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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Layered polymeric capsules inhibiting the activity of RNases for intracellular delivery of messenger RNA
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Layered polymeric capsules inhibiting the activity of RNases for intracellular delivery of messenger RNA

机译:层状聚合物胶囊抑制RNase在信使RNA细胞内递送的活性

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摘要

Intracellular delivery of messenger RNA (mRNA) is a promising approach for experimental and therapeutic manipulation of cellular activity. However, environmental RNase hinders reliable handling of mRNA for experimental and therapeutic use. In this study, biodegradable capsules composed of dextran sulfate and poly-L-arginine in the layer-by-layer (LbL) fashion are employed for the protection and delivery of mRNA. Our results demonstrate that addition of RNase inhibitors to mRNA while co-precipitation with CaCO3 and subsequent LbL encapsulation are both crucial to preserve the integrity of mRNA. The expression of functional luciferase enzyme in HEK293T human embryonic kidney cells after incubation with synthetic luciferase-encoding mRNA capsules indicates the reliability of the encapsulating system and cellular intake of functional mRNAs. These improvements in mRNA encapsulation should provide essential basis for microcapsule-based mRNA delivery for further applications.
机译:信使RNA(mRNA)的细胞内传递是一种有希望的细胞活性实验和治疗方法。然而,环境RNase阻碍了mRNA在实验和治疗中的可靠处理。在这项研究中,由硫酸葡聚糖和聚L-精氨酸组成的可生物降解的胶囊以逐层(LbL)的方式用于保护和传递mRNA。我们的结果表明,在与CaCO3共沉淀的同时向RNA中添加RNase抑制剂以及随后的LbL封装对于保持mRNA的完整性都是至关重要的。用合成荧光素酶编码的mRNA胶囊孵育后,HEK293T人胚肾细胞中功能性荧光素酶的表达表明了包封系统的可靠性和功能性mRNA的细胞摄取。 mRNA封装的这些改进应为基于微胶囊的mRNA递送提供进一步应用的必要基础。

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