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通过聚合物笼合和点击化学支持的LRP1配体附着实现受体靶向碳纳米点递送

Receptor-Targeted Carbon Nanodot Delivery through Polymer Caging and Click Chemistry-Supported LRP1 Ligand Attachment.

作者信息

Zhang Fengrong, Benli-Hoppe Teoman, Guo Wei, Seidl Johanna, Wang Yi, Huang Rongqin, Wagner Ernst

机构信息

Pharmaceutical Biotechnology, Department of Pharmacy, Center for NanoScience, Ludwig-Maximilians-Universität Munich, 81377 Munich, Germany.

Department of Pharmaceutics, School of Pharmacy, Key Laboratory of Smart Drug Delivery, Ministry of Education, Fudan University, Shanghai 201203, China.

出版信息

Polymers (Basel). 2023 Oct 10;15(20):4039. doi: 10.3390/polym15204039.

Abstract

Carbon nanodots present resistance to photobleaching, bright photoluminescence, and superior biocompatibility, making them highly promising for bioimaging applications. Herein, nanoprobes were caged with four-armed oligomers and subsequently modified with a novel DBCO-PEG-modified retro-enantio peptide ligand reL57, enhancing cellular uptake into U87MG glioma cells highly expressing low-density lipoprotein receptor-related protein 1 (LRP1). A key point in the development of the oligomers was the incorporation of ε-amino-linked lysines instead of standard α-amino-linked lysines, which considerably extended the contour length per monomer. The four-armed oligomer was identified as the best performer, spanning a contour length of ~8.42 nm for each arm, and was based on an altering motive of two cationic ε-amidated lysine tripeptides and two tyrosine tripeptides for electrostatic and aromatic stabilization of the resulting formulations, cysteines for disulfide-based caging, and N-terminal azidolysines for click-modification. This work highlights that well-designed four-armed oligomers can be used for noncovalent coating and covalent caging of nanoprobes, and click modification using a novel LRP1-directed peptide ligand facilitates delivery into receptor-expressing target cells.

摘要

碳纳米点具有抗光漂白性、明亮的光致发光特性和卓越的生物相容性,这使得它们在生物成像应用中极具潜力。在此,纳米探针用四臂低聚物包裹,随后用一种新型的DBCO-PEG修饰的反向对映体肽配体reL57进行修饰,从而增强对高表达低密度脂蛋白受体相关蛋白1(LRP1)的U87MG胶质瘤细胞的摄取。低聚物开发中的一个关键点是引入ε-氨基连接的赖氨酸而非标准的α-氨基连接的赖氨酸,这显著延长了每个单体的轮廓长度。四臂低聚物被确定为最佳性能者,每条臂的轮廓长度约为8.42 nm,它基于两个阳离子ε-酰胺化赖氨酸三肽和两个酪氨酸三肽的交替模式,用于所得制剂的静电和芳香稳定化,半胱氨酸用于基于二硫键的包裹,以及N端叠氮赖氨酸用于点击修饰。这项工作突出表明,精心设计的四臂低聚物可用于纳米探针的非共价包被和共价包裹,并且使用新型LRP1导向肽配体的点击修饰有助于将其递送至表达受体的靶细胞。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/97b4/10609667/395aa235060b/polymers-15-04039-g001.jpg

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