AI Article Synopsis

  • Detailed examination of tablet structures is essential for understanding their formulation, properties, and safety, with X-ray CT offering a noninvasive analysis method.
  • This study focused on the effects of humidity on magnesium oxide (MgO) tablets, which were tested under high humidity conditions and later evaluated for weight and structural changes.
  • Findings revealed significant moisture absorption, weight increase, and sustained internal structural changes in MgO tablets, demonstrating X-ray CT's effectiveness for non-destructive evaluation of such transformations.

Article Abstract

Detailed examinations of the internal structure of tablets are imperative for comprehending their formulation, physical attributes, and ensuring their safe utilization. While X-ray computed tomography (CT) is valuable for noninvasively analyzing internal structural changes, the influence of humidity on these structural changes remains unexplored. Accordingly, we aimed to assess the viability of X-ray CT in non-destructively evaluating the internal structure of humidified magnesium oxide (MgO) tablets. MgO tablets were subjected to conditions of 40 °C and 75% humidity for 7 days, weighed pre- and post-humidification, and subsequently stored at room temperature (22-27 °C) until day 90. Their internal structure was evaluated using X-ray CT. We observed a substantial increase in the weight of MgO tablets concomitant with moisture absorption, with minimal changes observed upon storage at room temperature. The skewness reduced immediately post-moisture absorption, remained almost the same post-storage at room temperature, and failed to revert to pre-humidification levels during the storage period. These findings highlight the utility of X-ray CT as an effective tool for non-destructive, three-dimensional, and detailed evaluation of internal structural transformations in MgO tablets.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10943080PMC
http://dx.doi.org/10.1038/s41598-024-56949-8DOI Listing

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