Grabow Niels, Bünger Carsten M, Kischkel Sabine, Timmermann J Hinrich, Reske Thomas, Martin David P, Williams Simon F, Schareck Wolfgang, Sternberg Katrin, Schmitz Klaus-Peter
Biomed Tech (Berl). 2013 Oct;58(5):429-37. doi: 10.1515/bmt-2012-0050.
Fully absorbable drug-eluting stent platforms are currently entering the clinical arena for the interventional treatment of coronary artery disease. This new technology also holds potential for application in peripheral vascular settings. Our study reports on the development of a sirolimus- (SIR) eluting absorbable polymer stent made from a blend of poly(l-lactide) and poly(4-hydroxybutyrate) (PLLA/P4HB) for peripheral vascular intervention. Stent prototypes were laser-cut from PLLA/P4HB tubes (I.D.=2.2 mm, t=250 µm), spray-coated with different PLLA/P4HB/SIR solutions, and bench-tested to determine expansion properties, fatigue, trackability and in vitro drug release kinetics. The stent prototypes were expanded with a 5.0 × 20 mm balloon catheter, and exhibited a recoil of 3.6% upon balloon deflation. Stent collapse pressure of 0.4 bar (300 mm Hg) was measured under external pressure load. Sustained scaffolding properties were observed in vitro over 14 weeks of radial fatigue loading (50 ± 25 mm Hg at 1.2 Hz). Trackability was demonstrated in bench tests with an 8 French contralateral introducer sheath. SIR release kinetics were adjusted over a broad range by varying the PLLA/P4HB ratio of the coating matrix. The newly developed absorbable SIR-eluting PLLA/P4HB stent successfully fulfilled the requirements for peripheral vascular intervention under in vitro conditions.
完全可吸收药物洗脱支架平台目前正进入冠状动脉疾病介入治疗的临床领域。这项新技术在外周血管疾病治疗中也具有应用潜力。我们的研究报告了一种用于外周血管介入的西罗莫司(SIR)洗脱可吸收聚合物支架的研发情况,该支架由聚左旋乳酸和聚4-羟基丁酸酯(PLLA/P4HB)共混物制成。支架原型由PLLA/P4HB管(内径=2.2毫米,壁厚=250微米)激光切割而成,用不同的PLLA/P4HB/SIR溶液进行喷涂,并进行台架测试以确定其扩张性能、疲劳性能、可跟踪性和体外药物释放动力学。支架原型用5.0×20毫米球囊导管进行扩张,球囊放气后回缩率为3.6%。在外部压力负荷下测得支架塌陷压力为0.4巴(300毫米汞柱)。在14周的径向疲劳负荷(1.2赫兹下50±25毫米汞柱)体外实验中观察到了持续的支撑性能。在使用8法国规格对侧导入鞘的台架测试中证明了可跟踪性。通过改变涂层基质的PLLA/P4HB比例,可在很宽的范围内调节SIR释放动力学。新研发的可吸收SIR洗脱PLLA/P4HB支架在体外条件下成功满足了外周血管介入的要求。