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Biodegradable Sirolimus-loaded Poly(lactide) Nanoparticles as Delivery Systems for the Prevention of Restenosis in Coronary Stent Application

机译:可生物降解的西罗莫司加载的聚(丙交酯)纳米颗粒作为预防冠状动脉支架施用中的再狭窄的递送系统

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Restenosis is one of the most frequent long-term complications after implantation of coronary stents. The scope of our studies was to evaluate to which extent Sirolimus-loaded poly(lactide) nanoparticles are suitable as delivery systems for stent application to prevent in-stent restenosis. Initially in vitro drug release kinetics studies and in vitro HCAEC and HCASMC cell culture tests were conducted. Nanoparticles of biodegredable poly(lactide) (PLA) were loaded with the pharmaceutical Sirolimus for drug delivery. Nanoparticles were characterized by scanning electron microscopy (size approx. 250 nm). The time course of Sirolimus release from Sirolimus loaded PLA nanoparticles was determined in medium at 37 °C by high performance liquid chromatography. Biocompatibility studies were performed in vitro in cell culture tests (viability and proliferation). Nanoparticle ingestion into cells was tracked via dye loaded nanoparticles by confocal laser scanning microscopy.
机译:再狭窄是植入冠状动用支架后最常见的长期并发症之一。我们研究的范围是评估西罗莫司负载的聚(丙交酯)纳米颗粒的程度适合作为支架施用的递送系统,以防止支架再狭窄。最初进行体外药物释放动力学研究和体外HCAEC和急流细胞培养试验。将可生物染色聚(丙交酯)(PLA)的纳米颗粒加载药物递送的药物递送。通过扫描电子显微镜(尺寸约为250nm),表征纳米粒子。通过高效液相色谱法在37℃下在37℃下在37℃下测定Sirolimus释放的Sirolimus释放的时间过程。在细胞培养试验(活力和增殖)中体外进行生物相容性研究。通过共聚焦激光扫描显微镜通过染料负载纳米颗粒跟踪纳米粒子进入细胞。

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