Molecular Imaging and Therapy Service, Department of Radiology, Memorial Sloan Kettering Cancer Center, New York, NY, USA.
Department of Neurology, Memorial Sloan Kettering Cancer Center, New York, NY, USA.
Neoplasia. 2023 May;39:100896. doi: 10.1016/j.neo.2023.100896. Epub 2023 Mar 20.
Recent insights into histopathological and molecular subgroups of glioma have revolutionized the field of neuro-oncology by refining diagnostic categories. An emblematic example in pediatric neuro-oncology is the newly defined diffuse midline glioma (DMG), H3 K27-altered. DMG represents a rare tumor with a dismal prognosis. The diagnosis of DMG is largely based on clinical presentation and characteristic features on conventional magnetic resonance imaging (MRI), with biopsy limited by its delicate neuroanatomic location. Standard MRI remains limited in its ability to characterize tumor biology. Advanced MRI and positron emission tomography (PET) imaging offer additional value as they enable non-invasive evaluation of molecular and metabolic features of brain tumors. These techniques have been widely used for tumor detection, metabolic characterization and treatment response monitoring of brain tumors. However, their role in the realm of pediatric DMG is nascent. By summarizing DMG metabolic pathways in conjunction with their imaging surrogates, we aim to elucidate the untapped potential of such imaging techniques in this devastating disease.
最近对神经胶质瘤的组织病理学和分子亚群的深入了解通过细化诊断类别彻底改变了神经肿瘤学领域。儿科神经肿瘤学中的一个典范例子是新定义的弥漫性中线脑胶质瘤(DMG),H3 K27 改变。DMG 是一种罕见的肿瘤,预后不良。DMG 的诊断主要基于临床表现和常规磁共振成像(MRI)上的特征性表现,由于其精细的神经解剖位置,活检受到限制。标准 MRI 在其肿瘤生物学特征的描述能力方面仍然有限。高级 MRI 和正电子发射断层扫描(PET)成像提供了额外的价值,因为它们能够无创评估脑肿瘤的分子和代谢特征。这些技术已广泛用于脑肿瘤的检测、代谢特征和治疗反应监测。然而,它们在儿科 DMG 领域的作用尚处于起步阶段。通过总结 DMG 的代谢途径及其影像学替代物,我们旨在阐明这些成像技术在这种毁灭性疾病中的未开发潜力。