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Design principles and performance of bioresorbable polymeric vascular scaffolds.生物可吸收聚合物血管支架的设计原则和性能。
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Comparison of everolimus-eluting and paclitaxel-eluting coronary stents in patients undergoing multilesion and multivessel intervention: the SPIRIT III (A Clinical Evaluation of the Investigational Device XIENCE V Everolimus Eluting Coronary Stent System [EECSS] in the Treatment of Subjects With De Novo Native Coronary Artery Lesions) and SPIRIT IV (Clinical Evaluation of the XIENCE V Everolimus Eluting Coronary Stent System in the Treatment of Subjects With De Novo Native Coronary Artery Lesions) randomized trials.多部位、多血管病变患者中应用依维莫司洗脱支架和紫杉醇洗脱支架的对比:SPIRIT III 试验(在治疗初发冠状动脉病变患者中对依维莫司洗脱冠状动脉支架系统(EECSS)的 XIENCE V 血管内介入器械的临床评估)和 SPIRIT IV 试验(在治疗初发冠状动脉病变患者中对依维莫司洗脱冠状动脉支架系统的 XIENCE V 血管内介入器械的临床评估)随机临床试验。
JACC Cardiovasc Interv. 2010 Dec;3(12):1229-39. doi: 10.1016/j.jcin.2010.09.014.
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Clinical follow-up 3 years after everolimus- and paclitaxel-eluting stents: a pooled analysis from the SPIRIT II (A Clinical Evaluation of the XIENCE V Everolimus Eluting Coronary Stent System in the Treatment of Patients With De Novo Native Coronary Artery Lesions) and SPIRIT III (A Clinical Evaluation of the Investigational Device XIENCE V Everolimus Eluting Coronary Stent System [EECSS] in the Treatment of Subjects With De Novo Native Coronary Artery Lesions) randomized trials.依维莫司和紫杉醇洗脱支架置入术后 3 年的临床随访:来自 SPIRIT II(依维莫司洗脱冠状动脉支架系统治疗初发冠状动脉病变的临床评估)和 SPIRIT III(依维莫司洗脱冠状动脉支架系统[EECSS]治疗初发冠状动脉病变患者的临床评估)随机试验的汇总分析。
JACC Cardiovasc Interv. 2010 Dec;3(12):1220-8. doi: 10.1016/j.jcin.2010.07.017.
4
A randomized comparison of a durable polymer Everolimus-eluting stent with a bare metal coronary stent: The SPIRIT first trial.一种耐用聚合物依维莫司洗脱支架与裸金属冠状动脉支架的随机对照研究:SPIRIT首次试验。
EuroIntervention. 2005 May;1(1):58-65.
5
A bioabsorbable everolimus-eluting coronary stent system (ABSORB): 2-year outcomes and results from multiple imaging methods.一种生物可吸收依维莫司洗脱冠状动脉支架系统(ABSORB):2年随访结果及多种成像方法的结果
Lancet. 2009 Mar 14;373(9667):897-910. doi: 10.1016/S0140-6736(09)60325-1.
6
Ethylene oxide sterilization of medical devices: a review.医疗器械的环氧乙烷灭菌:综述
Am J Infect Control. 2007 Nov;35(9):574-81. doi: 10.1016/j.ajic.2006.10.014.
7
Degradation of poly(lactide-co-glycolide) (PLGA) and poly(L-lactide) (PLLA) by electron beam radiation.聚(丙交酯-共-乙交酯)(PLGA)和聚(L-丙交酯)(PLLA)在电子束辐射下的降解
Biomaterials. 2005 Apr;26(12):1359-67. doi: 10.1016/j.biomaterials.2004.05.001.
8
The sterilizing action of gaseous ethylene oxide; sterilization of contaminated objects with ethylene oxide and related compounds; time, concentration and temperature relationships.气态环氧乙烷的杀菌作用;用环氧乙烷及相关化合物对受污染物品进行消毒;时间、浓度和温度的关系。
Am J Hyg. 1949 Nov;50(3):280-8.
9
Sterilisation of implantable devices.
Clin Mater. 1994;15(3):191-215. doi: 10.1016/0267-6605(94)90082-5.
10
Comparative terminal sterilization.比较终端灭菌
J Parenter Sci Technol. 1993 May-Jun;47(3):138-41.

药物洗脱支架产品的辐照和环氧乙烷终端灭菌经验。

Radiation and ethylene oxide terminal sterilization experiences with drug eluting stent products.

机构信息

R&D, Abbott Vascular, Temecula, California 92589, USA.

出版信息

AAPS PharmSciTech. 2011 Dec;12(4):1116-26. doi: 10.1208/s12249-011-9644-8. Epub 2011 Sep 2.

DOI:10.1208/s12249-011-9644-8
PMID:21887604
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3225553/
Abstract

Radiation and ethylene oxide terminal sterilization are the two most frequently used processes in the medical device industry to render product within the final sterile barrier package free from viable microorganisms. They are efficacious, safe, and efficient approaches to the manufacture of sterile product. Terminal sterilization is routinely applied to a wide variety of commodity healthcare products (drapes, gowns, etc.) and implantable medical devices (bare metal stents, heart valves, vessel closure devices, etc.) along with products used during implantation procedures (catheters, guidewires, etc.). Terminal sterilization is also routinely used for processing combination products where devices, drugs, and/or biologics are combined on a single product. High patient safety, robust standards, routine process controls, and low-cost manufacturing are appealing aspects of terminal sterilization. As the field of combination products continues to expand and evolve, opportunity exists to expand the application of terminal sterilization to new combination products. Material compatibility challenges must be overcome to realize these opportunities. This article introduces the reader to terminal sterilization concepts, technologies, and the related standards that span different industries (pharmaceutical, medical device, biopharmaceuticals, etc.) and provides guidance on the application of these technologies. Guidance and examples of the application of terminal sterilization are discussed using experiences with drug eluting stents and bioresorbable vascular restoration devices. The examples provide insight into selecting the sterilization method, developing the process around it, and finally qualifying/validating the product in preparation for regulatory approval and commercialization. Future activities, including new sterilization technologies, are briefly discussed.

摘要

辐射和环氧乙烷终端灭菌是医疗器械行业中最常使用的两种工艺,可使最终无菌屏障包装内的产品不含存活微生物。它们是制造无菌产品的有效、安全且高效的方法。终端灭菌通常应用于各种商品医疗保健产品(手术巾、手术衣等)和植入式医疗器械(裸金属支架、心脏瓣膜、血管闭合装置等)以及植入程序中使用的产品(导管、导丝等)。终端灭菌还常用于处理组合产品,其中医疗器械、药物和/或生物制品组合在单个产品上。高患者安全性、严格的标准、常规的过程控制和低成本制造是终端灭菌的吸引人之处。随着组合产品领域的不断扩展和发展,有机会将终端灭菌应用于新的组合产品。为了实现这些机会,必须克服材料兼容性挑战。本文向读者介绍了终端灭菌的概念、技术以及跨越不同行业(制药、医疗器械、生物制药等)的相关标准,并提供了应用这些技术的指导。使用药物洗脱支架和生物可吸收血管修复装置的应用经验讨论了终端灭菌的应用指导和示例。这些示例深入了解了选择灭菌方法、围绕该方法开发工艺以及最终为监管批准和商业化做准备对产品进行合格/验证的过程。简要讨论了未来的活动,包括新的灭菌技术。