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Updated: May 9, 2026

Coherent anti-Stokes Raman Scattering (CARS) Microscopy Visualizes Pharmaceutical Tablets During Dissolution
Published on: July 4, 2014
[Simultaneous quantitative determination of multicomponents in tablets based on terahertz time-domain spectroscopy]
1School of Mechano-electronic Engineering, Xidian University, Xi'an 710071, China. ct63307@163.com
Terahertz time-domain spectroscopy (THz-TDS) with chemometrics enables accurate, non-destructive quantitative analysis of pharmaceutical mixtures. This method precisely determines active pharmaceutical ingredient (API) and excipient concentrations in complex formulations.
Area of Science:
- Spectroscopy
- Analytical Chemistry
- Pharmaceutical Sciences
Context:
- Accurate quantification of active pharmaceutical ingredients (APIs) and excipients in multicomponent mixtures is crucial for pharmaceutical quality control.
- Traditional analytical methods may be destructive or lack the specificity required for complex formulations.
- Terahertz time-domain spectroscopy (THz-TDS) offers a non-destructive approach for analyzing solid pharmaceutical dosage forms.
Purpose:
- To investigate the feasibility of using THz-TDS combined with chemometric modeling for the simultaneous quantitative analysis of APIs and excipients in multicomponent pharmaceutical mixtures.
- To compare the performance of principal component regression (PCR) and partial least squares (PLS) regression for predicting concentrations.
- To evaluate the accuracy and validation of the developed models.
Summary:
- Terahertz time-domain spectroscopy (THz-TDS) was employed to measure the spectra of ternary and quaternary pharmaceutical mixtures containing common APIs and excipients.
- Chemometric methods, specifically principal component regression (PCR) and partial least squares (PLS) regression, were utilized to correlate spectral data with component concentrations.
- The PLS method demonstrated superior performance, achieving high correlation coefficients (Rcal and Rval > 0.98 for ternary mixtures; > 0.93 for quaternary mixtures) for simultaneous API and excipient quantification.
- Results confirm the non-destructive quantitative analysis capability of THz-TDS combined with chemometrics for multicomponent pharmaceutical systems.
Impact:
- Demonstrates the potential of THz-TDS as a powerful, non-destructive analytical tool for the pharmaceutical industry.
- Provides a viable alternative to conventional methods for quality control and formulation analysis.
- Highlights the effectiveness of chemometric modeling in extracting quantitative information from complex spectral data.
- Suggests broad applicability in pharmaceutical analysis and other fields requiring the analysis of multicomponent materials.
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