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Original Research Article | OPEN ACCESS

Optimization of process parameters by response surface methodology to develop a more bioefficacious nanosuspension of Silybum marianum seed extract

Fareeha Kousar1 , Nazish Jahan1, Bushra Sultana1, Khalil-Ur-Rahman 2

1Department of Chemistry, University of Agriculture, Faisalabad, Pakistan; 2Department of Biochemistry, University of Agriculture, Faisalabad, Pakistan.

For correspondence:-  Fareeha Kousar   Email: fareehakousar87@gmail.com   Tel:+92419200161

Accepted: 24 June 2022        Published: 31 July 2022

Citation: Kousar F, Jahan N, Sultana B, K. Optimization of process parameters by response surface methodology to develop a more bioefficacious nanosuspension of Silybum marianum seed extract. Trop J Pharm Res 2022; 21(7):1365-1375 doi: 10.4314/tjpr.v21i7.2

© 2022 The authors.
This is an Open Access article that uses a funding model which does not charge readers or their institutions for access and distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0) and the Budapest Open Access Initiative (http://www.budapestopenaccessinitiative.org/read), which permit unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited..

Abstract

Purpose: To develop a nanosuspension drug delivery system to enhance the dissolution rate of Silybum marianum seeds extract.
Methods: Central composite design was used to study the effect of the input variables (stabilizer to plant extract ratio, antisolvent to solvent ratio, stirring time) on the dependent variables (mean particle size, polydispersity index (PDI) and zeta potential). The optimized formulation was characterized by Scanning Electron Microscopy (SEM), Atomic Force Microscopy (AFM), Fourier Transformed Infrared Microscopy (FT-IR) and in vitro dissolution testing.
Results: The optimized nanosuspension with mean particle size of 137 nm, PDI of 0.327 and zeta potential of -37 mV was obtained. SEM studies revealed irregular shaped particles. AFM studies showed nanosized particles with good surface characteristics. The optimized formulation showed faster dissolution rate than coarse suspension.
Conclusion: Results suggested that nanosuspension has remarkable potential for enhancement of the dissolution properties of poorly soluble S. marianum seed extract.

Keywords: Silybum marianum, Nanosuspension, Optimization, Dissolution rate

Impact Factor
Thompson Reuters (ISI): 0.6 (2023)
H-5 index (Google Scholar): 49 (2023)

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