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Dextran sulfate as a drug delivery platform for drug‐coated balloons: Preparation characterization in vitro drug elution and smooth muscle cell response

机译:硫酸葡聚糖作为药物涂层气球的药物递送平台:制备表征体外药物洗脱和平滑肌细胞反应

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摘要

Drug‐coated balloons (DCBs) have now emerged as a promising approach to treat peripheral artery disease. However, a significant amount of drug from the balloon surface is lost during balloon tracking and results in delivering only a subtherapeutic dose of drug at the diseased site. Hence, in this study, the use of dextran sulfate (DS) polymer was investigated as a platform to control the drug release from balloons. An antiproliferative drug, paclitaxel (PAT), was incorporated into DS films (PAT‐DS). The characterizations using SEM, FT‐IR, and DSC showed that the films prepared were smooth and homogenous with PAT molecularly dispersed in the bulk of DS matrix in amorphous form. An investigation on the interaction of smooth muscle cells (SMCs) with control‐DS and PAT‐DS films showed that both films inhibited SMC growth, with a superior inhibitory effect observed for PAT‐DS films. PAT‐DS coatings were then produced on balloon catheters. The integrity of coatings was well‐maintained when the balloons were either deflated or inflated. In this study, up to 2.2 µg/mm2 of PAT was loaded on the balloons using the DS platform. Drug elution studies showed that only 10 to 20% of the total PAT loaded was released from the PAT‐DS coated balloons during the typical time period of balloon tracking (1 min) and then ∼80% of the total PAT loaded was released during the typical time period of balloon inflation and treatment (from 1 min to 4 min). Thus, this study demonstrated the use of DS as a platform to control drug delivery from balloons. © 2015 The Authors Journal of Biomedical Materials Research Part B: Applied Biomaterials Published by Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 104B: 1416–1430, 2016.
机译:如今,药物涂层球囊(DCB)已经成为治疗外周动脉疾病的一种有前途的方法。然而,在球囊跟踪期间,从球囊表面流失了大量药物,导致仅在患病部位递送亚治疗剂量的药物。因此,在这项研究中,研究了使用硫酸葡聚糖(DS)聚合物作为控制药物从气球释放的平台。 DS膜(PAT-DS)中加入了抗增殖药紫杉醇(PAT)。使用SEM,FT-IR和DSC进行的表征表明,所制备的薄膜光滑且均匀,PAT分子以无定形形式分散在DS基质中。一项关于平滑肌细胞(SMC)与对照DS和PAT-DS膜相互作用的研究表明,这两种膜均抑制SMC生长,并且对PAT-DS膜具有优异的抑制作用。然后在气囊导管上产生PAT‐DS涂层。气球放气或充气时,涂层的完整性得到了很好的维护。在这项研究中,使用DS平台将高达2.2 µg / mm 2 的PAT装载到了气球上。药物洗脱研究表明,在典型的球囊跟踪时间段(1分钟)内,PAT-DS涂层的球囊仅释放了10%至20%的PAT释放,然后在约8%的球囊释放过程中,约有80%的PAT释放了。气囊充气和治疗的典型时间段(从1分钟到4分钟)。因此,本研究证明了DS作为平台控制球囊药物输送的用途。 ©2015作者,《生物医学材料研究杂志》第B部分:应用生物材料,由Wiley Periodicals,Inc.出版。J Biomed Mater Res第B部分:Appl Biomater,104B:1416-1430,2016。

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