首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Recent updates on true potential of an anesthetic agent as a regulator of cell signaling pathways and non-coding RNAs in different cancers: Focusing on the brighter side of propofol
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Recent updates on true potential of an anesthetic agent as a regulator of cell signaling pathways and non-coding RNAs in different cancers: Focusing on the brighter side of propofol

机译:最近有关麻醉剂的真正潜力的最新潜力作为不同癌症中的细胞信号传导途径和非编码RNA的调节剂:专注于异丙酚的更亮的一侧

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There has always been a quest to search for synthetic and natural compounds having premium pharmacological properties and minimum off-target and/or side effects. Therefore, in accordance with this approach, scientists have given special attention to the molecules having remarkable ability to target oncogenic protein network, restore drug sensitivity and induce apoptosis in cancer cells. The mechanisms through which general anesthetics modulated wide-ranging deregulated cell signaling pathways and non-coding RNAs remained unclear. However, rapidly accumulating experimentally verified evidence has started to resolve this long-standing mystery and a knowledge about these important molecular targets has surfaced and how these drugs act at the molecular level is becoming more understandable. In this review we have given special attention to available evidence related to ability of propofol to modulate Wnt/beta-catenin, JAK/STAT and mTOR-driven pathway. Excitingly, great strides have been made in sharpening our concepts related to potential of propofol to modulate non-coding RNAs in different cancers. Collectively, these latest findings offer interesting, unexplored opportunities to target deregulated signaling pathways to induce apoptosis in drug-resistant cancers.
机译:始终始终寻找具有优质药理学性质和最小偏离目标和/或副作用的合成和天然化合物。因此,根据这种方法,科学家们特别关注靶向致癌蛋白网络的显着能力,恢复药物敏感性并诱导癌细胞凋亡的分子。通用麻醉剂调制宽范围的解除管制细胞信号传导途径和非编码RNA的机制保持不明确。然而,迅速积累的实验验证证据已经开始解决这种长期的谜团,了解这些重要分子靶标的知识已经浮现过,这些药物如何在分子水平上作用变得更加理解。在本次审查中,我们特别关注可用的证据,该证据与类丙醇调节WNT / Beta-catenin,Jak / Stat和MTOR驱动的路径有关。令人兴奋的是,在锐化与异丙酚的潜力相关的概念来调节不同癌症中的非编码RNA的概念来进行大踏步。集体,这些最新发现提供了有趣的,未开发的机会,以靶向解除管制的信号通路,以诱导耐药癌症的细胞凋亡。

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