Silymarin-Loaded Eudragit Nanoparticles: Formulation, Characterization, and Hepatoprotective and Toxicity Evaluation

被引:0
作者
Amira E. El-Nahas
Ahmed N. Allam
Doaa A. Abdelmonsif
Amal H. El-Kamel
机构
[1] Damanhour University,Pharmaceutics Department, Faculty of Pharmacy
[2] Alexandria University,Pharmaceutics Department, Faculty of Pharmacy
[3] Alexandria University,Medical Biochemistry Department, Faculty of Medicine
来源
AAPS PharmSciTech | 2017年 / 18卷
关键词
polymeric nanoparticles; silymarin; eudragit; hepatoprotective; cytotoxicity;
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中图分类号
学科分类号
摘要
The objectives of this study were to formulate, characterize silymarin-loaded Eudragit nanoparticles (SNPs) and evaluate their hepatoprotective and cytotoxic effects after oral administration. SNPs were prepared by nanoprecipitation technique and were evaluated for particle size, entrapment efficiency, TEM, solid-state characterization, and in vitro drug release. The hepatoprotective activity was evaluated after oral administration of selected SNPs in carbon tetrachloride-intoxicated rats. Potential in vivo acute cytotoxicity study was also assessed. The selected SNPs contained 50 mg silymarin and 50 mg Eudragit polymers (1:1 w/w Eudragit RS 100 & Eudragit LS 100). Morphology of the selected SNPs (particle size of 84.70 nm and entrapment efficiency of 83.45% with 100% drug release after 12 h) revealed spherical and uniformly distributed nanoparticles. DSC and FT-IR studies suggested the presence of silymarin in an amorphous state and absence of chemical interaction. The hepatoprotective evaluation of the selected SNPs in CCl4-intoxicated rats revealed significant improvement in the activities of different biochemical parameters (P ≤ 0.01) compared to the marketed product. The histopathological studies suggested that the selected SNPs produced better hepatoprotective effect in CCl4-intoxicated rats compared with the commercially marketed product. Toxicity study revealed no evident toxic effect for blank or silymarin-loaded nanoparticles at the dose level of 50 mg/kg body weight. The obtained results suggested that the selected SNPs were safe and potentially offered enhancement in the pharmacological hepatoprotective properties of silymarin.
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页码:3076 / 3086
页数:10
相关论文
共 188 条
[1]  
Gupta S(2014)Targeting silymarin for improved hepatoprotective activity through chitosan nanoparticles Int J Pharm Investig 4 156-163
[2]  
Singh S(2007)Formulation design and in vitro evaluation of silymarin-loaded self-microemulsifying drug delivery systems Asian J Pharm Sci 2 150-160
[3]  
Girotra P(2006)Enhanced bioavailability of silymarin by self-microemulsifying drug delivery system Eur J Pharm Biopharm 63 288-294
[4]  
Liu L(2010)Enhancement of oral bioavailability of the poorly water-soluble drug silybin by sodium cholate/ phospholipid-mixed micelles Acta Pharmaco Sin 31 759-764
[5]  
Pang Z(2016)Silymarin-loaded nanoparticles based on stearic acid-modified Molecules 21 1-10
[6]  
Zhang W(2008) polysaccharide for hepatic targeting Med Res Rev 28 746-772
[7]  
Wang S(2011)Recent advances in plant hepatoprotectives: a chemical and biological profile of some important leads Carbohydr Polym 83 1345-1354
[8]  
Wu W(2011)Biodegradable pH-responsive alginate-poly (lactic-co-glycolic acid) nano/micro hydrogel matrices for oral delivery of silymarin Altern Med Rev 16 239-249
[9]  
Wang Y(2015)Reassessing bioavailability of silymarin Int J Nanomedicine 10 2403-2416
[10]  
Que L(2016)Self-nanoemulsifying drug delivery systems ameliorate the oral delivery of silymarin in rats with roux-en-Y gastric bypass surgery Pharm Dev Technol 21 672-679