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首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >Design of immuno-enzymosomes with maximum enzyme targeting capability: effect of the enzyme density on the enzyme targeting capability and cell binding properties.
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Design of immuno-enzymosomes with maximum enzyme targeting capability: effect of the enzyme density on the enzyme targeting capability and cell binding properties.

机译:具有最大酶靶向能力的免疫酶体的设计:酶密度对酶靶向能力和细胞结合特性的影响。

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Immuno-enzymosomes have been proposed for the targeting of enzymes to cancer cells to achieve site specific activation of anticancer prodrugs. Previously, we reported that the enzyme beta-glucuronidase (GUS), capable of activating anthracycline-glucuronide prodrugs, can be coupled to the surface of inmunoliposomes directed against human ovarian cancer cells (OVCAR-3). This study aimed at the design of an immuno-enzymosome formulation with maximum enzyme targeting capability. By purification of the commercially available enzyme beta-glucuronidase (GUS), a 2-fold increase in the enzyme specific activity and a 4-fold increase in the enzymatic activity of immuno-enzymosomes was achieved. As a result, upon incubation with human ovarian cancer cells (OVCAR-3), cell-associated enzymatic activity increased correspondingly. The optimized immuno-enzymosomes were shown to bind to the target cells in a specific fashion. Above a GUS/Fab' molar ratio of 0.5, impairment of the target cell binding ability of the immuno-enzymosomes was observed. This was likely due to a steric hindrance effect mediated by the presence of large amounts of bulky GUS molecules on the liposome surface. Nevertheless, increasing the GUS density on the surface of the immuno-enzymosomes to levels by far exceeding the GUS/Fab' molar ratio of 0.5, yielded a considerably improved enzyme targeting capability.
机译:已经提出了免疫酶体,用于将酶靶向癌细胞,以实现抗癌前药的位点特异性活化。先前,我们报道了能够激活蒽环类-葡糖醛酸前药的酶β-葡糖醛酸苷酶(GUS)可以与针对人卵巢癌细胞(OVCAR-3)的脂质体表面偶联。这项研究旨在设计具有最大酶靶向能力的免疫酶体制剂。通过纯化可商购的酶β-葡糖醛酸糖苷酶(GUS),实现了酶比活性的2倍增加和免疫酶体的酶活性4倍的增加。结果,在与人卵巢癌细胞(OVCAR-3)一起温育后,细胞相关的酶活性相应增加。显示优化的免疫酶体以特定方式与靶细胞结合。高于0.5的GUS / Fab'摩尔比,观察到免疫酶体的靶细胞结合能力受损。这可能是由于脂质体表面上存在大量笨重的GUS分子介导的位阻效应。然而,将免疫酶体表面上的GUS密度提高到远远超过GUS / Fab'摩尔比0.5的水平,会大大提高酶的靶向能力。

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