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首页> 外文期刊>Drug development and industrial pharmacy >Development and in vitro characterization of liposomes coated with thiolated poly(acrylic acid) for oral drug delivery.
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Development and in vitro characterization of liposomes coated with thiolated poly(acrylic acid) for oral drug delivery.

机译:硫醇化聚丙烯酸包衣的脂质体的开发和体外表征,用于口服药物递送。

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摘要

Mucoadhesive drug delivery systems offer promising opportunities for oral drug delivery. The aim of this study was to investigate the feasibility of preparing liposomes that are coated with the multifunctional polymer poly(acrylic acid)-cysteine (PAA-Cys). Cationic multilamellar vesicles (MLV) as well as cationic submicron-sized liposomes (ssLip) were prepared and coated with PAA-Cys. Size, zeta potential, amount of free thiol groups, aggregation behavior, drug-loading, and drug release of these novel carriers were evaluated. A switch of the initial positive zeta potential to a negative value after coating indicated the successful coating procedure. In both size ranges, MLV and ssLip, the amount of free thiol groups was comparable to that in a PAA-Cys solution of the same concentration. Drug loading of the hydrophilic marker fluorescence-isothiocyanate 4 kDa (FD4) was higher in PAA-Cys liposomes in comparison to noncoated liposomes, but lower in comparison to liposomes coated with unmodified poly(acrylic acid) (PAA). Only a minor ssLip or no increase MLV of the drug-loading was observed when using carboxyfluorescein (CF). These effects were attributed to interactions between the markers and the poly(acrylates). Coating of liposomes with PAA-Cys and PAA did not influence the release profile of FD4 and CF, whereas the release profile was affected by the molecular mass of the marker and the liposome size. In conclusion, the feasibility of coating liposomes with PAA-Cys was demonstrated, and it could be shown that this novel carrier system fulfills the basic requirements for an intended use in oral drug delivery.
机译:粘膜粘附药物递送系统为口服药物递送提供了有希望的机会。这项研究的目的是研究制备包覆有多功能聚合物聚(丙烯酸)-半胱氨酸(PAA-Cys)的脂质体的可行性。制备阳离子多层囊泡(MLV)以及阳离子亚微米级脂质体(ssLip),并用PAA-Cys包被。评估了这些新型载体的大小,ζ电位,游离巯基的数量,聚集行为,载药量和药物释放。涂布后,将初始正ζ电势转换为负值表示涂布过程成功。在两个大小范围(MLV和ssLip)中,游离巯基的数量均与相同浓度的PAA-Cys溶液中的数量相当。与未包衣的脂质体相比,PAA-Cys脂质体中亲水性标记荧光异硫氰酸酯4 kDa(FD4)的载药量较高,但与未修饰的聚丙烯酸(PAA)包被的脂质体相比,载药量较低。使用羧基荧光素(CF)时,仅观察到少量的ssLip或未增加载药量的MLV。这些作用归因于标记物与聚丙烯酸酯之间的相互作用。用PAA-Cys和PAA包被脂质体不会影响FD4和CF的释放特性,而释放特性会受到标记物的分子量和脂质体大小的影响。总之,证明了用PAA-Cys包被脂质体的可行性,并且可以证明该新型载体系统满足口服药物递送预期用途的基本要求。

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