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分析靶向结合和细胞摄取的 cRGD 修饰的临床阶段核交联聚合物胶束。

Profiling target engagement and cellular uptake of cRGD-decorated clinical-stage core-crosslinked polymeric micelles.

机构信息

Department of Nanomedicine and Theranostics, Institute for Experimental Molecular Imaging (ExMI), RWTH Aachen University Clinic, Aachen, Germany.

Clinic for Gastroenterology, Metabolic Diseases and Internal Intensive Care Medicine (Internal Medicine III), RWTH Aachen University Clinic, Aachen, Germany.

出版信息

Drug Deliv Transl Res. 2023 May;13(5):1195-1211. doi: 10.1007/s13346-022-01204-8. Epub 2022 Jul 11.

Abstract

Polymeric micelles are increasingly explored for tumor-targeted drug delivery. CriPec® technology enables the generation of core-crosslinked polymeric micelles (CCPMs) based on thermosensitive (mPEG-b-pHPMAmLac) block copolymers, with high drug loading capacity, tailorable size, and controlled drug release kinetics. In this study, we decorated clinical-stage CCPM with the αβ integrin-targeted cyclic arginine-glycine-aspartic acid (cRGD) peptide, which is one of the most well-known active targeting ligands evaluated preclinically and clinically. Using a panel of cell lines with different expression levels of the αβ integrin receptor and exploring both static and dynamic incubation conditions, we studied the benefit of decorating CCPM with different densities of cRGD. We show that incubation time and temperature, as well as the expression levels of αβ integrin by target cells, positively influence cRGD-CCPM uptake, as demonstated by immunofluorescence staining and fluorescence microscopy. We demonstrate that even very low decoration densities (i.e., 1 mol % cRGD) result in increased engagement and uptake by target cells as compared to peptide-free control CCPM, and that high cRGD decoration densities do not result in a proportional increase in internalization. In this context, it should be kept in mind that a more extensive presence of targeting ligands on the surface of nanomedicines may affect their pharmacokinetic and biodistribution profile. Thus, we suggest a relatively low cRGD decoration density as most suitable for in vivo application.

摘要

聚合物胶束越来越多地被用于肿瘤靶向药物递送。CriPec®技术能够基于热敏性(mPEG-b-pHPMAmLac)嵌段共聚物生成核交联聚合物胶束(CCPM),具有高载药能力、可调节的粒径和控制的药物释放动力学。在这项研究中,我们用αβ整合素靶向的环精氨酸-甘氨酸-天冬氨酸(cRGD)肽对临床阶段的 CCPM 进行了修饰,cRGD 是一种在临床前和临床评估中最著名的活性靶向配体之一。我们使用具有不同αβ整合素受体表达水平的一系列细胞系,探索了在静态和动态孵育条件下,用不同密度的 cRGD 修饰 CCPM 的益处。我们表明,孵育时间和温度以及靶细胞中αβ整合素的表达水平会积极影响 cRGD-CCPM 的摄取,这一点通过免疫荧光染色和荧光显微镜得到了证明。我们证明,与无肽对照 CCPM 相比,即使 cRGD 的修饰密度非常低(即 1 mol% cRGD),也会导致靶细胞的结合和摄取增加,而高 cRGD 修饰密度不会导致内化的比例增加。在这种情况下,应该记住,纳米药物表面靶向配体的广泛存在可能会影响其药代动力学和生物分布特征。因此,我们建议相对较低的 cRGD 修饰密度最适合体内应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a13a/10102119/b954ddf0d6a5/13346_2022_1204_Fig1_HTML.jpg

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