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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >p-Nitrophenylcarbonyl-PEG-PE-liposomes: fast and simple attachment of specific ligands, including monoclonal antibodies, to distal ends of PEG chains via p-nitrophenylcarbonyl groups
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p-Nitrophenylcarbonyl-PEG-PE-liposomes: fast and simple attachment of specific ligands, including monoclonal antibodies, to distal ends of PEG chains via p-nitrophenylcarbonyl groups

机译:对硝基苯基羰基-PEG-PE-脂质体:特定配体(包括单克隆抗体)通过对硝基苯基羰基基团快速简单地连接到PEG链的末端

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摘要

We have attempted to simplify the procedure for coupling various ligands to distal ends of liposome-grafted polyethylene glycol (PEG) chains and to make it applicable for single-step binding of a large variety of a primary amino group-containing substances, including proteins and small molecules. With this in mind, we have introduced a new amphiphilic PEG derivative, p-nitrophenylcarbonyl-PEG-1,2-dioleoyl-sn-glycero-3-phosphoethanolamine (pNP-PEG-DOPE), synthesized by reaction of DOPE with excess of bis(p-nitrophenylcarbonyl)-PEG in a chloroform/triethylamine mixture. pNP-PEG-DOPE readily incorporates into liposomes via its PE residue, and easily binds primary amino group-containing ligands via its water-exposed pNP groups, forming stable and non-toxic urethane (carbamate) bounds. The reaction between the pNP group and the ligand amino group proceeds easily and quantitatively at pH around 8.0, and remaining free pNP groups are promptly eliminated by spontaneous hydrolysis. Therefore, pNP-PEG-DOPE could serve as a very convenient tool for protein attachment to the distal ends of liposome-grafted PEG chains. To investigate the applicability of the suggested protocol for the preparation of long-circulating targeted liposomes, we have coupled several proteins, such as concanavalin A (ConA), wheat germ agglutinin (WGA), avidin, monoclonal antimyosin antibody 2G4 (mon2G4), and monoclonal antinucleosome antibody 2C5 (mon2C5) to PEG-liposomes via terminal pNP groups and studied whether the specific activity of these immobilized proteins is preserved. The method permits the binding of several dozens protein molecules per single 200 nm liposome. All bound proteins completely preserve their specific activity. Lectin-liposomes are agglutinated by the appropriate polyvalent substrates (mannan for ConA-liposomes and glycophorin for WGA-liposomes); avidin-liposomes specifically bind with biotin-agarose; antibody-liposomes demonstrate high specific binding to the substrate monolayer both in the direct binding assay and in ELISA. A comparison of the suggested method with the method of direct membrane incorporation was made. The effect of the concentration of liposome-grafted PEG on the preservation of specific protein activity in different coupling protocols was also investigated. It was also shown that pNP-PEG-DOPE-liposomes with and without attached ligands demonstrate increased stability in mouse serum.
机译:我们已尝试简化将各种配体偶联至脂质体嫁接的聚乙二醇(PEG)链末端的程序,并使其可用于多种步骤的结合,包括蛋白质和小分子。考虑到这一点,我们引入了一种新的两亲性PEG衍生物,对硝基苯基羰基PEG-1,2-油酰基-sn-甘油-3-磷酸乙醇胺(pNP-PEG-DOPE),该衍生物是通过DOPE与过量的双(对硝基苯基羰基)-PEG在氯仿/三乙胺的混合物中。 pNP-PEG-DOPE易于通过其PE残基掺入脂质体,并易于通过其暴露于水的pNP基团结合含伯氨基的配体,形成稳定且无毒的氨基甲酸酯(氨基甲酸酯)键。在大约8.0的pH值下,pNP基团与配体氨基之间的反应容易且定量地进行,并且剩余的游离pNP基团可通过自发水解迅速消除。因此,pNP-PEG-DOPE可以作为非常方便的工具将蛋白质附着到脂质体移植的PEG链的末端。为了研究建议的方案在制备长循环靶向脂质体中的适用性,我们已经偶联了几种蛋白质,例如伴刀豆球蛋白A(ConA),小麦胚芽凝集素(WGA),抗生物素蛋白,单克隆抗肌球蛋白抗体2G4(mon2G4)和通过末端pNP基团针对PEG-脂质体的单克隆抗核小体抗体2C5(mon2C5),并研究了这些固定蛋白的比活性是否得以保留。该方法允许每个单个200 nm脂质体结合数十个蛋白质分子。所有结合的蛋白质完全保留其比活性。凝集素-脂质体被适当的多价底物(ConA-脂质体为甘露聚糖,WGA-脂质体为糖苷)凝集;抗生物素蛋白脂质体与生物素琼脂糖特异性结合;抗体-脂质体在直接结合测定和ELISA中均显示出与底物单层的高特异性结合。将建议的方法与直接膜结合方法进行了比较。还研究了脂质体嫁接的PEG的浓度对不同偶联方案中特定蛋白活性保持的影响。还显示具有和不具有连接的配体的pNP-PEG-DOPE-脂质体在小鼠血清中显示出增加的稳定性。

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