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Optimization strategy for purification of a peptide from complex mixtures by reversed-phase liquid chromatography with a back-flushing technique

机译:反相液相色谱-反吹技术从复杂混合物中纯化肽的优化策略

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摘要

An optimization strategy for the separation and purification of a peptide from crude material by reversed-phase liquid chromatography was developed. First, in the separation step, the tetrahydrofuran, instead of normal organic modifiers in the mobile phase, could improve the separation of the target peptide from its impurities; hence, the mass loading could be increased in each run. Furthermore, a back-flushing technique was introduced to elute the strongly retained impurities rapidly and economically. A raw mixture of 10 mg was purified on an analytical column by an overloading operation in one run, using a mobile phase consisting of tetrahydrofuran-water ( 30: 70, v/v) + 0.1% TFA at a flow-rate of 1.0 mL/min and room temperature. The purity of the product was increased from 50% to 98% with recovery over 80%. The back-flushing step was very crucial to regenerate the system for the next run in the sense of both cost and time.
机译:提出了通过反相液相色谱从粗品中分离纯化多肽的优化策略。首先,在分离步骤中,用四氢呋喃代替流动相中的常规有机改性剂可以改善目标肽与杂质的分离。因此,每次运行都可以增加质量负载。此外,引入了反冲洗技术以快速,经济地洗脱强烈保留的杂质。在一次运行中通过重载操作在分析柱上纯化10 mg粗混合物,使用的流动相为四氢呋喃-水(30:70,v / v)+ 0.1%TFA,流速为1.0 mL / min和室温。产物的纯度从50%增加到98%,回收率超过80%。从成本和时间的角度来看,反冲洗步骤对于重新生成系统以用于下一次运行非常关键。

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