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Preparation, Characterization and Pharmacodynamic Evaluation of Fused Dispersions of Simvastatin using PEO-PPO Block Copolymer

The solubility enhancement of poorly soluble compounds is an important task in pharmaceutical technology as it leads to better bioavailability and a more efficient application. Fused dispersions (FDs) of simvastatin (SIM) using PEO-PPO block copolymer were prepared which paved the way for the format...

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Autores principales: Singh, Harjeet, Philip, Betty, Pathak, Kamla
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Shaheed Beheshti University of Medical Sciences 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3832149/
https://www.ncbi.nlm.nih.gov/pubmed/24250467
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author Singh, Harjeet
Philip, Betty
Pathak, Kamla
author_facet Singh, Harjeet
Philip, Betty
Pathak, Kamla
author_sort Singh, Harjeet
collection PubMed
description The solubility enhancement of poorly soluble compounds is an important task in pharmaceutical technology as it leads to better bioavailability and a more efficient application. Fused dispersions (FDs) of simvastatin (SIM) using PEO-PPO block copolymer were prepared which paved the way for the formation of an amorphous product with enhanced dissolution and bioavailability. The accumulative solubility of simvastatin (SIM) from PEO-PPO block copolymer (Lutrol NF 127 prill surfactant) was found to be superior to the drug alone which may be due to the increased oxyethylene content that played the major role in solubility enhancement. A 3(2) full factorial approach was used for optimization wherein the temperature to which the melt-drug mixture cooled (X(1)) and the drug-to-polymer ratio (X(2)) were selected as the independent variables and the time required for 90% drug dissolution (t(90%)) was selected as the dependent variable. A low level of X(1) and a high level of X(2) were suitable for obtaining higher dissolution of SIM from SIM FDs. On increasing melt to cool drug temperature, t(90%) increased thus improving dissolution rate of FD(2) batch with the maximum drug release (99.63%) in 120 min. The optimized FDs were characterized by saturation solubility study, drug content, in-vitro dissolution, fourier transform infrared spectroscopy, scanning electron microscopy, differential scanning calorimetry, x-ray diffraction, (1)HNMR spectroscopy and pharmacodynamic evaluation. Capsules containing optimized FDs were prepared and compared with marketed brand (SIMVOTIN®). Finally, it can be concluded that the optimized FDs of SIM ameliorate the solubility and dissolution of drug with improved pharmacodynamic activity.
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spelling pubmed-38321492013-11-18 Preparation, Characterization and Pharmacodynamic Evaluation of Fused Dispersions of Simvastatin using PEO-PPO Block Copolymer Singh, Harjeet Philip, Betty Pathak, Kamla Iran J Pharm Res Original Article The solubility enhancement of poorly soluble compounds is an important task in pharmaceutical technology as it leads to better bioavailability and a more efficient application. Fused dispersions (FDs) of simvastatin (SIM) using PEO-PPO block copolymer were prepared which paved the way for the formation of an amorphous product with enhanced dissolution and bioavailability. The accumulative solubility of simvastatin (SIM) from PEO-PPO block copolymer (Lutrol NF 127 prill surfactant) was found to be superior to the drug alone which may be due to the increased oxyethylene content that played the major role in solubility enhancement. A 3(2) full factorial approach was used for optimization wherein the temperature to which the melt-drug mixture cooled (X(1)) and the drug-to-polymer ratio (X(2)) were selected as the independent variables and the time required for 90% drug dissolution (t(90%)) was selected as the dependent variable. A low level of X(1) and a high level of X(2) were suitable for obtaining higher dissolution of SIM from SIM FDs. On increasing melt to cool drug temperature, t(90%) increased thus improving dissolution rate of FD(2) batch with the maximum drug release (99.63%) in 120 min. The optimized FDs were characterized by saturation solubility study, drug content, in-vitro dissolution, fourier transform infrared spectroscopy, scanning electron microscopy, differential scanning calorimetry, x-ray diffraction, (1)HNMR spectroscopy and pharmacodynamic evaluation. Capsules containing optimized FDs were prepared and compared with marketed brand (SIMVOTIN®). Finally, it can be concluded that the optimized FDs of SIM ameliorate the solubility and dissolution of drug with improved pharmacodynamic activity. Shaheed Beheshti University of Medical Sciences 2012 /pmc/articles/PMC3832149/ /pubmed/24250467 Text en © 2012 by School of Pharmacy, Shaheed Beheshti University of Medical Sciences and Health Services This is an Open Access article distributed under the terms of the Creative Commons Attribution License, (http://creativecommons.org/licenses/by/3.0/) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Singh, Harjeet
Philip, Betty
Pathak, Kamla
Preparation, Characterization and Pharmacodynamic Evaluation of Fused Dispersions of Simvastatin using PEO-PPO Block Copolymer
title Preparation, Characterization and Pharmacodynamic Evaluation of Fused Dispersions of Simvastatin using PEO-PPO Block Copolymer
title_full Preparation, Characterization and Pharmacodynamic Evaluation of Fused Dispersions of Simvastatin using PEO-PPO Block Copolymer
title_fullStr Preparation, Characterization and Pharmacodynamic Evaluation of Fused Dispersions of Simvastatin using PEO-PPO Block Copolymer
title_full_unstemmed Preparation, Characterization and Pharmacodynamic Evaluation of Fused Dispersions of Simvastatin using PEO-PPO Block Copolymer
title_short Preparation, Characterization and Pharmacodynamic Evaluation of Fused Dispersions of Simvastatin using PEO-PPO Block Copolymer
title_sort preparation, characterization and pharmacodynamic evaluation of fused dispersions of simvastatin using peo-ppo block copolymer
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3832149/
https://www.ncbi.nlm.nih.gov/pubmed/24250467
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