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首页> 外文期刊>Cellular Signalling >Gap junctional shuttling of miRNA - A novel pathway of intercellular gene regulation and its prospects in clinical application
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Gap junctional shuttling of miRNA - A novel pathway of intercellular gene regulation and its prospects in clinical application

机译:miRNA的间隙连接穿梭-细胞间基因调控的新途径及其临床应用前景。

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The gap junctional exchange of small molecules between adjacent cells is crucial for maintaining tissue homeostasis and for a large number of cellular processes, including differentiation and proliferation. miRNAs represent a novel class of signalling molecules capable of crossing gap junction (GJ) channels, thereby directly affecting gene expression in the recipient cell. Here, we give an overview about the current knowledge on the biological significance of miRNA shuttling in different cell types (e.g. stem cells, cardiac cells, macrophages), which indicates the GJ-dependent transfer of miRNA as a general mechanism for intercellular gene regulation. Notably, shuttling via GJs is superior to exosome-mediated intercellular transfer regarding specificity and efficiency. We further elucidate this mechanism as a promising approach for miRNA delivery in clinical applications. Using a cell-based gap junctional dependent system, in vivo delivery of therapeutic miRNAs might become more efficient compared to systemic delivery methods. We will discuss the advantages of such a delivery system and the challenges that have to be overcome for its successful application in miRNA therapy. (C) 2015 Elsevier Inc. All rights reserved.
机译:相邻细胞之间小分子的间隙连接交换对于维持组织稳态和大量细胞过程(包括分化和增殖)至关重要。 miRNA代表一类新型的信号分子,能够穿越缺口连接(GJ)通道,从而直接影响受体细胞中的基因表达。在这里,我们概述了有关miRNA在不同细胞类型(例如干细胞,心脏细胞,巨噬细胞)中穿梭的生物学意义的当前知识,这表明miRNA的GJ依赖性转移是细胞间基因调控的一般机制。值得注意的是,就特异性和效率而言,通过GJ穿梭优于外来体介导的细胞间转移。我们进一步阐明这种机制作为在临床应用中传递miRNA的有前途的方法。使用基于细胞的间隙连接依赖性系统,治疗性miRNA的体内递送与全身性递送方法相比可能变得更加有效。我们将讨论这种递送系统的优势以及成功应用于miRNA治疗必须克服的挑战。 (C)2015 Elsevier Inc.保留所有权利。

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