2016
DOI: 10.1177/0003702816671960
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Understanding the Impact of Chemical Variability and Calibration Algorithms on Prediction of Solid Fraction of Roller Compacted Ribbons Using Near-Infrared (NIR) Spectroscopy

Abstract: The study is aimed at developing a near-infrared (NIR) method for predicting solid fraction (SF) of dry granulated ribbons manufactured with formulation variability. The study investigated the impact of unmodeled chemical variability and regression approaches on method performance. The study utilized an excipient-only formulation system. Calibration compacts were created with chemical and processing variability; followed by collection of NIR spectra. Partial least squares (PLS) and spectral slope algorithms we… Show more

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Cited by 8 publications
(2 citation statements)
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References 33 publications
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“…Chemical changes can be detected during stability tests. Polymorph changes, hydration-dehydration exchange, and deformation are all common processes that contribute to the instability of physical complexes [37].…”
Section: Stability Studiesmentioning
confidence: 99%
“…Chemical changes can be detected during stability tests. Polymorph changes, hydration-dehydration exchange, and deformation are all common processes that contribute to the instability of physical complexes [37].…”
Section: Stability Studiesmentioning
confidence: 99%
“…Several publications in the past have demonstrated the capability of NIR spectroscopy to model the density of pharmaceutical compacts. [20][21][22][23] Local fracture hardness (local Young's modulus) quantifies the resistance of material towards plastic deformation and measurement of its bulk deformation behavior, which is tested using micro-indentation. 24 A robust understanding of material plasticity is critical to achieve successful design of pharmaceutical formulations, as it impacts manufacturability and common tableting issues.…”
Section: Solid Fraction ¼ Sample Bulk Density Materials True Density ð1þmentioning
confidence: 99%