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mRNA function after intracellular delivery and release

机译:细胞内递送和释放后mRNA功能

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摘要

Nanocarrier-mediated mRNA delivery and release into the cells with subsequent translation to protein is of interest in the context of the development of a new generation of drugs. In particular, this protein can play a role of a transcription factor and be used as a tool to regulate temporarily the genetic networks. The corresponding transient kinetics of gene expression are expected to depend on the mechanism and duration of mRNA release. Assuming the release to be rapid on the time scale of other steps, the author shows theoretically the mRNA-related transient features of gene expression occurring in stable, bistable, and oscillatory regimes in a single cell. Qualitatively, the results obtained are found to be fairly similar to those reported earlier for the situation when the release is slow. Thus, the features of the transient kinetics under consideration appear to be less sensitive to the duration of mRNA release compared to what one might expect. (C) 2018 Elsevier B.V. All rights reserved.
机译:纳米载波介导的mRNA递送和释放到细胞中,随后翻译与蛋白质的翻译对新一代药物的发展中感兴趣。特别地,该蛋白质可以发挥转录因子的作用,并用作暂时调节遗传网络的工具。预期基因表达的相应瞬态动力学取决于mRNA释放的机制和持续时间。假设释放在其他步骤的时间尺度上快速迅速,作者理论上显示了在单个细胞中稳定,双稳态和振荡制度的基因表达的mRNA相关瞬态特征。定性地,发现所获得的结果与释放速度慢的情况之前报告的那些相似。因此,与人们期望的持续时间相比,所考虑的瞬态动力学的特征似乎对mRNA释放的持续时间不太敏感。 (c)2018 Elsevier B.v.保留所有权利。

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