波谱学杂志

• •    

恩塞芬汀核磁共振波谱学数据解析

潘美红1,秦楠1#,赵川2,文柳静3*   

  1. 1. 天津医科大学药学院,天津300070;2. 天津医科大学基础医学院,天津300070;3. 天津医科大学肿瘤医院,国家恶性肿瘤临床医学研究中心,天津市恶性肿瘤临床医学研究中心,天津市肿瘤防治重点实验室,天津300060
  • 收稿日期:2026-01-09 修回日期:2026-03-28 接受日期:2026-04-20
  • 通讯作者: 文柳静 E-mail:ddian2001@163.com;qinnan@tmu.edu.cn
  • 基金资助:
    天津医科大学肿瘤医院药物成药性评价与系统转化全国重点实验室资助课题(QZKF245)

Nuclear Magnetic Resonance Spectrometer Data Assignment of Ensifentrine

PAN Meihong1,QIN Nan1#,ZHAO Chuan2,WEN Liujing3*   

  1. 1. School of Pharmacy, Tianjin Medical University, Tianjin, 300070, China; 2. School of Basic Medical Sciences, Tianjin Medical University, Tianjin, 300070, China; 3. Tianjin Medical University Cancer Institute and Hospital, National Clinical Research Center for Cancer, Tianjin's Clinical Research Center for Cancer, Tianjin Key Laboratory of Cancer Prevention and Therapy, Tianjin, 300060, China
  • Received:2026-01-09 Revised:2026-03-28 Accepted:2026-04-20
  • Contact: WEN Liujing;QIN Nan E-mail:ddian2001@163.com;qinnan@tmu.edu.cn

摘要: 恩塞芬汀(Ensifentrine)于2024年6月被FDA批准上市.现有文献只有该药物的核磁共振(NMR)波谱数据,缺乏详细的原子归属,这不利于恩塞芬汀的杂质鉴定和质量控制,且该化合物存在多个季碳和氮原子,在NMR信号归属上存在一定难点.本文利用Bruker Avance III 400 MHz NMR波谱仪,获得恩塞芬汀的1H、13C以及二维NMR谱,完整归属了该化合物的1H和13C NMR信号.与现有文献不同的是,本文用DMSO-d6做溶剂,提高了样品溶解度,可准确指认活泼氢信号的耦合关系,同时使样品的二维NMR谱信号清晰可辨.本文为基于NMR波谱学的恩塞芬汀原料药结构解析、含量测定和质量控制提供了研究基础.

关键词: 恩塞芬汀, 结构解析, 核磁共振, 二维核磁共振

Abstract:

 The FDA approved ensifentrine for marketing in June 2024. Existing literature only provides nuclear magnetic resonance NMR spectral data for this drug, lacking detailed atomic assignments. This hinders impurity identification and quality control for ensifentrine. Furthermore, the compound contains multiple quaternary carbon and nitrogen atoms, presenting challenges in assigning NMR signals. This article uses the Bruker Avance III 400 MHz NMR spectrometer, by obtaining the 1H, 13C, and two-dimensional NMR spectra of ensifentrine, the 1H and 13C signals of this compound were fully assigned. Unlike existing literature, this study employs DMSO-d6 as the solvent, enhancing sample solubility to accurately identify coupling relationships of active hydrogen signals while rendering the signals in the two-dimensional NMR spectrum clearly distinguishable. This provides a spectroscopic basis for the structural analysis, content determination, and quality control of ensifentrine active pharmaceutical ingredient (API) based on NMR spectroscopy.