Zhang Fengrong, Benli-Hoppe Teoman, Guo Wei, Seidl Johanna, Wang Yi, Huang Rongqin, Wagner Ernst
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.
Polymers (Basel). 2023 Oct 10;15(20):4039. doi: 10.3390/polym15204039.
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.
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。