Development of robust quantitative methods by near-infrared spectroscopy for rapid pharmaceutical determination of content uniformity in complex tablet matrix
Literature Information
Dong Xiang, Michele Konigsberger, Busolo Wabuyele, Karl Hornung, James Cheney
Robust NIR transmission spectroscopic methods have been developed for determination of content uniformity (CU) of pharmaceutical products with a complex tablet matrix. The tablets of interest, formulated with eight components with active drug load of approximately 30% (w/w), are non-film coated, embossed, and round with thickness values of 3.6 and 5.6 mm, for the 125 and 500 mg dosage strength, respectively. The calibration data set contained seven laboratory scale batches of tablets with concentration range of active pharmaceutical ingredients (API) varying from 85 to 115% relative to label claim (LC) as well as four full scale production batches of tablets that included the natural physical variability of tablets. The reference concentration values were established by a high performance liquid chromatographic method. Partial least-squares (PLS) regression method was used to generate the calibration models. The root mean squared error of calibration for 125 and 500 mg was 1.6 and 1.5% in LC, respectively. The calibration models were validated in terms of measurement accuracy, repeatability, precision, robustness and transferability. Robustness assessment involved challenging the model with tablets incorporating variations in hardness, excipient vendors, excipient content and excipient particle size. The methods exhibited excellent measurement accuracy based on 87 batches (ten tablets for each batch) evaluated. The transferability of the developed NIR methods was demonstrated by comparing the NIR CU results associated with the same set of tablets scanned at the development site with those scanned at the production site. The result indicates that the NIR method can be used as a suitable alternative to the HPLC method for rapid tablet CU release test in pharmaceuticals.
Related Literature
Excited state quenching kinetics of zinc meso-tetrakis (N-methylpyridinium-4-yl) porphyrin by methyl viologen in AOT reverse micelles
Denisio M. Togashi, Sílvia M. B. Costa
DOI: 10.1039/B109960B
Surface freezing in liquid Ga–Bi alloys: optical second harmonic and plasma generation study
DOI: 10.1039/B107478B
Electrodeposition at polarisable liquid|liquid interfaces: The role of interfacial tension on nucleation kinetics
Christoffer Johans, Peter Liljeroth, Kyösti Kontturi
DOI: 10.1039/B110182J
Near-diffusion-controlled reactions of muonium in sub- and supercritical water
Khashayar Ghandi, Brenda Addison-Jones, Jean-Claude Brodovitch, Iain McKenzie, Paul W. Percival, Joachim Schüth
DOI: 10.1039/B108656A
Synchrotron radiation studies of the kinetics of cBN crystallization in the NH4F–BN system
DOI: 10.1039/B107483K
Temperature, pressure and density dependencies of the solubilities of low-volatility organic compounds in compressed gases Part 1. Solution energies from solubility data for disperse dyestuffs up to 20 MPa
Dirk Tuma, Björn Wagner, Gerhard M. Schneider
DOI: 10.1039/B109521H
Thermodynamics of thermal methods for rapid screening of combinatorial libraries
Michael J. Blandamer, Paul M. Cullis, Peter T. Gleeson
DOI: 10.1039/B107646A
Analysis of the effect of changing the a0 parameter of the Becke3-LYP hybrid functional on the transition state geometries and energy barriers in a series of prototypical reactions
Jordi Poater, Miquel Solà, Miquel Duran, Juvencio Robles
DOI: 10.1039/B108910M
Closed loops of liquid–liquid immiscibility predicted by semi-empirical cubic equations of state and classical mixing rules
Ilya Polishuk, Jaime Wisniak, Hugo Segura
DOI: 10.1039/B108834N
You might also like
What regulatory guidelines apply to 6-Bromo-2-methylimidazo[1,2-a]pyrimidine (CAS: 1111638-05-1)?
6-Bromo-2-methylimidazo[1,2-a]pyrimidine (CAS: 1111638-05-1) falls under various...
Are there alternatives to 1-Pyrrolidineethanol, β-methyl-α-phenyl-, (αS,βR) (CAS: 123620-80-4) in synthesis?
While there are no direct alternatives, similar compounds like 1-Pyrrolidineetha...
Is 4-Methyl-2,6-bis(2-methyl-2-propanyl)phenyl methylcarbamate (CAS: 1918-11-2) safe?
4-Methyl-2,6-bis(2-methyl-2-propanyl)phenyl methylcarbamate (CAS: 1918-11-2) is ...
How should 2-(3-Bromo-4-fluorophenyl)-1,3-dioxolane (CAS: 77771-04-1) be stored?
2-(3-Bromo-4-fluorophenyl)-1,3-dioxolane (CAS: 77771-04-1) should be stored in a...
What are the physical and chemical properties of 4,5,6,7-Tetrahydro-1H-indazole hydrochloride (CAS: 18161-11-0)?
4,5,6,7-Tetrahydro-1H-indazole hydrochloride is a white crystalline solid with a...
What is (2R)-1-Methoxy-3-phenyl-2-propanamine (CAS: 59919-07-2)?
(2R)-1-Methoxy-3-phenyl-2-propanamine is a chiral organic compound with the CAS ...
What industries use Ethyl 1-(1-phenylethyl)-1H-imidazole-5-carboxylate (CAS: 56649-47-9)?
Ethyl 1-(1-phenylethyl)-1H-imidazole-5-carboxylate is used in various industries...
What regulatory guidelines apply to 4-[(1E,3S)-1-(4-Hydroxyphenyl)-1,4-pentadien-3-yl]phenol (CAS: 17676-24-3)?
4-[(1E,3S)-1-(4-Hydroxyphenyl)-1,4-pentadien-3-yl]phenol (CAS: 17676-24-3) falls...
What industries use (S)-3-Amino-5-phenylpentanoic acid hydrochloride (CAS: 331846-97-0)?
(S)-3-Amino-5-phenylpentanoic acid hydrochloride is primarily used in the pharma...
How is 7-methoxy-1-benzothiophene-2-carboxylic acid (CAS: 88791-07-5) typically synthesized?
7-Methoxy-1-benzothiophene-2-carboxylic acid is typically synthesized by reactin...
Source Journal
Analyst

Analyst publishes analytical and bioanalytical research that reports premier fundamental discoveries and inventions, and the applications of those discoveries, unconfined by traditional discipline barriers.












![2-Methyl-2-propanyl 4-{2-fluoro-5-[(4-oxo-3,4-dihydro-1-phthalazinyl)methyl]benzoyl}-1-piperazinecarboxylate structure 2-Methyl-2-propanyl 4-{2-fluoro-5-[(4-oxo-3,4-dihydro-1-phthalazinyl)methyl]benzoyl}-1-piperazinecarboxylate structure](https://static.chemtradehub.com/structs/763/763114-04-1-65a9.webp)
![4-Penten-1-yl 2-[(2-furylmethyl)(1H-imidazol-1-ylcarbonyl)amino]butanoate structure 4-Penten-1-yl 2-[(2-furylmethyl)(1H-imidazol-1-ylcarbonyl)amino]butanoate structure](https://static.chemtradehub.com/structs/101/101903-30-4-ac34.webp)
