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Antibody-conjugated magnetoliposomes for targeting cancer cells and their application in hyperthermia

机译:用于靶向癌细胞的抗体偶联磁脂质体及其在热疗中的应用

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Magnetoliposomes for hyperthermia treatment of cancer were prepared by coating phospholipid on to magnetite particles. The optimum phospholipid composition for dispersibility was a phosphatidylcholine/phosphatidylethanol-amine ratio of 2:1. The average size of the magnetoliposomes, which were aggregates of 10 nm core magnetite particles, was about 80 nm. The magnetoliposomes were coated with hydrazide pullulan to stabilize the phospholipid capsules and provide an anchor for the immobilization of antibodies. By this method, 90-180 molecules of a monoclonal antibody were immobilized on to a magnetoliposome particle. When the antibody-conjugated magnetoliposomes were incubated with cancer cells, they were adsorbed on to the cell surface and incorporated by the cells about 12 times more effectively than the control after 4 h. The amount of incorporated magnetite was 0.61-3.6 pg/cell, depending on the antigen-antibody system. The heating properties of the magnetoliposomes were also measured and found to vary with the size of the core magnetite.
机译:通过将磷脂涂覆在磁铁矿颗粒上来制备用于癌症高温治疗的磁脂质体。用于分散的最佳磷脂组合物是磷脂酰胆碱/磷脂酰乙醇-胺之比为2∶1。磁脂质体的平均尺寸约为80 nm,磁脂质体是10 nm核心磁铁矿颗粒的聚集体。用酰脲支链淀粉包被磁脂质体以稳定磷脂胶囊并提供固定抗体的锚。通过这种方法,将90-180分子的单克隆抗体固定在磁脂质体颗粒上。当抗体缀合的磁脂质体与癌细胞一起孵育时,它们被吸附到细胞表面,并在4小时后被细胞掺入比对照有效约12倍。取决于抗原-抗体系统,磁铁矿的掺入量为0.61-3.6 pg /细胞。还测量了脂质体的加热性质,发现其随核心磁铁矿的大小而变化。

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