Enhancing tablet disintegration characteristics of a highly water-soluble high-drug-loading formulation by granulation process

The objective of this study was to improve the disintegration and dissolution characteristics of a highly water-soluble tablet matrix by altering the manufacturing process. A high disintegration time along with high dependence of the disintegration time on tablet hardness was observed for a high dru...

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Veröffentlicht in:Pharmaceutical development and technology 2018-07, Vol.23 (6), p.587-595
Hauptverfasser: Pandey, Preetanshu, Levins, Christopher, Pafiakis, Steve, Zacour, Brian, Bindra, Dilbir S, Trinh, Jade, Buckley, David, Gour, Shruti, Sharif, Shasad, Stamato, Howard
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Sprache:eng
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Zusammenfassung:The objective of this study was to improve the disintegration and dissolution characteristics of a highly water-soluble tablet matrix by altering the manufacturing process. A high disintegration time along with high dependence of the disintegration time on tablet hardness was observed for a high drug loading (70% w/w) API when formulated using a high-shear wet granulation (HSWG) process. Keeping the formulation composition mostly constant, a fluid-bed granulation (FBG) process was explored as an alternate granulation method using a 2 fractional factorial design with two center points. FBG batches (10 batches) were manufactured using varying disingtegrant amount, spray rate, inlet temperature (T) and atomization air pressure. The resultant final blend particle size was affected significantly by spray rate (p = .0009), inlet T (p = .0062), atomization air pressure (p = .0134) and the interaction effect between inlet T*spray rate (p = .0241). The compactibility of the final blend was affected significantly by disintegrant amount (p 
ISSN:1083-7450
1097-9867
DOI:10.1080/10837450.2016.1264416