FORMULATION AND EVALUATION OF METRONIDAZOLE TABLETED MICROSPHERES FOR COLON DRUG DELIVERY

Authors

  • Shivangi Singh School of pharmaceutucal Sciences, IFTM University Moradabad
  • Nithya Shanthi C
  • Arun K Mahato

Abstract

Objective: The need of this study was to develop tableted microspheres that can be targeted to colon because metronidazole (MNZ) has good solubility
at pH 1.2; hence, coating of the drug with the suitable pH dependent is done to prevent its release in the gastric region.
Methods: Colon targeted tablets of MNZ were prepared with enteric coated microspheres using pH dependent polymers such as cellulose acetate
phthalate, hydroxypropyl methylcellulose phthalate, and Eudragit S 100 by solvent evaporation method. All the formulations were prepared by
changing drug-polymer ratio from 1:1 to 1:5 and the interactions of the drug with polymers were studied by Fourier transform infrared and thermal
analysis.
Results: Formulations F
5
, F
8
, and F
were found to best optimized in percentage yield, drug entrapment efficiency, mean particle size and in vitro
drug release. The result obtained were found in the desired ranges where % yield ranging from 52.56% to 98.253%, drug entrapment efficiency from
42.17% to 99.017%, and mean particle size from 36.774 to 229.961 µm. Then, tablet of optimized formulations was prepared by direct compression
method and in vitro drug release was performed. All the parameters of tablets were found acceptable as per IP guideline. Around 4-10% drug release
was in 0.1 N HCl after 2 hrs, 50% release at pH 7.4 phosphate buffer within 5 hrs, maximum retardation was found in the formulation of Eudragit S
100. Scanning electron microscopy permitted a surface topographical analysis.
14
Conclusion: The MNZ tableted microspheres showed their release at pH 7.4 thus this experimental work can be used to improve absorption of drug
in colon for successful treatment of the disease.
Keywords: Metronidazole, Tableted microspheres, Solvent evaporation method, Direct compression method.

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Author Biography

Shivangi Singh, School of pharmaceutucal Sciences, IFTM University Moradabad

Assistant Professor

School of Pharmaceurical Sciences

References

Tripathi KD. Essential of Medical Pharmacology. New Delhi: Jaypee

Brothers Medical Publishers; 2007. p. 566-7.

Agnihotri N, Misha R, Goda C, Arora M. Microencapsulation: A novel

approach in drug delivery. Indo Glob J Pharm Sci 2012;1(2):1-20.

Tiwari S, Verma P. Microencapsulation technique by solvent

evaporation method (Study of effect of process variables). Int J Pharm

Life Sci 2008;8(2):998-1005.

Okonogi S, Chaisri W, Hennink WE. Preparation of cephalexin

microspheres by double emulsion technique. Int Conf Bioencap

;3(1):1-4.

Redasani V, Jaiswal SB, Chavan R. Tabletting and coating

multiparticulates. Int J Phar Res Dev 2012;3(11):153-9.

Alagusundaram M, Chetty C, Umashankari K, Badarinath AV,

Lavanya C, Ramkanth S. Microspheres as a novel drug delivery system.

Int J Chem Tech Res 2009;1(3):526-34.

Gürsoy A, Karakus D, Okar I. Polymers for sustained release

formulations of dipyridamole-alginate microspheres and tabletted

microspheres. J Microencapsul 1999;16(4):439-52.

Lamke T. Foye’s Principle of Medicinal Chemistry. Philadelphia, PA:

Wolters Kulwer Health; 2005. p. 345.

Bogataj M, Mrhar A, Kristl A, Kozjek F. Eudragit E microspheres

containing bacampicillin: Preparation by solvent removal methods.

J Microencapsul 1991;8(3):401-6.

Sunitha S, Amareshwar P, Kumar SM. A study on the effect of different

cellulose polymers on release rate from tramadol loaded microspheres

prepared by emulsion solvent evaporation method. Asian J Pharm Clin

Res 2010;5(2):1-5.

Patel HJ, Patel JS, Sony AK, Tiwari P. Formulation and evaluation

of enteric coated microspheres of proton pump inhibitor: In-vivo

characterization. Am J Pharm Tech Res 2011;3(1):1-14.

Gürsoy A, Cevik S. Sustained release properties of alginate microspheres

and tabletted microspheres of diclofenac sodium. J Microencapsul

;17(5):565-75.

Asian J Pharm Clin Res, Vol 9, Issue 3, 2016, 398-403

Singh et al.

Présumey J, Salzano G, Courties G, Shires M, Ponchel F, Jorgensen C,

et al. PLGA microspheres encapsulating siRNA anti-TNFalpha:

Efficient RNAi-mediated treatment of arthritic joints. Eur J Pharm

Biopharm 2012;82(3):457-64.

Giunchedi P, Gavini E, Bonacucina G, Palmieri GF. Tabletted

polylactide microspheres prepared by a w/o emulsion-spray drying

method. J Microencapsul 2000;17(6):711-20.

Wagner KG, Krumme M, Beckert TE, Schmidt PC. Development of

disintegrating multiple-unit tablets on a high-speed rotary tablet press.

Eur J Pharm Biopharm 2000;50(2):285-92.

Lamprecht A, Yamamoto H, Takeuchi H, Kawashima Y. Microsphere

design for the colonic delivery of 5-fluorouracil. J Control Release

;90(1):313-22.

Kim C, Kim M. Preparation and evaluation of sustained release

microspheres of terbutaline sulfate. Int J Pharm 1994;106(2):213-19.

Das MK, Senapati PC. Evaluation of furosimide loaded alginate

microspheres prepared by ionotropic externalgelation technique. Acta

Poloniae Pharm Drug Res 2007;64(3):253-62.

Miyazaki Y, Onuki Y, Yakou S, Takayama K. Effect of temperature

increase rate on drug release characteristics of dextran microspheres

prepared by emulsion solvent evaporation process. Int J Pharm

;324(2):144-51.

Tao Y, Lu Y, Sun Y, Gu B, Lu W, Pan J. Development of mucoadhesive

microspheres of acyclovir with enhanced bioavailability. Int J Pharm

;378(2):30-6.

Türkoglu M, Varol H, Celikok M. Tableting and stability evaluation

of enteric-coated omeprazole pellets. Eur J Pharm Biopharm

;57(2):279-86.

Published

01-05-2016

How to Cite

Singh, S., N. S. C, and A. K Mahato. “FORMULATION AND EVALUATION OF METRONIDAZOLE TABLETED MICROSPHERES FOR COLON DRUG DELIVERY”. Asian Journal of Pharmaceutical and Clinical Research, vol. 9, no. 3, May 2016, pp. 398-03, https://journals.innovareacademics.in/index.php/ajpcr/article/view/11653.

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