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首页> 外文期刊>Acta biomaterialia >Incorporation of ionic ligands accelerates drug release from LDI-glycerol polyurethanes.
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Incorporation of ionic ligands accelerates drug release from LDI-glycerol polyurethanes.

机译:离子配体的掺入加速了LDI-甘油聚氨酯的药物释放。

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摘要

This study seeks to determine the effect of ionic ligands on the drug delivery characteristics of biodegradable polyurethane materials synthesized from lysine diisocyanate (LDI) and glycerol. Two naturally occurring, structurally related ionic species, choline chloride (CC) and isethionic acid (ISE), along with 3,3-dimethyl-butanol (DMB), their neutral carbon analog, were covalently incorporated into LDI-glycerol polyurethane materials. Selected organometallic and tertiary amine catalysts were used to fashion films and foams, respectively. The potent anticancer compound DB-67, a fluorescent camptothecin derivative, was also covalently linked to the polyurethane constructs. It was first determined that the sulfonate functional group on ISE does not react to a significant degree with isocyanate. The morphological characteristics of the polyurethane films and foams were assessed via scanning electron microscopy, showing significant differences related to the ionic ligands. The ionic materials displayed increased swelling in aqueous media over the neutral control materials. Differences in the distribution of DB-67 throughout the films and foams were then detected by fluorescence microscopy. The drug delivery characteristics of the materials were then evaluated in vitro, revealing accelerated release from ionic materials. The results of this study demonstrate the unique effects that incorporation of ionic ligands into LDI-glycerol polyurethanes have on the morphology and drug distribution of the materials. These differences have a significant impact on the drug delivery characteristics of the materials, and this information should prove useful in the design and synthesis of biodegradable controlled release systems.
机译:这项研究旨在确定离子配体对由赖氨酸二异氰酸酯(LDI)和甘油合成的可生物降解聚氨酯材料的药物传递特性的影响。 LDI-甘油聚氨酯材料共价结合了两种天然存在的,结构上相关的离子物质,氯化胆碱(CC)和异乙酸(ISE),以及它们的中性碳类似物3,3-二甲基丁醇(DMB)。选定的有机金属和叔胺催化剂分别用于形成薄膜和泡沫。有效的抗癌化合物DB-67,一种喜树碱荧光衍生物,也与聚氨酯结构共价连接。首先确定ISE上的磺酸盐官能团不会与异氰酸酯发生显着反应。通过扫描电子显微镜评估聚氨酯膜和泡沫的形态特征,显示出与离子配体有关的显着差异。离子材料在水性介质中的溶胀比中性对照材料增加。然后通过荧光显微镜检测DB-67在整个膜和泡沫中的分布差异。然后在体外评估了材料的药物传递特性,揭示了从离子材料的加速释放。这项研究的结果表明,将离子配体掺入LDI-甘油聚氨酯中对材料的形态和药物分布具有独特的影响。这些差异对材料的药物传递特性有重大影响,并且该信息应证明可用于设计和合成可生物降解的控释系统。

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