管理的组成部分。基于最新概念验证方法,非侵入性成像能否在手术前识别分子亚型可能是正确的。分子亚型和影像学特征的相关性将导致更详细的亚型,更大的患者分层以及最佳治疗方案的分配。这篇综述基于端粒维持机制或基因组方法,每种肿瘤亚型中的关键遗传标志物以及这些标志物是否与患者预后相关,总结了当前的分子亚型。概述了区分肿瘤亚型的方法,包括通过非侵入性成像检测分子变化的努力。

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