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Product and Contaminant Measurement in Bioprocess Development by SELDI-MS

机译:通过SELDI-MS在生物工艺开发中进行产品和污染物测量

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摘要

Bioprocesses for therapeutic protein production typically require significant resources to be invested in their development. Underlying these efforts are analytical methods, which must be fit for the purpose of monitoring product and contaminants in the process. It is highly desirable, especially in early-phase development when material and established analytical methods are limiting, to be able to determine what happens to the product and impurities at each process step with small sample volumes in a rapid and readily performed manner. This study evaluates the utility of surface-enhanced laser desorption ionization mass spectroscopy (SELDI-MS), known for its rapid analysis and minimal sample volumes, as an analytical process development tool. In-process samples from an E. coli process for apolipo-protein A-IM (ApoA-IM) manufacture were used along with traditional analytical methods such as HPLC to check the SELDI-MS results. ApoA-IM is a naturally occurring variant of ApoA-I that appears to confer protection against cardiovascular disease to those that carry the mutated gene. The results show that, unlike many other analytical methods, SELDI-MS can handle early process samples that contain complex mixtures of biological molecules with limited sample pretreatment and thereby provide meaningful process-relevant information. At present, this technique seems most suited to early-phase development particularly when methods for traditional analytical approaches are still being established.
机译:生产治疗性蛋白质的生物过程通常需要投入大量资源进行开发。这些努力的基础是分析方法,必须适合于监视过程中的产品和污染物的目的。迫切希望,特别是在早期开发中,当材料和既定的分析方法受到限制时,能够以快速且易于执行的方式确定小样品量的每个处理步骤中产物和杂质的情况。这项研究评估了表面增强激光解吸电离质谱(SELDI-MS)作为分析过程开发工具的效用,该技术以其快速分析和最小的样品量而闻名。大肠杆菌工艺生产的载脂蛋白A-IM(ApoA-IM)的过程中样品与传统分析方法(如HPLC)一起使用,以检查SELDI-MS结果。 ApoA-IM是ApoA-I的天然变异体,似乎对携带突变基因的人具有抗心血管疾病的保护作用。结果表明,与许多其他分析方法不同,SELDI-MS可以通过有限的样品预处理来处理包含生物分子复杂混合物的早期过程样品,从而提供有意义的过程相关信息。目前,该技术似乎最适合早期开发,尤其是当仍在建立传统分析方法的方法时。

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