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Influence of Polymer Composition on the Controlled Release of Docetaxel: A Comparison of Non-Degradable Polymer Films for Oesophageal Drug-Eluting Stents

机译:聚合物组成对多西紫杉醇控释的影响:食管药物洗脱支架不可降解聚合物膜的比较

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摘要

Following the huge clinical success of drug-eluting vascular stents, there is a significant interest in the development of drug-eluting stents for other applications, such as the treatment of gastrointestinal (GI) cancers. Central to this process is understanding how particular drugs are released from stent coatings, which to a large extent is controlled by drug-polymer interactions. Therefore, in this study we investigated the release of docetaxel (DTX) from a selection of non-degradable polymer films. DTX-polymer films were prepared at various loadings (1, 5 and 10% / ) using three commercially available polymers including poly(dimethylsiloxane) (PSi), poly (ethylene- -vinyl acetate) (PEVA) and Chronosil polyurethane (PU). The formulations were characterised using different techniques such as photoacoustic Fourier-transform infrared (PA-FTIR) spectrophotometry, X-ray diffraction (XRD) and differential scanning calorimetry (DSC). The effect of DTX on the mechanical properties of the films, in-vitro release, and degradation tests were also assessed. For all polymers and DTX loadings, the drug was found to disperse homogenously without crystallisation within the polymer matrix. While no specific interactions were observed between DTX and PSi or PEVA, hydrogen-bonding appeared to be present between DTX and PU, which resulted in a concentration-dependent decrease in the Young’s moduli of the films due to disruption of inter-polymeric molecular interactions. In addition, the DTX-PU interactions were found to modulate drug release, providing near-linear release over 30 days, which was accompanied by a significant reduction in degradation products. The results indicate that DTX-loaded PU films are excellent candidates for drug-eluting stents for the treatment of oesophageal cancer.
机译:在药物洗脱血管支架取得巨大的临床成功之后,人们对开发药物洗脱支架用于其他应用(例如治疗胃肠道(GI)癌症)非常感兴趣。该过程的核心是了解特定药物如何从支架涂层中释放出来,而支架涂层在很大程度上受药物与聚合物的相互作用控制。因此,在这项研究中,我们研究了多烯紫杉醇(DTX)从一系列不可降解聚合物薄膜中的释放。使用三种市售聚合物(包括聚(二甲基硅氧烷)(PSi),聚(乙烯-乙酸乙烯酯)(PEVA)和Chronosil聚氨酯(PU))以各种负载量(1、5%和10%)制备DTX聚合物薄膜。使用不同的技术对制剂进行表征,例如光声傅立叶变换红外(PA-FTIR)分光光度法,X射线衍射(XRD)和差示扫描量热法(DSC)。还评估了DTX对薄膜机械性能,体外释放和降解测试的影响。对于所有聚合物和DTX负载,发现药物在聚合物基质中均匀分散而没有结晶。虽然在DTX和PSi或PEVA之间没有观察到特定的相互作用,但在DTX和PU之间似乎存在氢键,由于聚合物间分子相互作用的破坏,导致了薄膜的杨氏模量的浓度依赖性降低。此外,发现DTX-PU相互作用可调节药物释放,在30天内提供近乎线性的释放,同时伴随降解产物的大量减少。结果表明,载有DTX的PU膜是用于治疗食道癌的药物洗脱支架的优秀候选者。

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