Terahertz Frequency-Domain Sensing Combined with Quantitative Multivariate Analysis for Pharmaceutical Tablet Inspection
Artikel i vetenskaplig tidskrift, 2023

Near infrared (NIR) and Raman spectroscopy combined with multivariate analysis are established techniques for the identification and quantification of chemical properties of pharmaceutical tablets like the concentration of active pharmaceutical ingredients (API). However, these techniques suffer from a high sensitivity to particle size variations and are not ideal for the characterization of physical properties of tablets such as tablet density. In this work, we have explored the feasibility of terahertz frequency-domain spectroscopy, with the advantage of low scattering effects, combined with multivariate analysis to quantify API concentration and tablet density. We studied 33 tablets, consisting of Ibuprofen, Mannitol, and a lubricant with API concentration and filler particle size as the design factors. The terahertz signal was measured in transmission mode across the frequency range 750 GHz to 1.5 THz using a vector network analyzer, frequency extenders, horn antennas, and four off-axis parabolic mirrors. The attenuation spectral data were pre-processed and orthogonal partial least square (OPLS) regression was applied to the spectral data to obtain quantitative prediction models for API concentration and tablet density. The performance of the models was assessed using test sets. While a fair model was obtained for API concentration, a high-quality model was demonstrated for tablet density. The coefficient of determination (𝑅2) for the calibration set was 0.97 for tablet density and 0.98 for API concentration, while the relative prediction errors for the test set were 0.7% and 6% for tablet density and API concentration models, respectively. In conclusion, terahertz spectroscopy demonstrated to be a complementary technique to Raman and NIR spectroscopy, which enables the characterization of physical properties of tablets like tablet density, and the characterization of API concentration with the advantage of low scattering effects.

Multivariate analysis

Frequency domain

Pharmaceutical tablets

Tablet density

Terahertz spectroscopy

API concentration

Non-destructive

Författare

Anis Moradikouchi

Chalmers, Mikroteknologi och nanovetenskap, Terahertz- och millimetervågsteknik

Anders Sparén

AstraZeneca R&D

Olof Svensson

AstraZeneca R&D

Staffan Folestad

AstraZeneca AB

Jan Stake

Chalmers, Mikroteknologi och nanovetenskap, Terahertz- och millimetervågsteknik

Helena Rodilla

Chalmers, Mikroteknologi och nanovetenskap, Terahertz- och millimetervågsteknik

International Journal of Pharmaceutics

0378-5173 (ISSN) 1873-3476 (eISSN)

Vol. 632 122545

Terahertsteknik för tillverkning av moderna läkemedel

Stiftelsen för Strategisk forskning (SSF) (ID17-0011), 2017-12-01 -- 2023-12-31.

Styrkeområden

Informations- och kommunikationsteknik

Hälsa och teknik

Materialvetenskap

Infrastruktur

Kollberglaboratoriet

Ämneskategorier

Elektroteknik och elektronik

Sannolikhetsteori och statistik

DOI

10.1016/j.ijpharm.2022.122545

PubMed

36581106

Mer information

Senast uppdaterat

2024-01-11