4.2 Review

DNP-enhanced solid-state NMR spectroscopy of active pharmaceutical ingredients

期刊

MAGNETIC RESONANCE IN CHEMISTRY
卷 56, 期 7, 页码 583-609

出版社

WILEY
DOI: 10.1002/mrc.4688

关键词

hyperpolarization; NMR crystallography; pharmaceuticals; structure determination

资金

  1. FP7 Ideas: European Research Council [320860]
  2. Swiss National Science Foundation [200021_160112]
  3. National Science Foundation [1709972]
  4. Direct For Mathematical & Physical Scien
  5. Division Of Chemistry [1709972] Funding Source: National Science Foundation

向作者/读者索取更多资源

Solid-state NMR spectroscopyhas become a valuable tool for the characterization of both pure and formulated active pharmaceutical ingredients (APIs). However, NMR generally suffers from poor sensitivity that often restricts NMR experiments to nuclei with favorable properties, concentrated samples, and acquisition of one-dimensional (1D) NMR spectra. Here, we review how dynamic nuclear polarization (DNP) can be applied to routinely enhance the sensitivity of solid-state NMR experiments by one to two orders of magnitude for both pure and formulated APIs. Sample preparation protocols for relayed DNP experiments and experiments on directly doped APIs are detailed. Numerical spin diffusion models illustrate the dependence of relayed DNP enhancements on the relaxation properties and particle size of the solids and can be used for particle size determination when the other factors are known. We then describe the advanced solid-state NMR experiments that have been enabled by DNP and how they provide unique insight into the molecular and macroscopic structure of APIs. For example, with large sensitivity gains provided by DNP, natural isotopic abundance, C-13-C-13 double-quantumsingle-quantum homonuclear correlation NMR spectra of pure APIs can be routinely acquired. DNP also enables solid-state NMR experiments with unreceptive quadrupolar nuclei such as H-2, N-14, and Cl-35 that are commonly found in APIs. Applications of DNP-enhanced solid-state NMR spectroscopyfor the molecular level characterization of low API load formulations such as commercial tablets and amorphous solid dispersions are described. Future perspectives for DNP-enhanced solid-state NMR experiments on APIs are briefly discussed.

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