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寡核苷酸接枝聚合物纳米粒的一锅合成。

One-pot synthesis of oligonucleotide-grafted polymeric nanoparticles.

机构信息

Institute of Polymers, Bulgarian Academy of Sciences, "Akad. G. Bonchev" St., Bl. 103-A, 1113 Sofia, Bulgaria.

Institute of Molecular Biology, Bulgarian Academy of Sciences, "Akad. G. Bonchev" St., Bl. 21, 1113 Sofia, Bulgaria.

出版信息

Soft Matter. 2020 Jan 7;16(1):191-199. doi: 10.1039/c9sm01796h. Epub 2019 Nov 27.

DOI:10.1039/c9sm01796h
PMID:31774098
Abstract

A feasible one-pot approach for constructing oligonucleotide-grafted polymeric nanoparticles is reported. The approach involves formation of mesoglobules from a thermoresponsive polymer, coating of the mesoglobules with a cross-linked polymeric shell, and grafting the latter with oligonucleotide strands. Dynamic and static light scattering are used to parameterize the novel constructs. They are relatively large structures with hydrodynamic radii and molar masses reaching 200 nm and 150.0 × 10 g mol, respectively. The oligonucleotide-grafted polymeric nanoparticles are of spherical morphology and moderately negative (-12.4 to -19.1 mV) ζ potential as revealed by AFM, TEM, and electrophoretic light scattering. In accordance with their large size, they are found to carry thousands of oligonucleotide strands per particle. The novel constructs are thermoresponsive. They undergo reversible collapse upon heating and swelling upon cooling, which is associated with changes in the grafting density and, hence, the conformation of the oligonucleotide strands from unextended at room temperature to a more extended one at elevated temperatures. The versatility of the approach is demonstrated by varying the type of the cross-linked shell and content of the oligonucleotide strands and, hence, the grafting density. Appropriate diversification and modifications are suggested as well.

摘要

本文报道了一种可行的一步法,用于构建寡核苷酸接枝聚合物纳米粒子。该方法涉及从温敏聚合物形成介晶球,用交联聚合物壳层涂覆介晶球,并将寡核苷酸链接枝到后者上。动态和静态光散射用于对新型构建体进行参数化。它们是相对较大的结构,水动力半径和摩尔质量分别达到 200nm 和 150.0×10gmol。寡核苷酸接枝聚合物纳米粒子具有球形形态和适度的负 ζ 电位(-12.4 至-19.1mV),如原子力显微镜、TEM 和电泳光散射所揭示的。根据其较大的尺寸,每个粒子携带数千个寡核苷酸链。新型构建体具有温敏性。它们在加热时发生可逆的塌陷,在冷却时发生肿胀,这与接枝密度的变化有关,从而使寡核苷酸链的构象从室温下的未延伸状态转变为高温下的更延伸状态。通过改变交联壳的类型和寡核苷酸链的含量以及接枝密度,证明了该方法的多功能性。还提出了适当的多样化和修饰建议。

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引用本文的文献

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Original Synthesis of a Nucleolipid for Preparation of Vesicular Spherical Nucleic Acids.用于制备囊泡状球形核酸的核脂质的原始合成。
Nanomaterials (Basel). 2022 Oct 18;12(20):3645. doi: 10.3390/nano12203645.
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Nucleic acid-based supramolecular structures: vesicular spherical nucleic acids from a non-phospholipid nucleolipid.基于核酸的超分子结构:来自非磷脂核脂质的囊泡状球形核酸
Nanoscale Adv. 2022 Aug 9;4(18):3793-3803. doi: 10.1039/d2na00527a. eCollection 2022 Sep 13.