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Identification of the degradation products of a crosslinked polyester using LC-MS

机译:使用LC-MS鉴定交联聚酯的降解产物

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摘要

In the process of developing new biomedical devices, in addition to meeting the required criteria for their intended applications, it is imperative to also identify the degradation products over the lifetime of their intended use. Determining the major degradation products from a device is an important consideration when completing the biological evaluation of medical devices under the ISO 10993 series guidelines. Furthermore, adequate identification of the degradation products may provide preliminary insights into potentially toxic products that may arise as the device degrades.We developed a method that can be used to identify the degradation products of a polyester intended to be used as a medical device. A biodegradable polyester prepared from thiomalic acid, 1,8-octanediol and maleic acid and its nitric oxide (NO)-releasing analogue degraded over a 10-week period was used as a model system. Using a reproducible liquid chromatography-mass spectrometry (LC-MS) method, we resolved and identified major component over the degradation process. Our method highlights the advantages of using LC-MS to accurately identify the components of degradation and provides a framework for future biomedical device studies. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在开发新的生物医学设备的过程中,除了满足其预期应用的所需标准之外,还必须在其预期用途的寿命上识别降解产物。在ISO 10993系列指南下完成医疗器械的生物学评估时,从设备中确定主要退化产品是重要的考虑因素。此外,充分鉴定降解产物可以提供初步见解,该初步有毒的潜在有毒产物,这些产品可能因器件降解而产生。我们开发了一种可用于鉴定旨在用作医疗装置的聚酯的降解产物的方法。用硫代酸,1,8-辛二醇和马来酸及其一氧化氮(NO)的可生物降解的聚酯及其一氧化物(NO)降解在10周的时间内降解为模型系统。使用可再现的液相色谱 - 质谱(LC-MS)方法,我们解决并确定了降解过程的主要组分。我们的方法突出了使用LC-MS准确识别降解组件的优点,并为未来的生物医学设备研究提供框架。 (c)2019 Elsevier Ltd.保留所有权利。

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