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用于体外应用的、通过可裂解二硫键连接聚乙二醇偶联单克隆抗体的免疫脂质体的制备。

Preparation of immunoliposomes bearing poly(ethylene glycol)-coupled monoclonal antibody linked via a cleavable disulfide bond for ex vivo applications.

作者信息

Mercadal M, Domingo J C, Petriz J, Garcia J, de Madariaga M A

机构信息

Department of Biochemistry and Molecular Biology, University of Barcelona, Spain.

出版信息

Biochim Biophys Acta. 2000 Dec 20;1509(1-2):299-310. doi: 10.1016/s0005-2736(00)00305-9.

Abstract

Several methods for the preparation of sterically stabilized immunoliposomes (SIL) have recently been described. This report examines an established method for coupling anti-CD34 My10 mAb to poly(ethylene glycol)-liposomes (PEG-liposomes) containing the anchor pyridyldithiopropionylamino-PEG-phosphatidylethanolamine (PDP-PEG-PE) via a cleavable disulfide bond. Efficient attachment of pyridyldithio-derivatized mAb took place (equivalent to coupling ca. 70% of total input protein) at 2 mol percent of the functionalized PEG-lipid. The My10-SIL bound specifically to CD34+ cells (human leukemic KG-1a and hematopoietic progenitor cells) and the extent of binding was a function of liposomal lipid concentration, the mAb density in the liposome surface and the CD34 cell expression. In mixtures with CD34- cells (CHO or Jurkat), CD34+KG-1a cells were determined by flow cytometry at percentages (1-4%) similar to those reported in clinical samples (such as cord blood, mobilized peripheral blood and bone marrow) using a direct immunostaining with My10-SIL. The disulfide bond was stable in cell culture medium (10% of fetal calf serum) during 8 h and cell-bound SIL can be released from cells by treatment with dithiothreitol as reducing agent under mild conditions (1 h of incubation with 50 mM DTT at 20 degrees C). SIL binding and subsequent dithiothreitol treatment did not influence the cell viability. Our approach should contribute to the development of targetable liposomal vehicles to CD34+ cells for use in ex vivo conditions as sorting of hematopoietic stem cells.

摘要

最近已经描述了几种制备空间稳定免疫脂质体(SIL)的方法。本报告研究了一种成熟的方法,即通过可裂解的二硫键将抗CD34 My10单克隆抗体偶联到含有锚定基团吡啶二硫代丙酰氨基-聚乙二醇-磷脂酰乙醇胺(PDP-PEG-PE)的聚乙二醇脂质体(PEG-脂质体)上。在2摩尔百分比的功能化PEG-脂质存在下,吡啶二硫代衍生化单克隆抗体发生了高效偶联(相当于偶联约70%的总输入蛋白)。My10-SIL特异性结合CD34+细胞(人白血病KG-1a细胞和造血祖细胞),结合程度是脂质体脂质浓度、脂质体表面单克隆抗体密度和CD34细胞表达的函数。在与CD34-细胞(CHO或Jurkat细胞)的混合物中,使用My10-SIL直接免疫染色,通过流式细胞术测定CD34+KG-1a细胞的百分比(1-4%),与临床样本(如脐带血、动员外周血和骨髓)中报道的百分比相似。二硫键在细胞培养基(10%胎牛血清)中8小时内稳定,并且细胞结合的SIL可以在温和条件下(20℃用50 mM二硫苏糖醇孵育1小时)用二硫苏糖醇作为还原剂从细胞中释放出来。SIL结合和随后的二硫苏糖醇处理不影响细胞活力。我们的方法应该有助于开发用于CD34+细胞的靶向脂质体载体,用于体外条件下造血干细胞的分选。

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