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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Targetability of novel immunoliposomes modified with amphipathic poly(ethylene glycol) s conjugated at their distal terminals to monoclonal antibodies
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Targetability of novel immunoliposomes modified with amphipathic poly(ethylene glycol) s conjugated at their distal terminals to monoclonal antibodies

机译:两亲性聚乙二醇修饰的新型免疫脂质体在其末端结合至单克隆抗体的靶向性

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摘要

Distearoyl-N-(3-carboxypropionoyl poly(ethylene glycol) succinyl)phosphatidylethanolamine (DSPE-PEG-COOH) was newly synthesized and used to prepare novel immunoliposomes carrying monoclonal antibodies at the distal ends of the PEG chains (Type C). Liposomes were prepared from egg phosphatidylcholine (ePC) and cholesterol (CH) (2:1, m/m) containing 6 mol% of DSPE-PEG-COOH, and a monoclonal IgG antibody, 34A, which is highly specific to pulmonary endothelial cells, was conjugated to the carboxyl groups of DSPE-PEG-COOH to give various amounts of antibody molecules per liposome. Other immunoliposomes with PEG coating (Type B) or without PEG coating (an earlier type of immunoliposome, Type A) were prepared for comparison. The average molecular weight of PEG in Type B or C immunoliposomes was 2000. Type B and Type C liposomes without antibodies showed prolonged circulation time and reduced reticulo-endothelial system (RES) uptake owing to the presence of PEG. These three different types of 34A-immunoliposomes with 30–35 antibody molecules per vesicle were injected into mice to test the immunotargetability to the lung. The efficiency of lung binding of 34A-Type B was one-half of that of 34A-Type A, though a large amount of 34A-Type B remained in the blood circulation for a long time, suggesting that the steric hindrance of PEG chains reduced not only the immunospecific antibody-antigen binding, but also the RES uptake. The degree of lung binding of 34A-Type C was about 1.3-fold higher than that of 34A-Type A, indicating that recognition by the antibodies attached to the PEG terminal was not sterically hindered and that the free PEG (i.e., that not carrying antibody) was effective in increasing the blood concentration of immunoliposomes by enabling them to evade RES uptake. The latter phenomenon was confirmed by using nonspecific antibody-Type C immunoliposomes (14-Type C), which showed a high blood level for a long time. Our approach provides a simple means of conjugating antibodies directly to the distal end of PEG which is already bound to the liposome membrane, and should contribute to the development of superior targetable drug delivery vehicles for use in diagnostics and therapy.
机译:新合成了二硬脂酰基-N-(3-羧基丙酰基聚(乙二醇)琥珀酰)磷脂酰乙醇胺(DSPE-PEG-COOH),并用于制备在PEG链的远端带有单克隆抗体的新型免疫脂质体(C型)。脂质体由鸡蛋磷脂酰胆碱(ePC)和胆固醇(CH)(2:1,m / m)组成,其中含有6 mol%的DSPE-PEG-COOH和单克隆IgG抗体34A,对肺内皮细胞高度特异性,将其与DSPE-PEG-COOH的羧基缀合,以得到每个脂质体各种量的抗体分子。制备其他具有PEG涂层的免疫脂质体(B型)或不具有PEG涂层的免疫脂质体(较早的类型的免疫脂质体A型)进行比较。 B型或C型免疫脂质体中PEG的平均分子量为2000。无抗体的B型和C型脂质体由于存在PEG而显示出延长的循环时间和减少的网状内皮系统(RES)摄取。将这三种不同类型的每囊泡含30-35个抗体分子的34A免疫脂质体注入小鼠,以测试对肺的免疫靶向性。尽管长时间在血液循环中保留了大量的34A-B型,但肺结合34A-B型的效率仅为34A-A型的一半,这表明PEG链的位阻降低了不仅是免疫特异性抗体与抗原的结合,而且是RES的吸收。 34A型C的肺结合程度比34A型A的肺结合程度高约1.3倍,这表明与PEG末端连接的抗体的识别在空间上没有受到阻碍,并且游离PEG(即不携带)抗体)通过使免疫脂质体逃避RES吸收,从而有效地提高了免疫脂质体的血药浓度。后一种现象通过使用非特异性抗体C型免疫脂质体(14型C)得到了证实,该抗体长时间显示出高血脂水平。我们的方法提供了一种将抗体直接缀合至已经与脂质体膜结合的PEG远端的简单方法,并且应有助于开发用于诊断和治疗的优良可靶向药物递送载体。

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