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盐酸达巴万星注射液的系统降解动力学研究。

A Systematic Degradation Kinetics Study of Dalbavancin Hydrochloride Injection Solutions.

机构信息

Hikma Pharmaceuticals, Bedford, OH 44146, USA; Ph.D. Graduate, Dept. of Chemistry and Chemical Biology, Northeastern University, Boston MA 02115, USA.

Dept. of Chemistry and Chemical Biology, Northeastern University, Boston, MA 02115, USA.

出版信息

J Pharm Sci. 2023 Jul;112(7):1872-1887. doi: 10.1016/j.xphs.2023.02.006. Epub 2023 Feb 12.

Abstract

The degradation kinetics of the glycopeptide antibiotic dalbavancin in solution are systematically evaluated over the pH range 1-12 at 70°C. The decomposition rate of dalbavancin was measured as a function of pH, buffer composition, temperature, ionic strength, and drug concentration. A pH-rate profile was constructed using pseudo first-order kinetics at 70°C after correcting for buffer effects; the observed pH-rate profile could be fitted with standard pseudo first order rate laws. The degradation reactions of dalbavancin were found to be strongly dependent on pH and were catalyzed by protons or hydroxyl groups at extreme pH values. Dalbavancin shows maximum stability in the pH region 4-5. Based on the Arrhenius equation, dalbavancin solution at pH 4.5 is predicted to have a maximum stability of thirteen years under refrigerated conditions, eight months at room temperature and one month at 40°C. Mannosyl Aglycone (MAG), the major thermal and acid degradation product, and DB-R6, an additional acid degradation product, were formed in dalbavancin solutions at 70°C due to hydrolytic cleavage at the anomeric carbons of the sugars. Through deamination and hydrolytic cleavage of dalbavancin, a small amount of DB-Iso-DP2 (RRT-1.22) degradation product was also formed under thermal stress at 70°C. A greater amount of the base degradation product DB-R2 forms under basic conditions at 70°C due to epimerization of the alpha carbon of phenylglycine residue 3.

摘要

在 70°C 下,系统评估了糖肽抗生素达巴万星在溶液中的降解动力学,范围为 1-12 pH 值。达巴万星的分解速率被测量为 pH、缓冲组成、温度、离子强度和药物浓度的函数。在 70°C 下,使用伪一级动力学对缓冲效应进行校正后,构建了 pH 速率曲线;观察到的 pH 速率曲线可以用标准的伪一级速率定律拟合。达巴万星的降解反应强烈依赖于 pH 值,并且在极端 pH 值下由质子或羟基催化。达巴万星在 pH 4-5 区域显示出最大的稳定性。根据阿仑尼乌斯方程,在 pH 4.5 下,达巴万星溶液在冷藏条件下预计有最长十三年的最大稳定性,在室温下为八个月,在 40°C 下为一个月。由于糖的端基碳原子的水解裂解,在 70°C 下,甘露糖基糖苷配基(MAG)和另外的酸降解产物 DB-R6 作为主要的热和酸降解产物,在达巴万星溶液中形成。通过达巴万星的脱氨和水解裂解,在 70°C 下的热应力下,也形成了少量的 DB-Iso-DP2(RRT-1.22)降解产物。在 70°C 碱性条件下,由于苯丙氨酸残基 3 的α碳原子的差向异构化,形成了更多的碱性降解产物 DB-R2。

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