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Vol. 1(7), August 2012
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Khemariya P
Rai P
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Global Advanced
Research Journal of Educational Research and Reviews (GARJERR)
ISSN: 2315-5132
August 2012 Vol. 1(7), pp. 129-136
Copyright © 2012 Global Advanced
Research Journals
Full Length
Research Paper
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A pioneering approach
to enhance Dissolution and Bioavailability of
multiple drugs in a single Dosage form “speedy
disintegrating tablet of Cefpodoxime Proxetil and
Potassium Clavulanate”
Khemariya P1*,
Rawal C2, Mavila A2, Rai P3
1Sr.
Research Scientist- Formulation
2Human
BioScience Limited.
3Aligharh
Collage of Pharmacy Allogharh UP
*Corresponding author
Email:
dr.p.khemariya@gmail.com
Accepted 31 July, 2012
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Abstract |
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The demand of fast dissolving tablets has been
growing during the last decade especially for
geriatric and pediatric patients because of
difficulties in administration. So this research was
to formulation and evaluation of fast dissolving
tablets with combination of two drugs namely
Cefpodoxime Proxetil and Potassium Clavulanate.
These tablets were prepared by using mannitol,
microcrystalline cellulose etc. as filler,
crospovidone, croscarmillose, SSG as super
disintegrants and also used sweetener like sucralose
, flavor as peppermint or orange or in combination
of both, one glidant i.e. aerosil and one or
combination of lubricants and antiadherents in
different concentration. Total ten formations and
one control batch were prepared and evaluated for
hardness, friability, weight variation, content
uniformity, wetting time, water absorption ratio,
disintegration time and invitro drug release (all
tests were performed as mentioned in The
Pharmacopoeia IP,BP or USP). Optimized formulation
that was DP-07 compared with control formulation for
disintegration time and % drug release. The
stability studies were performed as per ICH
guidelines. The Optimized formulation DP-07 shown no
significant variations for the tablets parameters
and it was stable for the specified time period. It
was concluded the FDT for Cefpodoxime Proxetil and
Potassium Clavulanate can be formulated for
emergency treatment of bacterial infection.
Keywords:
FDT, Super Disintegrants, Stability Study, ICH.
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