Enhancing the Solubility, Dissolution Rate and Oral Bioavailability of Poorly Water-soluble Drug, Satranidazole by Solid Dispersion prepared by using β-Cyclodextrin as a Carrier

Authors

  • PRAVIN AWATE Department of Pharmaceutics, Rajgad Dnyanpeeth’s College of Pharmacy, Pune, Maharashtra, India
  • Vaibhavi V. Kunjir Department of Pharmaceutics, Rajgad Dnyanpeeth’s College of Pharmacy, Pune, Maharashtra, India
  • Dipak P. Kardile Department of Pharmaceutics, Rajgad Dnyanpeeth’s College of Pharmacy, Pune, Maharashtra, India
  • Vishwas C. Bhagat Department of Pharmaceutics, Rajgad Dnyanpeeth’s College of Pharmacy, Pune, Maharashtra, India
  • Rajkumar V. Shete Department of Pharmaceutics, Rajgad Dnyanpeeth’s College of Pharmacy, Pune, Maharashtra, India
  • Tushar B. Shinde Department of Pharmaceutics, Rajgad Dnyanpeeth’s College of Pharmacy, Pune, Maharashtra, India

Abstract

The present work aims to prepare and characterize solid dispersions of Santranidazole using β-Cyclodextrin to improve its aqueous solubility and dissolution with the aid of solvent evaporation technique. Solid dispersions showed marked improvement in the solubility behavior and stepped forward for drug launch. From all the formulations, F2 becomes an optimized method based on the characterization, solubility and dissolution studies. The enhancement of dissolution depends upon the nature and quantity of the carrier. The rise in the dissolution rate may be attributed to; the reduced particle size of drug deposited at the carrier’s floor and the enhanced wet capacity of the drug debris by the carrier. The optimized formulations have been evaluated through Differential Scanning Calorimetry (DSC), Fourier remodel infrared spectroscopy (FTIR) and Scanning electron microscopy (SEM).

Keywords:

β-cyclodextrin, Bioavailability, Dissolution studies, Santranidazole, Solid dispersions, Solubility

DOI

https://doi.org/10.25004/IJPSDR.2022.140516

References

Lipinski CA. Experimental and computational approaches to estimate solubility and permeability in drug discovery and development settings. Adv Drug Deliv Rev. 2001; 46(1-3):3–26.

Wadke DA, Serajuddin ATM, Jacobson H. Preformulation testing. In: Lieberman WA, Lachman L, Schwartz JB, editors. Pharmaceutical Dosage Forms: Tablets. New York: Marcel Dekker; 1989. p. 1–73.

Serajuddin ATM. Solid dispersion of poorly water soluble drugs: early promises, Subsequent problems and recent breakthroughs. J Pharm Sci. 1999; 88(10):1058–1066.

Leuner C, Dressman J. Improving drug solubility for oral delivery using solid dispersions. Eur J Pharm Biopharm. 2000; 50(1):47–60.

Temeljotov DF, Mohar M, Kof ler B, et al. Solubilization and dissolution enhancement for sparingly soluble fenofibrate. Acta Pharm. 1996; 46(2):131–136.

Sjokvist E, Nystrom C, Alden M. Physicochemical aspects of drug release. IX. Investigation of some factors that impair dissolution of drugs from solid particulate dispersion systems. Int J Pharm. 1989; 54(2):161– 170.

Murali Mohan Babu GV, Prasad Ch DS, Raman Murthy KV. Evaluation of modified gum karaya as carrier for the dissolution enhancement of poorly water soluble drug nimodipine. Int J Pharm. 2002; 234(1−2):1–17.

Patel DB. Natural Excipient in controlled Drug Delivery Systems. J Pharmacy Res. 2009; 2(5):900–907.

Sapkal S, Narkhede M, Babhulkar M, et al. Natural polymers: Best carriers for improving bioavailability of poorly water solubl3e drugs in solid dispersion. Marmara Pharm J. 2013;17:65–72.

Shirwaikar A, Prabhu SL, Kumar GA. Herbal Excipient in Novel Drug Delivery Systems. Indian J Pharm Sci. 2008; 70(4):415–422.

Monica R, Yogesh M, Kaushik T. Dissolution improvement of simvastatin by surface solid dispersion technology. Dissolution Technologies. 2010; 27–34.

Higuchi T, Connors KA. Phase solubility techniques. Adv. Anal Chem Instrum. 1965; 4:117–212.

Lakshmi K, Pranav kumar Reddy M, Rajesh kaza. Dissolution enhancement of telmisartan by surface solid dispersion technology. International Journal of Innovative Pharmaceutical Research. 2012; 3(4):247–251.

Prasanna SRV, Sunil Babu Koppula. International Journal of Biopharma Research, 2013; 2 (3): 104-110

Published

30-09-2022
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How to Cite

“Enhancing the Solubility, Dissolution Rate and Oral Bioavailability of Poorly Water-Soluble Drug, Satranidazole by Solid Dispersion Prepared by Using β-Cyclodextrin As a Carrier”. International Journal of Pharmaceutical Sciences and Drug Research, vol. 14, no. 5, Sept. 2022, pp. 616-22, https://doi.org/10.25004/IJPSDR.2022.140516.

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Section

Research Article

How to Cite

“Enhancing the Solubility, Dissolution Rate and Oral Bioavailability of Poorly Water-Soluble Drug, Satranidazole by Solid Dispersion Prepared by Using β-Cyclodextrin As a Carrier”. International Journal of Pharmaceutical Sciences and Drug Research, vol. 14, no. 5, Sept. 2022, pp. 616-22, https://doi.org/10.25004/IJPSDR.2022.140516.

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