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A Novel Drug Delivery Carrier Based on α-eleostearic Acid Grafted Hydroxyapatite Composite 被引量:1

A Novel Drug Delivery Carrier Based on a-eleostearic Acid Grafted Hydroxyapatite Composite
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摘要 The purpose of this study is to explore and develop a novel biocompatibility drug delivery carrier for controllingontrolled drug release. The a-eleostearic acid grafted hydroxyapatite (a-ESA-g-HA) composite was synthesized by using silane coupling agent and characterized by Fourier Transformation Infrared Spectroscopy (FT-IR), Thermal Gravimetric Analysis (TGA) and Scanning Electron Microscope (SEM), respectively. The in vitro drug loading and controlled release behaviors of a-ESA-g-HA composite were investigated using ciprofloxacin as the model drug. The amount of ciprofloxacin loading and released was cal- culated by absorbance value which was determined by UV-Vis spectrophotometry at wavelength of 277 nm. The biocompatibility of a-ESA-g-HA composite was assessed by 3-(4,5)-dimethylthiahiazo(-z-yl)-3,5-di-phenytetrazoliumromide(MTT) assay, nuclear morphology and platelet adhesion. The results showed that the a-ESA-g-HA had nontoxic and good biocompatibility. According to the results mentioned above, the a-ESA-g-HA is an effective drug delivery carrier, which could increase drug loading capacity and control drug release, so further studies are necessary to evaluate clinical application and human health care. The purpose of this study is to explore and develop a novel biocompatibility drug delivery carrier for controllingontrolled drug release. The a-eleostearic acid grafted hydroxyapatite (a-ESA-g-HA) composite was synthesized by using silane coupling agent and characterized by Fourier Transformation Infrared Spectroscopy (FT-IR), Thermal Gravimetric Analysis (TGA) and Scanning Electron Microscope (SEM), respectively. The in vitro drug loading and controlled release behaviors of a-ESA-g-HA composite were investigated using ciprofloxacin as the model drug. The amount of ciprofloxacin loading and released was cal- culated by absorbance value which was determined by UV-Vis spectrophotometry at wavelength of 277 nm. The biocompatibility of a-ESA-g-HA composite was assessed by 3-(4,5)-dimethylthiahiazo(-z-yl)-3,5-di-phenytetrazoliumromide(MTT) assay, nuclear morphology and platelet adhesion. The results showed that the a-ESA-g-HA had nontoxic and good biocompatibility. According to the results mentioned above, the a-ESA-g-HA is an effective drug delivery carrier, which could increase drug loading capacity and control drug release, so further studies are necessary to evaluate clinical application and human health care.
出处 《Journal of Bionic Engineering》 SCIE EI CSCD 2014年第1期125-133,共9页 仿生工程学报(英文版)
关键词 a-eleostearic acid HYDROXYAPATITE RELEASE BIOCOMPATIBILITY COMPOSITE a-eleostearic acid hydroxyapatite release biocompatibility composite
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  • 1Langer R. New methods of drug delivery[J].{H}SCIENCE,1990.1527-1533.
  • 2Huang Y C,Lam U I. Chitosan/fucoidan pH sensitive nanoparticles for oral delivery system[J].{H}Journal of The Chinese Ceramic Society,2011.779-785.
  • 3Slowing I I,Vivero-Escoto J L,Wu C W,Lin V S. Mesoporous silica nanoparticles as controlled release drug delivery and gene transfection carriers[J].{H}Advanced Drug Delivery Reviews,2008.1278-1288.
  • 4Xiao B L,Ma Z Y,BI J. Creep behavior of TiBw/Ti and (TiBw + TiCp)/Ti in situ composite[J].{H}Journal of Materials Science Letters,2002.859-861.
  • 5Peter M,Ganesh N,Selvamurugan N,Nair S V Furuike T Tamura H Jayakumar R. Preparation and characterization of chitosangelatin/nanohydroxyapatite composite scaffolds for tissue engineering applications[J].{H}Carbohydrate Polymers,2010.687-694.
  • 6Nie H,Wang C H. Fabrication and characterization of PLGA/HAp composite scaffolds for delivery of BMP-2 plasmid DNA[J].{H}Journal of Controlled Release,2007.111-121.
  • 7Saleem I Y,Vordermeier M,Barralet J E,Coombes A G. Improving peptide-based assays to differentiate between vaccination and Mycobacterium bovis infection in cattle using nanoparticle carriers for adsorbed antigens[J].{H}Journal of Controlled Release,2005.551-561.
  • 8Matsumoto T,Okazaki M,Inoue M,Yamaguchi S Kusunose T Toyonaga T Hamada Y Takahashi J. Hydroxyapatite particles as a controlled release carrier of protein[J].{H}BIOMATERIALS,2004.3807-3812.
  • 9Sibilla P,Sereni A,Aguiari G,Banzi M Manzati E Mischiati C Trombelli L del Senno L. Effects of a hydroxyapatite-based biomaterial on gene expression in osteoblast-like cells[J].{H}Journal of Dental Research,2006.354-358.
  • 10Dasgupta S,Bandyopadhyay A,Bose S. Reverse micelle-mediated synthesis of calcium phosphate nanocarriers for release of bovine serum albumin[J].{H}ACTA BIOMATERIALIA,2009.3112-3121.

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