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根据世界卫生组织2016年脑肿瘤新分类,氨基酸正电子发射断层扫描(PET)的作用。

The role of amino-acid PET in the light of the new WHO classification 2016 for brain tumors.

作者信息

Suchorska Bogdana, Albert Nathalie L, Bauer Elena K, Tonn Jörg-Christian, Galldiks Norbert

机构信息

Department of Neurosurgery, Ludwig-Maximilians-University, Munich, Germany -

Department of Nuclear Medicine, Ludwig-Maximilians-University, Munich, Germany.

出版信息

Q J Nucl Med Mol Imaging. 2018 Sep;62(3):267-271. doi: 10.23736/S1824-4785.18.03090-X. Epub 2018 Apr 26.

Abstract

Since its introduction in 2016, the revision of the World Health Organization (WHO) classification of central nervous system tumors has already changed the diagnostic and therapeutic approach in glial tumors. Blurring the lines between entities formerly labelled as "high-grade" or "low-grade", molecular markers define distinct biological subtypes with different clinical course. This new classification raises the demand for non-invasive imaging methods focusing on depicting metabolic processes. We performed a review of current literature on the use of amino-acid PET (AA-PET) for obtaining diagnostic or prognostic information on glioma in the setting of the current WHO 2016 classification. So far, only a few studies have focused on combining molecular genetic information and metabolic imaging using AA-PET. The current review summarizes the information available on "molecular grading" as well as prognostic information obtained from AA-PET and delivers an insight into a possible interrelation between metabolic imaging and glioma genetics. Within the framework of molecular characterization of gliomas, metabolic imaging using AA-PET is a promising tool for non-invasive characterization of molecular features and to provide additional prognostic information. Further studies incorporating molecular and metabolic features are necessary to improve the explanatory power of AA-PET in glial tumors.

摘要

自2016年推出以来,世界卫生组织(WHO)中枢神经系统肿瘤分类的修订已经改变了胶质肿瘤的诊断和治疗方法。分子标志物模糊了以前标记为“高级别”或“低级别”实体之间的界限,定义了具有不同临床病程的不同生物学亚型。这种新分类增加了对专注于描绘代谢过程的非侵入性成像方法的需求。我们对当前关于在世界卫生组织2016年分类背景下使用氨基酸正电子发射断层扫描(AA-PET)获取胶质瘤诊断或预后信息的文献进行了综述。到目前为止,只有少数研究专注于将分子遗传信息与使用AA-PET的代谢成像相结合。当前综述总结了关于“分子分级”以及从AA-PET获得的预后信息的现有信息,并深入探讨了代谢成像与胶质瘤遗传学之间可能的相互关系。在胶质瘤分子特征的框架内,使用AA-PET的代谢成像是一种用于分子特征非侵入性表征和提供额外预后信息的有前途的工具。纳入分子和代谢特征的进一步研究对于提高AA-PET在胶质肿瘤中的解释力是必要的。

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