Chapter 11. Determination of the Identity, Content and Purity of Therapeutic Peptides by NMR Spectroscopy

E. Kellenbach, T. Rundlöf
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Abstract

This chapter describes the application of NMR spectroscopy to the determination of the identity, content, structure and purity of peptides. Both 1D and 2D NMR examples are presented for both 1H and other nuclei. NMR spectroscopy is a nondestructive technique requiring limited sample pretreatment and development time. The limited sample pretreatment reduces the experimental time and variations due to handling, thereby increasing robustness. NMR spectroscopy can distinguish between very closely related peptides. It is especially suited for the determination of unrelated impurities such as process-related impurities and extractables/leachables. NMR spectroscopy is very sensitive to higher-order structure. Although NMR equipment in itself is expensive, the actual cost of an NMR spectrum is low owing to automation and limited consumables.
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第十一章。核磁共振光谱法测定治疗肽的性质、含量和纯度
本章介绍了核磁共振波谱法在多肽鉴别、含量、结构和纯度测定中的应用。给出了1H和其他核的一维和二维核磁共振例子。核磁共振波谱是一种无损技术,需要有限的样品预处理和开发时间。有限的样品预处理减少了实验时间和由于处理引起的变化,从而增加了鲁棒性。核磁共振波谱可以区分非常密切相关的肽。它特别适用于不相关杂质的测定,如工艺相关杂质和可萃取物/可浸出物。核磁共振波谱对高阶结构非常敏感。虽然核磁共振设备本身是昂贵的,但由于自动化和有限的耗材,核磁共振光谱的实际成本很低。
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Peptide Therapeutics: Fundamentals of Design, Development, and Delivery Chapter 5. Peptide Manufacturing Methods and Challenges Chapter 2. Regulatory Perspective on Synthetic Peptides in Europe Chapter 13. Assessing the Impact of Functional Excipients on Peptide Drug Product Attributes During Pharmaceutical Development Chapter 9. Impurity Characterization and Quantification by Liquid Chromatography–High-resolution Mass Spectrometry
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