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首页> 外文期刊>International Journal of Pharmaceutics >A fibrin encapsulated liposomes-in-chitosan matrix (FLCM) for delivering water-soluble drugs. Influences of the surface properties of liposomes and the crosslinked fibrin network.
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A fibrin encapsulated liposomes-in-chitosan matrix (FLCM) for delivering water-soluble drugs. Influences of the surface properties of liposomes and the crosslinked fibrin network.

机译:纤维蛋白包封的壳聚糖脂质体基质(FLCM),用于递送水溶性药物。脂质体的表面性质和交联的血纤蛋白网络的影响。

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A depot drug delivery system, fibrin encapsulated liposome-in-chitosan matrix (FLCM), has been developed to deliver a water-soluble drug which is configured by a porous chitosan matrix containing a bovine fibrin network encapsulated different surface properties of liposomes. Quinacrine (QR), a water-soluble, low-molecular weight fluorescent marker, is used as a model drug to evaluate the delivery characteristics of the system. The SEM photographs show that the fibrin network adheres to the surfaces and pores of the chitosan matrix of a FLCM system. The QR release periods of the FLCM are sustained for about four times longer than those of QR encapsulated into the liposomes. However, the QR release periods and profiles of the FLCM are influenced by the surface properties of liposomes. The release of QR from FLCM is sustained for 9 days for neutral liposomes and only 5 days for PEG modified liposomes (PEG-liposome). After crosslinking the fibrin network of the FLCM with 0.5% of glutaldehyde, the release of QR is further sustained for 17 days with good linear profiles (e.g., 13 days) and with 50% of reduced burst release compared with those of without crosslinking, indicating that the stability of the fibrin network plays an important role on QR release of the system. More interestingly, the release periods and profiles of QR of the FLCM system are highly similar to those of Tirofiban, low-molecular weight of a water-soluble clinical cardiovascular drug, although the study has been done by human platelet poor plasma instead of bovine fibrinogen as a source of fibrin network. It suggests that the QR is a suitable model for investigating the drug delivery behaviors for water-soluble, low-molecular weight drugs of the FLCM. In conclusion, with QR as a model drug, FLCM with crosslinked fibrin network can effectively sustain the release of QR for 17 days but the release profiles are influenced by the surface properties of encapsulated liposomes. This study suggests that FLCM may have the potential as a depot drug delivery system for water-soluble drugs.
机译:已经开发了储库药物递送系统,即纤维蛋白包封的壳聚糖脂质体基质(FLCM),以递送水溶性药物,该水溶性药物由多孔壳聚糖基质构成,该多孔的壳聚糖基质包含封装了脂质体不同表面特性的牛纤维蛋白网络。水溶性低分子量荧光标记奎纳克林(QR)被用作模型药物,以评估系统的递送特性。 SEM照片显示,纤维蛋白网络粘附在FLCM系统壳聚糖基质的表面和孔上。 FLCM的QR释放时间比封装在脂质体中的QR释放时间长约四倍。但是,FLCM的QR释放时间和分布受脂质体表面特性的影响。对于中性脂质体,从FLCM释放QR持续9天,对于PEG修饰的脂质体(PEG-脂质体)仅持续5天。与未交联的FLCM的纤维蛋白网络与0.5%的戊二醛交联后,QR的释放进一步持续了17天,具有良好的线性特征(例如13天),并且突发释放减少了50%,这表明纤维蛋白网络的稳定性在系统QR释放中起着重要作用。更有趣的是,FLCM系统的QR释放周期和分布特征与Tirofiban(水溶性临床心血管药物的低分子量)替罗非班的释放时间和分布高度相似,尽管该研究是通过人血小板贫血的血浆而非牛纤维蛋白原进行的。作为纤维蛋白网络的来源。这表明QR是研究FLCM的水溶性,低分子量药物的药物递送行为的合适模型。总之,以QR为模型药物,具有交联纤维蛋白网络的FLCM可以有效地维持QR的释放达17天,但释放曲线受封装的脂质体表面特性的影响。这项研究表明,FLCM可能作为水溶性药物的储库药物递送系统。

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