首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Sequesterpene Lactones Isolated from a Brazilian Cerrado Plant (Eremanthus spp.) as Anti-Proliferative Compounds Characterized by Functional and Proteomic Analysis Are Candidates for New Therapeutics in Glioblastoma
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Sequesterpene Lactones Isolated from a Brazilian Cerrado Plant (Eremanthus spp.) as Anti-Proliferative Compounds Characterized by Functional and Proteomic Analysis Are Candidates for New Therapeutics in Glioblastoma

机译:从巴西塞拉多植物(Eremanthus spp。)中分离得到的螯合内酯作为抗增殖化合物通过功能和蛋白质组学分析进行表征是胶质母细胞瘤新疗法的候选人

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摘要

Gliomas are responsible for more than 60% of all primary brain tumors. Glioblastoma multiforme (GBM), a grade IV tumor (WHO), is one of the most frequent and malignant gliomas. Despite two decades of advances in the discovery of new markers for GBM, the chemotherapy of choice falls to temozolomide after surgery and radiotherapy, which are not enough to increase the survival of patients to more than 15 months. It is urgent to discover new anti-glioma compounds. Many compounds derived from natural products have been used in the development of anti-tumor drugs. In this work, we have screened six low molecular weight sesquiterpene lactones, isolated from spp., and studied their function as anti-proliferative agents against GBM strains. We demonstrated that two of them, goyazensolide and lychnofolide, were effective in reducing cell viability, preventing the formation of anchorage-dependent colony and were able to pass through a mimetic blood-brain barrier making them candidates for glioma therapy, being more potent than temozolomide, according to in vitro assays for the cell lines tested. Proteomic analysis revealed a number of altered proteins involved in glycolytic metabolism and cellular catabolism.
机译:脑胶质瘤占所有原发性脑肿瘤的60%以上。多形胶质母细胞瘤(GBM)是一种IV级肿瘤(WHO),是最常见和恶性的神经胶质瘤之一。尽管发现GBM的新标志物已取得了二十年的进展,但手术和放疗后仍选择替莫唑胺作为化学疗法,这不足以使患者的生存期延长至15个月以上。迫切需要发现新的抗神经胶质瘤化合物。许多源自天然产物的化合物已用于开发抗肿瘤药物。在这项工作中,我们筛选了从种属中分离出的六种低分子量倍半萜烯内酯,并研究了它们作为针对GBM菌株的抗增殖剂的功能。我们证明了其中的两个,goyazensolide和lychnofolide,可有效降低细胞活力,防止锚定依赖性菌落的形成,并能够通过模拟血脑屏障,使其成为神经胶质瘤治疗的候选药物,比替莫唑胺更有效,根据体外测试的细胞系进行。蛋白质组学分析揭示了许多参与糖酵解代谢和细胞分解代谢的蛋白质改变。

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