Biopharmaceutical R&D, GlaxoSmithKline llc., King of Prussia, Pennsylvania 19406, United States.
Anal Chem. 2012 May 15;84(10):4357-72. doi: 10.1021/ac203478r. Epub 2012 Apr 27.
The characterization of orally-delivered peptide pharmaceuticals presents several challenges to analytical methods in comparison to characterization of conventional small-molecule drugs. These challenges include the analysis and characterization of difficult-to-separate impurities, secondary structure, the amorphous solid-state form, and the integrity of enteric-coated drug delivery systems. This work presents the multidisciplinary analytical characterization of a parathyroid hormone (PTH) peptide active pharmaceutical ingredient (API) and an oral formulation of this API within enteric-coated sucrose spheres. The analysis of impurities and degradation products in API and formulated drug product was facilitated by the development of an ultrahigh-performance liquid chromatography (UHPLC) method for analysis by high-resolution mass spectrometry (MS). The use of UHPLC allowed for additional resolution needed to detect impurities and degradation products of interest. The secondary structure was probed using a combination of solution-state NMR, infrared, and circular dichroism spectroscopic methods. Solid-state NMR is used to detect amorphous API in a nondestructive manner directly within the coated sucrose sphere formulation. Fluorescence and Raman microscopy were used in conjunction with Raman mapping to show enteric coating integrity and observe the distribution of API beneath the enteric-coating on the sucrose spheres. The methods are combined in a multidisciplinary approach to characterize the quality of the enteric-coated peptide product.
与传统的小分子药物相比,口服肽类药物的特性分析对分析方法提出了一些挑战。这些挑战包括对难以分离的杂质、二级结构、无定形固体形式以及肠溶给药系统完整性的分析和表征。本工作对甲状旁腺激素 (PTH) 肽原料药 (API) 及其肠溶包衣蔗糖球内该 API 的口服制剂进行了多学科分析表征。通过开发用于高分辨率质谱 (MS) 分析的超高效液相色谱 (UHPLC) 方法,促进了 API 和制剂药物产品中杂质和降解产物的分析。使用 UHPLC 可以实现额外的分辨率,以检测感兴趣的杂质和降解产物。使用溶液态 NMR、红外和圆二色性光谱方法组合来探测二级结构。固态 NMR 用于以非破坏性方式直接在包衣蔗糖球制剂中检测无定形 API。荧光和拉曼显微镜与拉曼映射结合使用,以显示肠溶包衣的完整性,并观察 API 在蔗糖球上的肠溶包衣下的分布。这些方法结合在多学科方法中,用于表征肠溶肽产品的质量。