首页> 外文期刊>Journal of biomedical materials research, Part A >Novel 'Plum Pudding' Gels as Potential Drug-Eluting Stent Coatings: Controlled Release of Fluvastatin
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Novel 'Plum Pudding' Gels as Potential Drug-Eluting Stent Coatings: Controlled Release of Fluvastatin

机译:新型“李子布丁”凝胶作为潜在的药物洗脱支架涂层:氟伐他汀的控释

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This study evaluated novel structural motifs known as "plum pudding" gels as potential drug-eluting stent coatings. Controlled delivery of a HMG-CoA reduc-tase inhibitor (statin) from the intravascular stent surface represents a potential therapeutic modality for prevention of in-stent restenosis (ISR). In this study, gels were comprised of fluvastatin-loaded thermoresponsive microgel particles containing the relatively hydrophilic N-isopropyl-acrylamide (NiPAAm), mixed with the more hydrophobia N-fcrf-butylacrylamide (NtBAAm) in different wt/wt ratios: 85/15, 65/35, and 50/50, randomly dispersed in a 65/35 or 85/15 MPAAm/NtBAAm copolymer matrix. Flu-vastatin release from 5 im copolymer films was greatest from the most hydrophilic systems and least from the more hydrophobic systems. Release from hydrophobic matrices appeared to be via Fickian diffusion, enabling use of the Stokes-Einstein equation to determine diffusion coefficients. Release from hydrophilic matrices was non-Fickian. Eluted drug retained its bioactivity, assessed as selective inhibition of human coronary artery smooth muscle cell proliferation. When stainless steel stent wires were coated (25 mu m thickness) with fluvastatin-loaded 65/35 microgels in an 85/15 copolymer matrix, drug elution into static and perfused flow environments followed similar elution profiles. In contrast to elution from copolymer films cast on flat surfaces, diffusion from stent wires coated with hydrophilic and hydrophobic systems both followed Fickian patterns, with slightly larger diffusion coefficients for elution from the flow system. We conclude that manipulation of the relative hydrophobicities of both microgel and matrix components of "plum pudding" gels results in tightly regulated release of fluvastatin over an extended time period relevant to initiation and propagation of ISR.
机译:这项研究评估了被称为“李子布丁”凝胶的新型结构图案,作为潜在的药物洗脱支架涂层。 HMG-CoA还原酶抑制剂(他汀类药物)从血管内支架表面的受控输送代表了预防支架内再狭窄(ISR)的潜在治疗方式。在这项研究中,凝胶由载有氟伐他汀的热响应性微凝胶颗粒组成,该颗粒包含相对亲水的N-异丙基丙烯酰胺(NiPAAm),并以不同的wt / wt比例与疏水性更高的N-fcrf-丁基丙烯酰胺(NtBAAm)混合:85/15 ,65/35和50/50,分别分散在65/35或85/15 MPAAm / NtBAAm共聚物基质中。从5m共聚物薄膜中释放的Flu-vastatin在亲水性最高的系统中最大,而疏水性更强的系统最少。从疏水性基质释放似乎是通过Fickian扩散,从而可以使用Stokes-Einstein方程来确定扩散系数。从亲水性基质释放是非菲克式的。洗脱的药物保留了其生物活性,被评估为对人冠状动脉平滑肌细胞增殖的选择性抑制。当不锈钢支架丝在85/15共聚物基质中用氟伐他汀负载的65/35微凝胶包被(25微米厚)时,药物在静态和灌注流动环境中的洗脱遵循相似的洗脱曲线。与从浇铸在平坦表面上的共聚物薄膜上洗脱相比,涂覆有亲水和疏水系统的支架丝的扩散都遵循菲克式,从流动系统洗脱时扩散系数稍大。我们得出结论,操纵“李子布丁”凝胶的微凝胶和基质成分的相对疏水性会导致氟伐他汀在与ISR的引发和传播有关的延长时间内受到严格调节的释放。

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