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一种新型腔内沟槽填充可生物降解聚合物西罗莫司洗脱支架的安全性和有效性。

Safety and efficacy of a novel abluminal groove-filled biodegradable polymer sirolimus-eluting stent.

作者信息

Zhu Jinzhou, Liu Huizhu, Cui Haipo, Tang Zhirong, Song Chengli, Zhang Ruiyan

机构信息

Department of Cardiology, Rui Jin Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, 200025, China.

Shanghai Institute for Minimally Invasive Therapy, School of Medical Instrument and Food Engineering, Shanghai Science and Technology University, Shanghai, 200093, China.

出版信息

J Mater Sci Mater Med. 2017 Mar;28(3):54. doi: 10.1007/s10856-017-5864-0. Epub 2017 Feb 14.

Abstract

Late stent thrombosis (LST) following drug-eluting stent (DES) implantation in patients with coronary artery disease (CAD) is often associated with delayed vascular healing, resulting from vascular inflammation and hypersensitivity to durable polymers and drugs. Therefore, DES design, materials, and coatings have been technologically revolutionized. Herein, we designed a novel abluminal groove-filled biodegradable polymer sirolimus-eluting stent (AGF-BP-SES), with a sirolimus content of only about one-third of traditional DES. The mechanical performances of AGF-BP-SES during compression and expansion were investigated. The pharmacokinetic (PK) profile of sirolimus was studied in the swine model. The in vivo efficacy of AGF-BP-SES was compared with that of Xience PRIME stent. The results showed that AGF-BP-SES exhibited mechanical properties similar to traditional DES, including the rebound ratio of radial contraction/direction, rebound ratio of axial contraction/direction, and inhomogeneity of compression/expansion. Despite utilizing a reduced dose of sirolimus, AGF-BP-SES delivered sirolimus to the coronary artery in a controlled and efficient manner. The stent maintained a safe and effective local drug concentration without local or systemic risks. In the swine model, histopathological indicators predicted safety and biocompatibility of AGF-BP-SES. In conclusion, AGF-BP-SES maintained similar mechanical properties as other stents while reducing the drug-loading capacity, and showed a favorable safety and efficacy profile of the targeted DES.

摘要

在冠状动脉疾病(CAD)患者中,药物洗脱支架(DES)植入后发生的晚期支架血栓形成(LST)通常与血管愈合延迟有关,这是由血管炎症以及对耐用聚合物和药物的超敏反应所致。因此,DES的设计、材料和涂层在技术上已经发生了变革。在此,我们设计了一种新型的腔内凹槽填充可生物降解聚合物西罗莫司洗脱支架(AGF-BP-SES),其西罗莫司含量仅为传统DES的约三分之一。研究了AGF-BP-SES在压缩和扩张过程中的力学性能。在猪模型中研究了西罗莫司的药代动力学(PK)特征。将AGF-BP-SES的体内疗效与Xience PRIME支架进行了比较。结果表明,AGF-BP-SES表现出与传统DES相似的力学性能,包括径向收缩/方向的回弹率、轴向收缩/方向的回弹率以及压缩/扩张的不均匀性。尽管使用了降低剂量的西罗莫司,AGF-BP-SES仍以可控且有效的方式将西罗莫司输送至冠状动脉。该支架维持了安全有效的局部药物浓度,且无局部或全身风险。在猪模型中,组织病理学指标预示了AGF-BP-SES的安全性和生物相容性。总之,AGF-BP-SES在降低载药量的同时保持了与其他支架相似的力学性能,并显示出靶向DES良好的安全性和疗效。

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