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用于基因转染的自组装聚乙二醇化两亲多肽。

Self-assembled PEGylated amphiphilic polypeptides for gene transfection.

机构信息

Laboratory of Organic and Macromolecular Chemistry (IOMC), Friedrich Schiller University Jena, Humboldtstrasse 10, 07743 Jena, Germany.

Jena Center for Soft Matter (JCSM), Friedrich Schiller University Jena, Philosophenweg 7, 07743 Jena, Germany.

出版信息

J Mater Chem B. 2021 Oct 13;9(39):8224-8236. doi: 10.1039/d1tb01495a.

Abstract

In the present study, three biodegradable block copolymers composed of a poly(ethylene glycol) block and a copolypeptide block with varying compositions of cationic L-lysine (L-Lys) and hydrophobic benzyl-L-glutamate (Bzl-L-Glu) were designed for gene delivery applications. The polypeptides were synthesized by ring opening polymerization (ROP) and after orthogonal deprotection of Boc-L-Lys side chains, the polymer exhibited an amphiphilic character. To bind or encapsulate plasmid DNA (pDNA), different formulations were investigated: a nanoprecipitation and an emulsion technique using various organic solvents as well as an aqueous pH-controlled formulation method. The complex and nanoparticle (NP) formations were monitored by dynamic light scattering (DLS), and pDNA interaction was shown by gel electrophoresis and subsequent controlled release with heparin. The polypeptides were further tested for their cytotoxicity as well as biodegradability. The complexes and NPs presenting the most promising size distributions and pDNA binding ability were subsequently evaluated for their transfection efficiency in HEK293T cells. The highest transfection efficiencies were obtained with an aqueous formulation of the polypeptide containing the highest L-Lys content and lowest proportion of hydrophobic, helical structures (P1*), which is therefore a promising candidate for efficient gene delivery by biodegradable gene delivery vectors.

摘要

在本研究中,设计了三种由聚乙二醇(PEG)嵌段和具有不同阳离子 L-赖氨酸(L-Lys)和疏水性苄基-L-谷氨酸(Bzl-L-Glu)组成的共多肽嵌段组成的可生物降解嵌段共聚物,用于基因传递应用。多肽通过开环聚合(ROP)合成,在 Boc-L-Lys 侧链的正交脱保护后,聚合物表现出两亲性。为了结合或封装质粒 DNA(pDNA),研究了不同的配方:使用各种有机溶剂的纳米沉淀和乳液技术以及水相 pH 控制的配方方法。通过动态光散射(DLS)监测复合物和纳米颗粒(NP)的形成,并通过凝胶电泳和随后与肝素的受控释放显示 pDNA 相互作用。进一步测试了多肽的细胞毒性和生物降解性。随后,对具有最有前途的粒径分布和 pDNA 结合能力的复合物和 NPs 进行了评估,以评估它们在 HEK293T 细胞中的转染效率。具有最高 L-Lys 含量和最低疏水性、螺旋结构比例(P1*)的多肽的水性制剂获得了最高的转染效率,因此是可生物降解基因传递载体有效基因传递的有前途的候选物。

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