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◆ Chemical & pharmaceutical bulletin2026-01-01

Detection of Crystalline Ibuprofen Components in Ibuprofen-Loaded SBA-15 Mesoporous Silica Using Time-Domain NMR.

Madoka Kobayashi, Fumitaka Kato, Kotaro Okada

原始摘要(英文原文)· Original abstract
The present study evaluated the applicability of time-domain NMR (TD-NMR) for detecting crystalline ibuprofen components in ibuprofen-loaded mesoporous silica. Ibuprofen-loaded mesoporous silica samples with different drug loadings were prepared, and the physical state of ibuprofen was characterized by nitrogen adsorption, powder X-ray diffraction (PXRD), differential scanning calorimetry (DSC), 13C solid-state NMR spectroscopy, and TD-NMR relaxation measurements. PXRD, DSC, and 13C solid-state NMR spectroscopy did not clearly detect crystalline ibuprofen in samples with ibuprofen loadings of 10-30%. By contrast, crystalline components were observed in samples with loadings of 40% or higher. These crystalline components were considered to originate predominantly from excess ibuprofen that crystallized outside the mesopores. In the T1 relaxation analysis using TD-NMR, IBU10-30 was mainly described by a monoexponential function, whereas IBU40-70 required a biexponential function, yielding a long T1 component associated with crystalline ibuprofen. In the T2 relaxation analysis, IBU40-70 exhibited an initial rapid decay that was described by a Gaussian function, whereas IBU10-30 showed a gradual exponential decay. The signal proportions of these NMR relaxation components increased with increasing ibuprofen loading and showed trends consistent with the apparent crystallinity estimated by DSC. These results suggest that TD-NMR, particularly T2 relaxation analysis, may serve as a complementary, nondestructive, and rapid method for evaluating the appearance and increase of crystalline ibuprofen components in mesoporous silica formulations and for monitoring changes in crystallinity.
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Detection of Crystalline Ibuprofen Components in Ibuprofen-Loaded SBA-15 Mesoporous Silica Using Time-Domain NMR. — 科研速览 Science Skim