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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Investigation of the cellular uptake of E-Selectin-targeted immunoliposomes by activated human endothelial cells
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Investigation of the cellular uptake of E-Selectin-targeted immunoliposomes by activated human endothelial cells

机译:活化的人内皮细胞对以E-选择蛋白为靶标的免疫脂质体的细胞摄取的研究

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摘要

In the present study the cellular uptake of targeted immunoliposomes by interleukin-1 activated human endothelial cells has been analysed by several spectroscopical and microscopical fluorescence techniques. Previous in vitro experiments demonstrated that the targeting of immunoliposomes to vascular selections is a potential way for a selective drug delivery at inflammatory sites. In attempts to further adapt the targeting experiments to physiological conditions, we demonstrate that E-Selectin-directed immunoliposomes are able to bind their target cells under the simulated shear force conditions of capillary blood flow cumulatively for up to 18 h. In order to consequently follow the fate of liposomes after target binding, we analysed the route and degree of liposome internalization of the cells concentrating on cell activation state or various liposomal parameters, e.g., sterical stabilization, type of antibody or antibody coupling strategy. The use of NBD-labelled liposomes and subsequent fluorescence quenching outside the cells with dithionite show that circa 25% of the targeted immunoliposomes were internalized. According to inhibition experiments with agents that interfered with the endocytotic pathway, we found out that the major mechanism of liposome entry is endocytic. The entry involves, at least in part, receptor-mediated endocytosis via E-Selectin, a liposome accumulation in the endosomes and their acidification was proved by pyranine spectroscopic results. Furthermore, microscopical investigations demonstrate that also a fusion of liposomes with the cell membrane occurs followed by a release of entrapped calcein into the cytoplasm. These observations gain insight into the behaviour of E-Selectin-targeted immunoliposomes and indicate that these immunoliposomes have great potential to be used as drug carriers for intracellular drug delivery at inflammatory sites.
机译:在本研究中,已经通过几种光谱和显微镜荧光技术分析了白介素-1激活的人内皮细胞对靶定免疫脂质体的细胞摄取。先前的体外实验表明,将免疫脂质体靶向血管选择是在炎症部位选择性递送药物的潜在方法。为了进一步使靶向实验适应生理条件,我们证明了E-选择素定向免疫脂质体能够在毛细管血流的模拟剪切力条件下累积结合其靶细胞长达18 h。为了随后追踪靶标结合后脂质体的命运,我们分析了集中于细胞激活状态或各种脂质体参数(例如,空间稳定化,抗体类型或抗体偶联策略)的细胞脂质体内在化的途径和程度。使用NBD标记的脂质体和随后用连二亚硫酸盐在细胞外进行荧光猝灭表明,大约25%的靶向免疫脂质体被内化了。根据干扰内吞途径的药物的抑制实验,我们发现脂质体进入的主要机制是内吞的。进入至少部分涉及经由E-选择蛋白的受体介导的内吞作用,脂质体在内体中的积累,并且其酸化通过吡喃光谱结果证明。此外,显微镜研究表明,脂质体与细胞膜的融合也发生了,随后被包埋的钙黄绿素释放到细胞质中。这些观察获得对靶向E-选择蛋白的免疫脂质体的行为的了解,并表明这些免疫脂质体具有巨大的潜力,可用作在炎性部位进行细胞内药物递送的药物载体。

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