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An overview of crucial genes involved in stemness of glioblastoma multiforme

机译:胶质母细胞瘤茎秆茎秆茎秆的关键基因概述

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Glioblastoma multiforme (GBM) is the most common and first leading cause of death in primary human brain cancers. Following current interventions, despite continuous advancements in medicine, the median survival time of patients is unfavorable regardless of radiotherapy, chemotherapy, or surgery. This poor outcome is referred to "cancer stem cell" (CSC) concept. According to it a minority of cells within the GBM mass originates from neural stem cells (NSCs) or alternatively hijack similar checkpoints in them that evolution has selected in order to prevent inappropriate neurogenic-to-gliogenic switch which is responsible for the growth of tumor and its resistance to existing therapies. New developments in non-surgical treatment of GBM are based on this knowledge, however, similarities in molecular pathways between GBM and glioma stem cells (GSCs) motive the race to identify and target GSC regulators with less and more harmful effect in normal adult NSC and GBM respectively. In it the implications of downstream stemness genes with modulatory roles for stemness state pathways are assumed importance. This review, embodies NSC-intrinsic genes by recent elucidated roles of importance for GBM to affix to the stemness. Therefor it could facilitate a holistic approach of molecular targeted therapy to compromise the formidable resistant GBM to eradication.
机译:胶质母细胞瘤多形状(GBM)是原发性人脑癌中最常见和最常见的死因。在目前的干预措施之后,尽管医学持续发展,但无论放射治疗,化疗或手术如何,患者的中位存活时间都是不利的。这种差的结果称为“癌症干细胞”(CSC)概念。根据它根据GBM质量内的少数细胞源自神经干细胞(NSCs),或者在它们中劫持类似的检查点,以便为预防肿瘤生长负责的不恰当的神经源性对脊髓原性开关和它对现有疗法的抵抗力。然而,GBM的非外科治疗的新发展是基于这种知识,而GBM和胶质瘤干细胞(GSCs)的分子途径的相似性,用于识别和靶向GSC调节剂,在正常成人NSC中具有较小和更有害的效果。分别为GBM。在它中,假设了下游茎阴基因对茎态途径的调节作用的影响被认为是重要的。本综述,通过近期阐明了GBM对茎尾的重要作用的NSC内在基因。因此,它可以促进分子靶向治疗的整体方法,以损害抗抗性GBM以消除。

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