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Direct, non-destructive quantitative measurement of an active pharmaceutical ingredient in an intact capsule formulation using Raman spectroscopy

Authors
Kim, JaejinNoh, JaegeunChung, HoeilWoo, Young-AhKemper, Mark S.Lee, Youngil
Issue Date
Aug-2007
Publisher
ELSEVIER
Keywords
pharmaceutical capsule; ambroxol; non-destructive analysis; Raman spectroscopy; wide area illumination
Citation
ANALYTICA CHIMICA ACTA, v.598, no.2, pp.280 - 285
Indexed
SCIE
SCOPUS
Journal Title
ANALYTICA CHIMICA ACTA
Volume
598
Number
2
Start Page
280
End Page
285
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/172264
DOI
10.1016/j.aca.2007.07.049
ISSN
0003-2670
Abstract
The active pharmaceutical ingredient (ambroxol) in an intact capsule formulation has been non-destructively quantified using Raman spectroscopy. To improve the problem of insufficient representive sampling inherent in Raman measurements, we have employed a wide area illumination (WAI) scheme that enables much improved sample coverage through a circular excitation laser spot with a 6 mm diameter. One of the anticipated sources of variation for this measurement was variation in the capsule shells. However, the WAI scheme significantly decreased the spectral variation among empty capsules compared to a measurement with a traditional small-spot excitation. Therefore, measurement variations emanating from the capsule shell did not significantly influence the accuracy of the determination of ambroxol concentrations. The resulting standard error of prediction (SEP) using the WAI scheme was comparable to that from previous Raman measurements which used a conventional small-spot excitation and employed a sampling scheme that involved rotation of an ambroxol pellet. It is further noteworthy that the SEP was also similar to that obtained from the use of transmission NIR spectroscopy, which was achieved by collection of spectra of the powdered capsule contents removed from the shell. The proposed Raman measurement using the WAI scheme in this case was sufficient to achieve the quantitative measurement of the active pharmaceutical ingredient (API) content of capsules non-destructively.
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