TY - JOUR
T1 - Effect of Shape on Physico-Chemical Properties of Metronidazole Tablet
AU - Nisar, Huma
AU - Khan, Sajjad Ali
AU - shah, Yasar
AU - Alossaimi, Manal A.
AU - Abbas, Muhammad
N1 - Publisher Copyright:
© 2022
PY - 2022
Y1 - 2022
N2 - This work was aimed to analyze metronidazole tablet for its properties by explaining the role of compaction and compression related to its process of manufacturing in round and oblong shape tablets. The desirable features of a tablet that includes a known value of hardness, friability, disintegration, weight variation and dissolution was carefully evaluated. The weight variation test performed on different days for round and oblong shape tablets. All tablets of round shape were within limits of +/- 5% (USP, BP) however some of oblong shape tablets deviating from +/-5% limit. The hardness and friability tests indicate that oblong shape tablets are more prone to breaking during handling and transportation while round shape tablets are well within limits of hardness and friability tests i.e. within 1% and 0.8% (USP, BP). The disintegration time of both round and oblong shape tablets are nearly same and within the limits. The dissolution profile of both round and oblong shape tablets were determined according to USP. The obtained dissolution profile of both shaped tablets were evaluated and compared using two different statistical methods, the fit factor (f1 and f2) and the dissolution efficiency (DE) model. The values obtained were 9 and 64 for f1 and f2 respectively. The DE was found to be 63 and 72 for round and oblong shape. The experimental findings showed that change in shape of tablet affect different physicochemical parameters. In addition, tablet shape enhances tablets mechanical properties, packaging, handling ease and the aesthetic appearance of the tablet.
AB - This work was aimed to analyze metronidazole tablet for its properties by explaining the role of compaction and compression related to its process of manufacturing in round and oblong shape tablets. The desirable features of a tablet that includes a known value of hardness, friability, disintegration, weight variation and dissolution was carefully evaluated. The weight variation test performed on different days for round and oblong shape tablets. All tablets of round shape were within limits of +/- 5% (USP, BP) however some of oblong shape tablets deviating from +/-5% limit. The hardness and friability tests indicate that oblong shape tablets are more prone to breaking during handling and transportation while round shape tablets are well within limits of hardness and friability tests i.e. within 1% and 0.8% (USP, BP). The disintegration time of both round and oblong shape tablets are nearly same and within the limits. The dissolution profile of both round and oblong shape tablets were determined according to USP. The obtained dissolution profile of both shaped tablets were evaluated and compared using two different statistical methods, the fit factor (f1 and f2) and the dissolution efficiency (DE) model. The values obtained were 9 and 64 for f1 and f2 respectively. The DE was found to be 63 and 72 for round and oblong shape. The experimental findings showed that change in shape of tablet affect different physicochemical parameters. In addition, tablet shape enhances tablets mechanical properties, packaging, handling ease and the aesthetic appearance of the tablet.
KW - Geometric Shape
KW - metronidazole tablets
KW - physico-chemical characteristics
UR - http://www.scopus.com/inward/record.url?scp=85134476936&partnerID=8YFLogxK
U2 - 10.1590/1678-4324-2022210611
DO - 10.1590/1678-4324-2022210611
M3 - Article
AN - SCOPUS:85134476936
SN - 1516-8913
VL - 65
JO - Brazilian Archives of Biology and Technology
JF - Brazilian Archives of Biology and Technology
M1 - e22210611
ER -