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首页> 外文期刊>Biomacromolecules >Water Soluble Nanoparticles from PEG-Based Cationic Hyperbranched Polymer and RNA That Protect RNA from Enzymatic Degradation
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Water Soluble Nanoparticles from PEG-Based Cationic Hyperbranched Polymer and RNA That Protect RNA from Enzymatic Degradation

机译:基于PEG的阳离子超支化聚合物和可保护RNA免受酶降解的RNA的水溶性纳米颗粒

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Recent advances in understanding biological systems have proven that RNA is not merely the carrier of genetic information,but also a key molecule in regulation of gene expression and other crucial metabolic processes.Therefore,it is being considered as an ideal therapeutic candidate both for metabolic and genetic disorders.However,research involving RNA molecules faces a practical limitation since RNA is highly labile.We have developed a novel method to protect RNA from cleavage by complexing it with a hyperbranched cationic polymer.It was found that total cellular RNA isolated from yeast spontaneously interacts with the positively charged polymer to form a spherical nanoparticle morphology.This interaction protects the RNA against enzymatic degradation.This methodology can be easily adapted for long-term storage of RNA,long distance transfer of RNA,and genetic engineering using RNA as a building block.
机译:在了解生物系统方面的最新进展证明,RNA不仅是遗传信息的载体,而且还是调节基因表达和其他关键代谢过程的关键分子。因此,它被认为是代谢和代谢的理想治疗药物。然而,由于RNA高度不稳定,因此涉及RNA分子的研究面临着实际的局限。我们开发了一种通过与超支化阳离子聚合物复合来保护RNA免于裂解的新方法。发现从酵母中自发分离出的总细胞RNA与带正电荷的聚合物相互作用形成球形纳米颗粒形态,这种相互作用可保护RNA免受酶促降解。此方法可轻松适用于RNA的长期存储,RNA的长距离转移以及使用RNA作为构建体的基因工程块。

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