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敲低 miR-210 降低低氧胶质瘤干细胞干性和放射抵抗性。

Knockdown of miR-210 decreases hypoxic glioma stem cells stemness and radioresistance.

机构信息

Department of Radiobiology, Collaborative Innovation Center of Radiation Medicine of Jiangsu Higher Education Institutions, Jiangsu Provincial Key Laboratory of Radiation Medicine and Protection, School of Radiation Medicine and Protection, Medical College of Soochow University, School for Radiological and Interdisciplinary Sciences (RAD-X), Soochow University, No.199 Renai Road, Suzhou 215123, China.

Department of Radiobiology, Collaborative Innovation Center of Radiation Medicine of Jiangsu Higher Education Institutions, Jiangsu Provincial Key Laboratory of Radiation Medicine and Protection, School of Radiation Medicine and Protection, Medical College of Soochow University, School for Radiological and Interdisciplinary Sciences (RAD-X), Soochow University, No.199 Renai Road, Suzhou 215123, China.

出版信息

Exp Cell Res. 2014 Aug 1;326(1):22-35. doi: 10.1016/j.yexcr.2014.05.022. Epub 2014 Jun 12.

Abstract

Glioma contains abundant hypoxic regions which provide niches to promote the maintenance and expansion of glioma stem cells (GSCs), which are resistant to conventional therapies and responsible for recurrence. Given the fact that miR-210 plays a vital role in cellular adaption to hypoxia and in stem cell survival and stemness maintenance, strategies correcting the aberrantly expressed miR-210 might open up a new therapeutic avenue to hypoxia GSCs. In the present study, to explore the possibility of miR-210 as an effective therapeutic target to hypoxic GSCs, we employed a lentiviral-mediated anti-sense miR-210 gene transfer technique to knockdown miR-210 expression and analyze phenotypic changes in hypoxic U87s and SHG44s cells. We found that hypoxia led to an increased HIF-2α mRNA expression and miR-210 expression in GSCs. Knockdown of miR-210 decreased neurosphere formation capacity, stem cell marker expression and cell viability, and induced differentiation and G0/G1 arrest in hypoxic GSCs by partially rescued Myc antagonist (MNT) protein expression. Knockdown of MNT could reverse the gene expression changes and the growth inhibition resulting from knockdown of miR-210 in hypoxic GSCs. Moreover, knockdown of miR-210 led to increased apoptotic rate and Caspase-3/7 activity and decreased invasive capacity, reactive oxygen species (ROS) and lactate production and radioresistance in hypoxic GSCs. These findings suggest that miR-210 might be a potential therapeutic target to eliminate GSCs located in hypoxic niches.

摘要

神经胶质瘤含有丰富的缺氧区域,为促进神经胶质瘤干细胞(GSCs)的维持和扩增提供了小生境,这些干细胞对传统疗法具有抗性,是肿瘤复发的根源。鉴于 miR-210 在细胞对缺氧的适应以及干细胞存活和干性维持中起着至关重要的作用,纠正异常表达的 miR-210 的策略可能为缺氧 GSCs 的治疗开辟新途径。在本研究中,为了探讨 miR-210 作为缺氧 GSCs 有效治疗靶点的可能性,我们采用了慢病毒介导的反义 miR-210 基因转移技术来敲低 miR-210 的表达,并分析缺氧 U87s 和 SHG44s 细胞中的表型变化。我们发现缺氧导致 GSCs 中 HIF-2α mRNA 表达和 miR-210 表达增加。敲低 miR-210 降低了神经球形成能力、干细胞标志物表达和细胞活力,并通过部分挽救 Myc 拮抗剂(MNT)蛋白表达诱导缺氧 GSCs 分化和 G0/G1 期阻滞。敲低 MNT 可以逆转缺氧 GSCs 中 miR-210 敲低引起的基因表达变化和生长抑制。此外,敲低 miR-210 导致缺氧 GSCs 中凋亡率和 Caspase-3/7 活性增加,侵袭能力降低,活性氧(ROS)和乳酸产生减少以及放射抗性增强。这些发现表明,miR-210 可能是消除位于缺氧小生境中的 GSCs 的潜在治疗靶点。

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