Raviv Lior, Jaron-Mendelson Michal, David Ayelet
Department of Clinical Biochemistry and Pharmacology, Faculty of Health Sciences, §The Shraga Segal Department of Microbiology and Immunology, Faculty of Health Sciences, and ‡Ilse Katz Institute for Nanoscale Science and Technology, Ben-Gurion University of the Negev , Beer-Sheva, 84105, Israel.
Mol Pharm. 2015 Feb 2;12(2):453-62. doi: 10.1021/mp5005492. Epub 2015 Jan 14.
Dendritic cells (DCs) possess unique abilities in initiating primary immune responses and thus represent prime targets for DNA-based vaccinations. Here, we describe the design and synthesis of mannosylated polyion complexes (PICs) composed of cationic polyethylenimine (PEI) and hydrophilic polyethylene glycol (PEG) segments, and bearing mono- and trivalent mannose as a ligand for targeting mannose receptor (MR/CD206)-positive DCs. Amino-terminated mannose (Man)-containing ligands in mono- and trivalent presentations (Man- and Man3-, respectively) were prepared and conjugated to PEG via an N-hydroxysuccinimide (NHS)-activated terminal. Thiolated PEI was conjugated to the mannosylated PEG via the maleimide (MAL)-activated terminal. The resulting positively charged diblock copolymers bearing mannoses (Man-PEG-b-PEI and Man3-PEG-b-PEI) were self-assembled with DNA to form PICs with lower surface charge than did their PEI building block and mean hydrodynamic diameters in the range of 100-450 nm, depending on the N/P ratio. Man3-PEG-b-PEI demonstrated a 3-4-fold greater transfection efficiency in MR-positive dendritic cell lines (THP-1, DC2.4), relative to Man-PEG-b-PEI, exhibited low cytotoxicity when compared with PEI, and showed low transfection efficiency in nondendritic HeLa cells. In preliminary in vivo experiments, Man-PEG-b-PEI/DNA and Man3-PEG-b-PEI/DNA demonstrated 2-3-fold higher gene delivery efficiency into CD11c(+) DCs collected from inguinal lymph nodes of C57/BL6 mice, when compared to PEI/DNA complexes, as shown by GFP expression measurements, 24 h post subcutaneous injection. The results indicate that the mannosylated PICs are a safe and effective gene delivery system, showing in vivo specificity toward CD11c(+) DCs.
树突状细胞(DCs)在启动原发性免疫反应方面具有独特能力,因此是基于DNA的疫苗接种的主要靶点。在此,我们描述了由阳离子聚乙烯亚胺(PEI)和亲水性聚乙二醇(PEG)片段组成、带有单价和三价甘露糖作为靶向甘露糖受体(MR/CD206)阳性DCs的配体的甘露糖化聚离子复合物(PICs)的设计与合成。制备了单价和三价形式(分别为Man-和Man3-)的含氨基末端甘露糖(Man)的配体,并通过N-羟基琥珀酰亚胺(NHS)活化末端将其与PEG偶联。巯基化的PEI通过马来酰亚胺(MAL)活化末端与甘露糖化的PEG偶联。所得带有甘露糖的带正电荷二嵌段共聚物(Man-PEG-b-PEI和Man3-PEG-b-PEI)与DNA自组装形成PICs,其表面电荷低于其PEI构建块,平均流体动力学直径在100 - 450 nm范围内,具体取决于N/P比。相对于Man-PEG-b-PEI,Man3-PEG-b-PEI在MR阳性树突状细胞系(THP-1、DC2.4)中表现出高3 - 4倍的转染效率,与PEI相比具有低细胞毒性,并且在非树突状的HeLa细胞中表现出低转染效率。在初步的体内实验中,与PEI/DNA复合物相比,通过皮下注射24小时后绿色荧光蛋白(GFP)表达测量显示,Man-PEG-b-PEI/DNA和Man3-PEG-b-PEI/DNA向从C57/BL6小鼠腹股沟淋巴结收集的CD11c(+) DCs中的基因递送效率高2 - 3倍。结果表明,甘露糖化PICs是一种安全有效的基因递送系统,在体内对CD11c(+) DCs具有特异性。