Nano-lipid Complex of Rutin: Development, Characterisation and In Vivo Investigation of Hepatoprotective, Antioxidant Activity and Bioavailability Study in Rats

被引:0
作者
G. S. Ravi
R. Narayana Charyulu
Akhilesh Dubey
Prabhakara Prabhu
Srinivas Hebbar
Avril Candida Mathias
机构
[1] Nitte (Deemed to be University),Department of Pharmaceutics, NGSM Institute of Pharmaceutical Sciences
[2] Shree Devi College of Pharmacy,Department of Pharmaceutics
来源
AAPS PharmSciTech | 2018年 / 19卷
关键词
antioxidant; bioavailability; hepatoprotective; lyophilisation; rutin;
D O I
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中图分类号
学科分类号
摘要
The current study was aimed to develop an amphiphilic drug-lipid nano-complex of rutin:egg phosphatidylcholine (EPC) to enhance its poor absorption and bioavailability, and investigated the impact of the complex on hepatoprotective and antioxidant activity. Rutin nano-complexes were prepared by solvent evaporation, salting out and lyophilisation methods and compared for the complex formation. For the selected lyophilisation method, principal solvent DMSO, co-solvent (t-butyl alcohol) and rutin:EPC ratios (1:1, 1:2 and 1:3) were selected after optimisation. The properties of the nano-complexes such as complexation, thermal behaviour, surface morphology, molecular crystallinity, particle size, zeta potential, drug content, solubility, in vitro stability study, in vitro drug release, in vitro and in vivo antioxidant study, in vivo hepatoprotective activity and oral bioavailability/pharmacokinetic studies were investigated. Rutin nano-complexes were developed successfully via the lyophilisation method and found to be in nanometric range. Rutin nano-complexes significantly improved the solubility and in vitro drug release, and kinetic studies confirmed the diffusion-controlled release of the drug from the formulation. The nano-complex showed better antioxidant activity in vitro and exhibited well in vitro stability in different pH media. The in vivo study showed better hepatoprotective activity of the formulation compared to pure rutin at the same dose levels with improved oral bioavailability. Carbon tetrachloride (CCl4)-treated animals (group II) failed to restore the normal levels of serum hepatic marker enzymes and liver antioxidant enzyme compared to the nano-complex-treated animals. The results obtained from solubility, hepatoprotective activity and oral bioavailability studies proved the better efficacy of the nano-complex compared to the pure drug.
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页码:3631 / 3649
页数:18
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共 213 条
[1]  
Kandaswami C(1994)Free radical scavenging and antioxidant activity of plant flavonoids Adv Exp Med Biol 366 351-376
[2]  
Middleton E(1994)Antiulcer effect of flavonoids. Role of endogenous PAF Phyther Res 8 179-181
[3]  
Izzo AA(2013)Systematic exploration of natural and synthetic flavonoids for the inhibition of Staphylococcus aureus biofilms Int J Mol Sci 14 19434-19451
[4]  
di Carlo G(2005)Antimicrobial activity of flavonoids Int J Antimicrob Agents 26 343-356
[5]  
Mascolo N(2007)Overview of antibacterial, antitoxin, antiviral, and antifungal activities of tea flavonoids and teas Mol Nutr Food Res 51 116-134
[6]  
Capasso F(2009)Formulation, characterization and evaluation of curcumin-loaded PLGA nanospheres for cancer therapy Anticancer Res 29 3867-3875
[7]  
Autore G(2006)Integrated approaches towards drug development from Ayurveda and other Indian system of medicines J Ethnopharmacol 103 25-35
[8]  
Manner S(2015)Phospholipid complex as an approach for bioavailability enhancement of echinacoside Drug Dev Ind Pharm 41 1777-1784
[9]  
Skogman M(2013)Oral lipid-based drug delivery systems—an overview Acta Pharm Sin B 3 361-372
[10]  
Goeres D(2013)Lipid absorption triggers drug supersaturation at the intestinal unstirred water layer and promotes drug absorption from mixed micelles Pharm Res 30 3045-3058