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SOX transcription factors and glioma stem cells:Choosing between stemness and differentiation 被引量:2
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作者 Milena Stevanovic Natasa Kovacevic-Grujicic +2 位作者 Marija Mojsin Milena Milivojevic Danijela Drakulic 《World Journal of Stem Cells》 SCIE 2021年第10期1417-1445,共29页
Glioblastoma(GBM)is the most common,most aggressive and deadliest brain tumor.Recently,remarkable progress has been made towards understanding the cellular and molecular biology of gliomas.GBM tumor initiation,progres... Glioblastoma(GBM)is the most common,most aggressive and deadliest brain tumor.Recently,remarkable progress has been made towards understanding the cellular and molecular biology of gliomas.GBM tumor initiation,progression and relapse as well as resistance to treatments are associated with glioma stem cells(GSCs).GSCs exhibit a high proliferation rate and self-renewal capacity and the ability to differentiate into diverse cell types,generating a range of distinct cell types within the tumor,leading to cellular heterogeneity.GBM tumors may contain different subsets of GSCs,and some of them may adopt a quiescent state that protects them against chemotherapy and radiotherapy.GSCs enriched in recurrent gliomas acquire more aggressive and therapy-resistant properties,making them more malignant,able to rapidly spread.The impact of SOX transcription factors(TFs)on brain tumors has been extensively studied in the last decade.Almost all SOX genes are expressed in GBM,and their expression levels are associated with patient prognosis and survival.Numerous SOX TFs are involved in the maintenance of the stemness of GSCs or play a role in the initiation of GSC differentiation.The fine-tuning of SOX gene expression levels controls the balance between cell stemness and differentiation.Therefore,innovative therapies targeting SOX TFs are emerging as promising tools for combatting GBM.Combatting GBM has been a demanding and challenging goal for decades.The current therapeutic strategies have not yet provided a cure for GBM and have only resulted in a slight improvement in patient survival.Novel approaches will require the fine adjustment of multimodal therapeutic strategies that simultaneously target numerous hallmarks of cancer cells to win the battle against GBM. 展开更多
关键词 GLIOBLASTOMA SOX transcription factors Glioma stem cells STEMNESS DIFFERENTIATION
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Physiological significance of oxidative stress and its role in adaptation of the human body to deleterious factors 被引量:1
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作者 Vadim V. Davydov Alexander V. Shestopalov Evgenya R. Grabovetskaya 《Frontiers in Biology》 CAS CSCD 2018年第1期19-27,共9页
背景:氧化应力是在纸巾处于免费激进分子的过程的增加的率和反应的氧种类(ROS ) 的累积表明的一个极其普遍的条件。它处于同情的肾的系统或织物组织缺氧或在应力下面的刺激伴随的不同生理的状态和病理学的进程出现。直到现在,仍然在... 背景:氧化应力是在纸巾处于免费激进分子的过程的增加的率和反应的氧种类(ROS ) 的累积表明的一个极其普遍的条件。它处于同情的肾的系统或织物组织缺氧或在应力下面的刺激伴随的不同生理的状态和病理学的进程出现。直到现在,仍然在在有机体的改编过程的发展的氧化应力的意义的问题上没有清澈。 展开更多
关键词 氧化应力 有害因素 应力和 改编 生理 身体 PUBMED 氧化还原作用
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