Hunter Stephen B, Brat Daniel J, Olson Jeffrey J, Von Deimling Andreas, Zhou Wei, Van Meir Erwin G
Department of Pathology and Laboratory Medicine, Emory University Hospital, H-173, NE, Atlanta, GA 30322, USA.
Int J Oncol. 2003 Oct;23(4):857-69.
Recent advances in our understanding of the molecular genetic mechanisms underlying diffusely infiltrating brain neoplasms have important implications for the classification and therapy of these tumors. Traditionally, primary brain tumors have been classified histologically; however, it is now clear that tumors within a single histologically defined category are heterogeneous from a molecular genetic perspective. Furthermore, many new experimental therapeutic strategies directed against these almost invariably fatal tumors are aimed at molecular rather than histologic abnormalities. Consequently, the classification of these tumors is in the process of being re-evaluated as underlying molecular genetic mechanisms continue to be elucidated. This review covers traditional histologic based classification of infiltrating glial neoplasms together with molecular abnormalities of these tumors involving p53, epidermal growth factor receptor, the retinoblastoma pathway, platelet derived growth factor receptor, genetic losses on chromosome 10, and loss of heterozygosity on chromosomes 1p and 19q. The contribution of these molecular genetic abnormalities to the classification and therapy of these tumors is discussed. Although at the present no molecular system for the classification of brain tumors has been generally accepted, microarray technologies offer the exciting prospect of practical molecular classification in the future.
我们对弥漫性浸润性脑肿瘤潜在分子遗传机制的理解取得的最新进展,对这些肿瘤的分类和治疗具有重要意义。传统上,原发性脑肿瘤是根据组织学进行分类的;然而,现在很清楚的是,在组织学定义的单一类别内的肿瘤从分子遗传学角度来看是异质性的。此外,许多针对这些几乎无一例外致命肿瘤的新实验性治疗策略都是针对分子异常而非组织学异常。因此,随着潜在分子遗传机制不断被阐明,这些肿瘤的分类正在重新评估过程中。本综述涵盖了基于传统组织学的浸润性胶质肿瘤分类,以及这些肿瘤涉及p53、表皮生长因子受体、视网膜母细胞瘤通路、血小板衍生生长因子受体、10号染色体上的基因缺失以及1p和19q染色体上杂合性缺失的分子异常。讨论了这些分子遗传异常对这些肿瘤分类和治疗的贡献。虽然目前还没有普遍接受的脑肿瘤分子分类系统,但微阵列技术为未来实现实用的分子分类提供了令人兴奋的前景。