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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >A versatile system for studying the enzymatic degradation of multi-block poly(ester amide)s
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A versatile system for studying the enzymatic degradation of multi-block poly(ester amide)s

机译:研究多嵌段聚(酯酰胺)酶解的通用系统

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The suitability of biomaterials for specific biomedical applications can be investigated through their in vitro biodegradability with selected enzymes and through their degradation kinetics. A system was developed for studying the enzymatic degradation of poly(ester amide)s (PEAs) coatings under sink conditions, with on-stream analysis of degradation products by liquid chromatography coupled to time-of-flight mass spectrometry (LC-ToF-MS). A coated capillary was treated by an enzyme solution in pulses (pulse-feed mode) or continuously (continuous-feed mode) with different flow rates. The water-soluble products resulting from the interaction of enzyme with the PEA coating were deposited on-line on a reversed-phase LC column, separated by gradient-elution LC, ionized by electrospray ionization (ESI), and identified based on ToF-MS data. The experiments underline the benefits of the experimental set-up, which requires only small amounts of coating and enzyme and produces detailed results rapidly. The system was investigated using different injection volumes (pulses) of an α-chymotrypsin solution in varying concentrations, different flow rates, and different lengths of coated capillary. The versatility of the system makes it easy to follow the course of degradation and to differentiate between primary and secondary degradation products. The system was applied to study the degradation of a di-block and a tri-block PEA. Specific degradation products showed different time profiles than the (more gradual) overall weight loss. Continuous-feed-mode analysis allowed the convenient determination of highly stable amide-bond-containing fragments, while pulse-feed-mode analysis revealed benzyl ester-containing products as primary degradation products.
机译:生物材料对特定生物医学应用的适用性可通过选择酶在体外的生物降解能力和降解动力学来研究。开发了一种用于研究在沉陷条件下对聚(酯酰胺)(PEA)涂料进行酶促降解的系统,并通过液相色谱和飞行时间质谱联用(LC-ToF-MS)在线分析降解产物)。用酶溶液以不同的流量以脉冲(脉冲进料模式)或连续(连续进料模式)处理涂覆的毛细管。将酶与PEA涂层相互作用产生的水溶性产物在线沉积在反相LC柱上,通过梯度洗脱LC分离,通过电喷雾电离(ESI)进行电离,并基于ToF-MS进行鉴定数据。实验强调了实验设置的好处,该方法只需要少量的包被和酶,即可快速产生详细的结果。使用不同浓度,不同流速和不同涂层毛细管长度的α-胰凝乳蛋白酶溶液的不同注射体积(脉冲)对系统进行了研究。该系统的多功能性使您可以轻松跟踪降解过程,并区分主要降解产物和次要降解产物。该系统用于研究二嵌段和三嵌段PEA的降解。特定的降解产物显示出的时间分布与(逐渐减少的)总重量损失不同。连续进料模式分析可方便地测定高度稳定的含酰胺键的片段,而脉冲进料模式分析则显示含苄基酯的产物为主要降解产物。

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