Formulation and Evaluation of Cephalexin Extended Release Matrix Tablets Using 32 Factorial Design

Formulation and Evaluation of Cephalexin Extended Release Matrix Tablets Using 32 Factorial Design

Pharmaceutics Formulation and Evaluation of Cephalexin Extended Release Matrix Tablets Using 32 Factorial Design Jishnu V, Prabhakaran R1, Gilhotra R...

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Pharmaceutics

Formulation and Evaluation of Cephalexin Extended Release Matrix Tablets Using 32 Factorial Design Jishnu V, Prabhakaran R1, Gilhotra RM Department of Pharmaceutics, School of Pharmacy, Suresh Gyan Vihar University, Jaipur, 1 Sance Laboratories Pvt. Ltd., Kottayam, Kerala, India Address for correspondence: Dr. Ritu M Gilhotra; E-mail: [email protected]

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INTRODUCTION

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Journal of Young Pharmacists Vol 3 / No 4

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Jishnu, et al.: Formulation and evaluation of cephalexin extended release tablet

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7DEOH3UHFRPSUHVVLRQSDUDPHWHUVRI¿QDOEDWFKHV F1–F9 Code

F1 F2 F3 F F F F F F9

Angle of repose (T)* ƒ1ƍ “  ƒ1ƍ “ 2 33ƒ3ƍ “  3ƒƍ “  32ƒ31ƍ “  3ƒ3ƍ “ 1 3ƒ1ƍ “ 3 3ƒ2ƍ “ 2 3ƒ3ƍ “ 

Bulk density (g/cm3)  “ 1  “   “ 2  “ 3  “ 1  “ 32  “   “ 22  “ 12

Tapped density (g/cm3)  “ 1  “ 2  “   “ 2 2 “ 31  “   “   “ 1  “ 

Carr’s index (%)

Hausner’s ratio

1 “ 1 122 “  11 “ 1 1 “ 2 1 “  1 “ 2 11 “ 1 1 “ 23 119 “ 9

1 “  11 “  11 “  121 “  12 “ 33 12 “ 1 122 “ 2 12 “  119 “ 9

*7KH YDOXHV DUH H[SUHVVHG DV 0HDQ “ 6' n=3

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MATERIALS AND METHODS

Materials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ethods Preparation and evaluation of cephalexin monohydrate granules[7] $FFXUDWHO\ ZHLJKHG TXDQWLWLHV RI GUXJ DQG H[FLSLHQWV ZHUH SDVVHG WKURXJK VLHYH QR  DQG  UHVSHFWLYHO\ 'UXJ DQG H[FLSLHQWV H[FOXGLQJ OXEULFDQW ZHUH DGGHG LQ JHRPHWULF SURSRUWLRQV DQG PL[HG WKRURXJKO\ IRU  PLQ 7KH EOHQG ZDV PL[HG ÀQDOO\ ZLWK OXEULFDQW WR JHW WKH JUDQXOHV RI FHSKDOH[LQ PRQRK\GUDWH 7KH ÁRZ SURSHUWLHV RI JUDQXOHV ZHUH FKDUDFWHUL]HG LQ WHUPV RI DQJOH RI UHSRVH &DUU·V LQGH[ DQG +DXVQHU·V UDWLR 7KH EXON GHQVLW\ DQG WDSSHG GHQVLW\ ZHUH GHWHUPLQHG XVLQJ 863 EXON GHQVLW\ DSSDUDWXV 9HHJR ,QGXVWULHV 0XPEDL ,QGLD  7KH GDWD VXPPDUL]HG LQ 7DEOH  Formulation of cephalexin matrix tablets using direct compression method[8] 7KH SUHSDUHG JUDQXOHV RI FHSKDOH[LQ PRQRK\GUDWH ZHUH FRPSUHVVHG LQ  ï  PP SXQFKHV RI  VWDWLRQ URWDU\ WDEOHW FRPSUHVVLRQ PDFKLQH &0%' &DGPDFK $KPDGDEDG ,QGLD  7KH IRUPXODH IRU EDWFKHV )²) DUH VKRZQ LQ 7DEOHV  DQG  260

Ingredients Cephalexin monohydrate Microcrystalline cellulose +3MC .1M +3MC .1cps Colloidal silicon dioxide Magnesium stearate Average tablet weight

F1 12 221     

Quantity used (mg/tab) F2 F3 F4 12 12 12 3  33    2 11          

F5 12 2  2   

7DEOH&RPSRVLWLRQRIRSWLPL]DWLRQEDWFKHVF–F9 Ingredients Cephalexin monohydrate Microcrystalline cellulose +3MC .1M +3MC .1cps Colloidal silicon dioxide Magnesium stearate Average tablet weight

F6 12 192  11   

Quantity used (mg/tab) F7 F8 12 12 3 9 3 3  2      

F9 12 3 3 11   

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Jishnu, et al.: Formulation and evaluation of cephalexin extended release tablet

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F1 F2 F3 F F F F F F9

Weight variation (%)* 132 “ 13 23 “ 21 213 “ 1 2 “ 29 1 “ 313 231 “ 22 112 “ 319 2 “ 3 22 “ 23

Thickness (mm)*

Hardness (kg/cm2)*

 “   “  2 “  3 “   “  3 “   “   “   “ 2

12 “ 111 129 “ 22 1123 “ 12 11 “ 1 12 “ 22 1222 “ 23 11 “ 1 11 “ 222 1 “ 23

Drug content (%) 919 9 912 9 923 91 99 9 93

Friability (%)** 3 “ 3  “ 1 3 “ 2  “ 3 2 “   “ 1 3 “ 2  “  2 “ 

9alues are expressed as mean “ 6' n=2

9alues are expressed as mean “ 6' n=3

Figure 1: Cumulative percentage drug release of F1–F5 Journal of Young Pharmacists Vol 3 / No 4

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Cumulative percentage drug release (%)* 1st h 2nd h 4th h 6th h 3931 “ 3  “ 99 1 “ 99 93 “ 11 9 “ 2 999 “ 12 2 “ 99 9 “ 129 31 “ 112 9 “ 1 2 “ 1 93 “  21 “ 3 1 “ 13 33 “ 3 9 “ 12  “ 2 3 “ 9 9 “  9 “ 1 33 “ 9 22 “  321 “ 9 93 “  39 “ 12 3 “ 19 21 “ 11 912 “ 92  “  9 “  39 “ 11 9 “ 9 313 “ 13  “ 1 1 “ 93 93 “ 9

9alues are expressed as mean “ 6' n=

Table : Factors anG responses eYalXateG in 2 factorial GesiJn Formulation code

F1 F2 F3 F F F F F F9

Factors in coded form HPMC HPMC K15M 15cps (X1) (X2)    1 1 1 1  í1 1 1 í1 í1   í1 í1 í1

Responses (%) Drug release at 1st h (Y1) 21 33 31 3931 313 9 39  

Drug release at 2nd h (Y2) 1 22 9   999 3 3 9

Drug release at 4th h (Y3) 33 321 2 1 1 2 21 9 39

Table : &orrelation of actXal anG coGeG factors Factor level

Low Medium High

Coded form í1  +1

Actual value (mg) HPMC HPMC K15M K15M 3 2    11

Actual value (%) HPMC HPMC K15M 15cps  12  1 1 1

Figure 2: Cumulative percentage drug release of F6–F9 261

Jishnu, et al.: Formulation and evaluation of cephalexin extended release tablet

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Jishnu, et al.: Formulation and evaluation of cephalexin extended release tablet

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Sum of squares 2291 293 3922 12323 1311 139 33399

DF 1 1 1 1 1 3 

Mean square 2291 293 3922 12323 1311 912

F ratio 9   21 13

P value 1 1 19 19 291

F ratio 2 293 12 1 119

P value   339 32 23

6igni¿cant values ³'F´ stands Ior degree oI Ireedom

Table 9: $nal\sis of Yariance for 2nG K Source A .1M B 1C36 AA AB BB Total error Total corr

Sum of squares 991 11329    12 2

DF 1 1 1 1 1 3 

Mean square 991 11329    122

6igni¿cant values ³'F´ stands Ior degree oI Ireedom

263

Jishnu, et al.: Formulation and evaluation of cephalexin extended release tablet

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DF 1 1 1 1 1 3 

Mean square 29121  223 9 3 23

F ratio 122 29 119  21

P value 1 1 3 1 2

6igni¿cant values ³'F´ stands Ior degree oI Ireedom

Table 11: .inetics moGelinJ sXmmar\ Code Zero order R2 K0 F1 F2 F3 F F F F F F9

9 9 99 9 99 99 99 993 993

99 11 2131 1 92 29 1 12 212

Kinetic model First order Korsemeyer R2 K1 R2 n   92  9 9 9 92 99

9 39 3 3 13 12 3  9

9 93 99 9 99 9 99 9 9

 3 2  3  3 3 

Higuchi R2 KH 9 9 993 9 9 9 99 9 99

3 31 3 3 323 29 3 332 29

R2 = regression coeI¿cient . = ]eroorder release rate constant .1 = ¿rstorder release rate constant n=diIIusional exponent .H = Higuchi rate constant

Figure 3: 3D plot for percentage drug release at the 1st h 264

Figure 4: 3D plot for percentage drug release at the 2nd h Journal of Young Pharmacists Vol 3 / No 4

Jishnu, et al.: Formulation and evaluation of cephalexin extended release tablet

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Figure 5: 3D plot for percentage drug release at 4th h

Future prospects of the study Table 12: 6imilarit\ factor of formXlations F1–F9 Code

Similarity factor (f2)

F1 F2 F3 F F F F F F9

113 22   9 3  29 919

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Table 1: $ccelerateG stabilit\ stXGies report of cepKale[in (5  Period Intial Final

Dissolution (%) 1st h 2nd h 4th h 6th h 31 9 2 93 32 3 19 91

Assay (%)

Appearance

912 9

2II white color 2II white color



CONCLUSIONS

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