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Natural abundance N-14 and N-15 solid-state NMR of pharmaceuticals and their polymorphs

机译:药物及其多晶型物的自然丰度N-14和N-15固态NMR

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摘要

N-14 ultra-wideline (UW), H-1{N-15} indirectly-detected HETCOR (idHETCOR) and N-15 dynamic nuclear polarization (DNP) solid-state NMR (SSNMR) experiments, in combination with plane-wave density functional theory (DFT) calculations of N-14 EFG tensors, were utilized to characterize a series of nitrogen-containing active pharmaceutical ingredients (APIs), including HCl salts of scopolamine, alprenolol, isoprenaline, acebutolol, dibucaine, nicardipine, and ranitidine. A case study applying these methods for the differentiation of polymorphs of bupivacaine HCl is also presented. All experiments were conducted upon samples with naturally-abundant nitrogen isotopes. For most of the APIs, it was possible to acquire frequency-stepped UW N-14 SSNMR spectra of stationary samples, which display powder patterns corresponding to pseudo-tetrahedral (i.e., RR'R '' NH+ and RR'NH2+) or other (i.e., RNH2 and RNO2) nitrogen environments. Directly-excited N-14 NMR spectra were acquired using the WURST-CPMG pulse sequence, which incorporates WURST (wideband, uniform rate, and smooth truncation) pulses and a CPMG (Carr-Purcell Meiboom-Gill) refocusing protocol. In certain cases, spectra were acquired using H-1 -> N-14 broadband cross-polarization, via the BRAIN-CP (broadband adiabatic inversion-cross polarization) pulse sequence. These spectra provide N-14 electric field gradient (EFG) tensor parameters and orientations that are particularly sensitive to variations in local structure and intermolecular hydrogen-bonding interactions. The H-1{N-15} idHETCOR spectra, acquired under conditions of fast magic-angle spinning (MAS), used CP transfers to provide H-1-N-15 chemical shift correlations for all nitrogen environments, except for two sites in acebutolol and nicardipine. One of these two sites (RR'NH2+ in acebutolol) was successfully detected using the DNP-enhanced N-15{H-1} CP/MAS measurement, and one (RNO2 in nicardipine) remained elusive due to the absence of nearby protons. This exploratory study suggests that this combination of techniques has great potential for the characterization of solid APIs and numerous other organic, biological, and inorganic systems.
机译:N-14超宽线(UW),H-1 {N-15}间接检测的HETCOR(idHETCOR)和N-15动态核极化(DNP)固态NMR(SSNMR)实验,结合平面波利用N-14 EFG张量的密度泛函理论(DFT)计算来表征一系列含氮活性药物成分(API),包括东pol碱,阿普萘洛尔,异戊那林,醋丁酚,地布卡因,尼卡地平和雷尼替丁的HCl盐。还提供了使用这些方法区分盐酸布比卡因多晶型的案例研究。所有实验都是在具有自然丰富的氮同位素的样品上进行的。对于大多数API,可以获取固定样品的分频UW N-14 SSNMR谱图,该谱图显示对应于伪四面体(即RR'R''NH +和RR'NH2 +)或其他(即RNH2和RNO2)氮环境。使用WURST-CPMG脉冲序列获得了直接激发的N-14 NMR光谱,该序列结合了WURST(宽带,均匀速率和平滑截断)脉冲和CPMG(Carr-Purcell Meiboom-Gill)重聚焦协议。在某些情况下,通过BRAIN-CP(宽带绝热反演-交叉极化)脉冲序列,使用H-1-> N-14宽带交叉极化获得光谱。这些光谱提供了N-14电场梯度(EFG)张量参数和方向,这些参数和方向对局部结构和分子间氢键相互作用的变化特别敏感。在快速幻角旋转(MAS)条件下获得的H-1 {N-15} idHETCOR光谱使用CP转移为所有氮环境提供H-1-N-15化学位移相关性,但在两个氮环境中除外醋丁酚和尼卡地平。使用DNP增强的N-15 {H-1} CP / MAS测量已成功检测到这两个位点之一(醋丁洛尔中的RR'NH2 +),而由于附近的质子缺失,一个位点(尼卡地平中的RNO2)仍然难以捉摸。这项探索性研究表明,这种技术组合对于表征固体原料药以及许多其他有机,生物和无机系统具有巨大的潜力。

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