Preparation and in vitro characterization of gallic acid-loaded human serum albumin nanoparticles

被引:0
作者
Hossein Mohammad-Beigi
Seyed Abbas Shojaosadati
Dina Morshedi
Ayyoob Arpanaei
Amir Tayaranian Marvian
机构
[1] Tarbiat Modares University,Biotechnology Group, Faculty of Chemical Engineering
[2] National Institute of Genetic Engineering and Biotechnology,Department of Industrial and Environmental Biotechnology
[3] Aarhus University,Department of Biomedicine
来源
Journal of Nanoparticle Research | 2015年 / 17卷
关键词
Antioxidant activity; Cationic human serum albumin; Gallic acid; Nanoparticles; PC-12 cells; Biomedicine;
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中图分类号
学科分类号
摘要
Gallic acid (GA), as an antioxidant and antiparkinson agent, was loaded onto cationic human serum albumin nanoparticles (HSA NPs). Polyethylenimine (PEI)-coated HSA (PEI-HSA) NPs were prepared using three different methods: (I) coating negatively charged HSA NPs with positively charged PEI through attractive electrostatic interactions, (II) coating HSA NPs with PEI via covalent amide bond formation using N-(3-dimethylaminopropyl)-N-ethylcarbodiimide hydrochloride, and (III) coating HSA NPs with PEI via covalent bonding using glutaraldehyde for linking amine groups of PEI and amine groups of albumin NPs. Method II was selected since it resulted in a higher shift in the zeta potential value (mV) and less zeta potential value deviation, and also less size polydispersity. GA was loaded by adsorption onto the surface of PEI-HSA NPs of two different sizes: 117 ± 2.9 nm (PEI-P1) and 180 ± 3.1 nm (PEI-P2) NPs. Both GA-entrapment and GA-loading efficiencies increased slightly with the increasing size of NPs, and were affected intensely by the mass ratio of GA to PEI-HSA NPs. Free radical scavenging of GA was quantified based on the 2,2-diphenyl-1-picrylhydrazyl method. The obtained results showed that GA remains active during the preparation of GA-loaded PEI-HSA NPs. The cytotoxicities of HSA, PEI-HSA, and GA-loaded PEI-HSA NPs on the PC-12 cells, as the neuroendocrine cell line, were measured. Our results indicate that positively charged PEI-HSA NPs are good candidates for efficient and safe delivery of GA to the brain.
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[1]  
Abbasi S(2012)Cationic albumin nanoparticles for enhanced drug delivery to treat breast cancer: preparation and in vitro assessment J Drug Deliv 27 954-963
[2]  
Paul A(2013)Dichloro-dihydro-fluorescein diacetate (DCFH-DA) assay: a quantitative method for oxidative stress assessment of nanoparticle-treated cells Toxicol In Vitro 113 859-871
[3]  
Shao W(2009)Chemical studies of anthocyanins: a review Food Chem 24 1292-1296
[4]  
Prakash S(2010)Anti-human rhinovirus activity of gallic acid possessing antioxidant capacity Phytotherapy Research 210 814-822
[5]  
Aranda A(2009)Gallic acid-loaded electrospun poly ( Macromol Chem Phys 899 112-120
[6]  
Sequedo L(2000)-lactic acid) fiber mats and their release characteristic Ann N Y Acad Sci 7 5745-214
[7]  
Tolosa L(2012)Oxidative stress, mitochondrial respiration, and Parkinson’s disease Int J Nanomed 341 207-72
[8]  
Castañeda-Ovando A(2007)Preparation of Fe Int J Pharm 158 65-9226
[9]  
de L Pacheco-Hernández M(2008)O J Hazard Mater 1 119-395
[10]  
Páez-Hernández ME(2011) magnetic nanoparticles coated with gallic acid for drug delivery Int J Pharm Invest 34 9220-909