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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Relevance of folic acid/polymer ratio in targeted PEG-epirubicin conjugates
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Relevance of folic acid/polymer ratio in targeted PEG-epirubicin conjugates

机译:叶酸/聚合物比例与靶向PEG-厄比霉素缀合物的相关性

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A series of PEG-epirubicin conjugates with different folic acid contents per polymer chain was synthesized in order to study the influence of polymer/targeting moiety ratio on selective cytotoxicity, cellular uptake and intracellular localization. Analogous carboxyl-terminated conjugates without folic acid were studied as control. The heterobifunctional HO-PEG-COOH was used as polymeric carrier, allowing the synthesis of conjugates with a good control over the chemical structure and the drug/polymer and polymer/targeting residue ratios. A dendron structure was synthesized at one end of the PEG chain with the aim to increase the number of folic acid molecules. L-2-aminoadipic acid was used as branching unit. The conjugates showed high stability under several physiological conditions. Biological evaluation was carried out in A549, HeLa and KB-3-1 human cell lines, as these cells have different levels of folate receptor (FR) expression. In particular A549 cells are FR negative (FR-), HeLa cells are FR positive (FR+) and KB-3-1 cells over-express FR (FR++). It was clearly shown that the biological activity of the conjugates was influenced by the presence and the number of folic acid molecules per polymer chain and by the level of FR expression on cell surface. Conjugates conformation in solution was also studied, as differences in size might well affect cell internalization. In the cell viability assay, conjugates without folic acid were unexpectedly more cytotoxic than the targeted conjugates, but their IC_(50) values were similar in the three cell lines. Differently, the anti-proliferative activity of targeted derivatives markedly increased going from FR(-) to FR(++) cells. FACS and confocal microscopy studies showed greater cellular internalization with the targeted conjugates than with their non-targeted analogues; more importantly, this relationship is clearly dependent on folic acid content in the conjugates and FR expression level in the cell line used.
机译:为了研究聚合物/靶向部分的比例对选择性细胞毒性,细胞摄取和细胞内定位的影响,合成了一系列每条聚合物链具有不同叶酸含量的PEG-表霉素结合物。研究了不含叶酸的类似的羧基封端的缀合物作为对照。杂双功能HO-PEG-COOH用作聚合物载体,可以合成偶联物,并且可以很好地控制化学结构以及药物/聚合物和聚合物/目标残基的比率。为了增加叶酸分子的数量,在PEG链的一端合成了树枝状结构。 L-2-氨基己二酸用作分支单元。缀合物在几种生理条件下显示出高稳定性。在A549,HeLa和KB-3-1人类细胞系中进行了生物学评估,因为这些细胞具有不同水平的叶酸受体(FR)表达。特别地,A549细胞是FR阴性(FR-),HeLa细胞是FR阳性(FR +),而KB-3-1细胞过表达FR(FR ++)。清楚地表明,缀合物的生物学活性受每个聚合物链中叶酸分子的存在和数量以及细胞表面上FR表达水平的影响。还研究了溶液中的缀合物构象,因为大小差异可能会影响细胞内在化。在细胞活力测定中,没有叶酸的结合物比目标结合物具有更高的细胞毒性,但在这三种细胞系中它们的IC_(50)值相似。不同的是,从FR(-)到FR(++)细胞,靶向衍生物的抗增殖活性显着增加。流式细胞仪和共聚焦显微镜研究显示,与非靶向类似物相比,靶向结合物具有更大的细胞内在化。更重要的是,这种关系显然取决于结合物中叶酸的含量和所用细胞系中FR的表达水平。

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