Synthesis and Characterization of Nanoscale-Hydroxyapatite-Copper for Antimicrobial Activity Towards Bone Tissue Engineering Applications

被引:78
作者
Sahithi, K. [1 ]
Swetha, M. [1 ]
Prabaharan, M. [2 ]
Moorthi, A. [1 ]
Saranya, N. [1 ]
Ramasamy, K. [1 ]
Srinivasan, N. [3 ]
Partridge, N. C. [4 ]
Selvamurugan, N. [1 ,3 ,4 ]
机构
[1] SRM Univ, Sch Bioengn, Dept Biotechnol, Kattankulathur 603203, Tamil Nadu, India
[2] SRM Univ, Fac Engn & Technol, Dept Chem, Kattankulathur 603203, Tamil Nadu, India
[3] Univ Madras Taramani, Dr ALM Post Grad Inst Basic Med Sci, Dept Endocrinol, Madras 600113, Tamil Nadu, India
[4] NYU, Coll Dent, Dept Basic Biol & Craniofacial Biol, New York, NY 10010 USA
关键词
Nano-Hydroxyapatite Particles; Nano-Hydroxyapatite Soaked with Copper; Polyethylene Glycol; Antibacterial Activity; SCAFFOLDS;
D O I
10.1166/jbn.2010.1138
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The bacterial infection is one of the major problems associated with implant and reconstructive surgery of bone. Hence, the aim of this study was to develop biomaterials having antibacterial activity for bone tissue engineering. The hydroxyapatite nanoparticles (nHAp) improve the mechanical properties and incorporate nanotopographic features that mimic the nanostructure of natural bone. We report here for the first time the synthesis and characterization of nHAp and nHAp soaked with copper (nHAp-Cu) using SEM, AFM, FTIR and XRD. The antibacterial activity of nHAp and nHAp-Cu was determined using Gram-positive and Gram-negative bacterial strains. To have accelerated antibacterial activity, polyethylene glycol 400 (PEG 400), a synthetic biodegradable polymer was also added along with nHAp-Cu. The nHAp-Cu/PEG 400 had increased antibacterial activity towards Gram-positive than Gram-negative bacterial strains. The cytotoxicity of nHAp-Cu/PEG 400 was determined using MTT assay with rat primary osteoprogenitor cells and these biomaterials were found to be non-toxic. Hence, based on these results we suggest that the biomaterials containing nHAp-Cu/PEG 400 can be used as antibacterial materials in bone implant and bone regenerative medicine.
引用
收藏
页码:333 / 339
页数:7
相关论文
共 18 条
[1]   Plasma-sprayed carbon nanotube reinforced hydroxyapatite coatings and their interaction with human osteoblasts in vitro [J].
Balani, Kantesh ;
Anderson, Rebecca ;
Laha, Tapas ;
Andara, Melanie ;
Tercero, Jorge ;
Crumpler, Eric ;
Agarwal, Arvind .
BIOMATERIALS, 2007, 28 (04) :618-624
[2]   Hydroxyapatite adherence as a means to concentrate bacteria [J].
Berry, ED ;
Siragusa, GR .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1997, 63 (10) :4069-4074
[3]   INVITRO ANTI-BACTERIAL ACTIVITY OF CONCENTRATED POLYETHYLENE GLYCOL-400 SOLUTIONS [J].
CHIRIFE, J ;
HERSZAGE, L ;
JOSEPH, A ;
BOZZINI, JP ;
LEARDINI, N ;
KOHN, ES .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 1983, 24 (03) :409-412
[4]   Surface reactivity of zinc-modified hydroxyapatite [J].
Faria, Rafaella M. B. ;
Cesar, Deborah V. ;
Salim, Vera M. M. .
CATALYSIS TODAY, 2008, 133 (1-4) :168-173
[5]   Selective protein adsorption property and characterization of nano-crystalline zinc-containing hydroxyapatite [J].
Fujii, E ;
Ohkubo, M ;
Tsuru, K ;
Hayakawa, S ;
Osaka, A ;
Kawabata, K ;
Bonhomme, C ;
Babonneau, F .
ACTA BIOMATERIALIA, 2006, 2 (01) :69-74
[6]   Osteogenesis and angiogenesis: The potential for engineering bone [J].
Kanczler, J. M. ;
Oreffo, R. O. C. .
EUROPEAN CELLS & MATERIALS, 2008, 15 :100-114
[7]   Stimulation of osteoblast responses to biomimetic nanocomposites of gelatin-hydroxyapatite for tissue engineering scaffolds [J].
Kim, HW ;
Kim, HE ;
Salih, V .
BIOMATERIALS, 2005, 26 (25) :5221-5230
[8]   Biodegradable HA-PLA 3-D porous scaffolds: Effect of nano-sized filler content on scaffold properties [J].
Kothapalli, CR ;
Shaw, MT ;
Wei, M .
ACTA BIOMATERIALIA, 2005, 1 (06) :653-662
[9]   Modulation of nano-hydroxyapatite size via formation on chitosan-gelatin network film in situ [J].
Li, Junjie ;
Chen, YiPing ;
Yin, Yuji ;
Yao, Fanglian ;
Yao, Kangde .
BIOMATERIALS, 2007, 28 (05) :781-790
[10]   Nanomedicine for implants: A review of studies and necessary experimental tools [J].
Liu, Huinan ;
Webster, Thomas Jay .
BIOMATERIALS, 2007, 28 (02) :354-369