Influences of ionic liquid and temperature on the tailorable surface morphology of F-apatite nanocomposites for enhancing biological abilities for orthopedic implantation

被引:25
作者
Sonamuthu, Jegatheeswaran [1 ]
Samayanan, Selvam [2 ]
Jeyaraman, Anandha Raj [3 ]
Murugesan, Balaji [1 ]
Krishnan, Bama [1 ]
Mahalingam, Sundrarajan [1 ]
机构
[1] Alagappa Univ, Sch Chem Sci, Dept Ind Chem, Adv Green Chem Lab, Karaikkudi 630003, Tamil Nadu, India
[2] Pusan Natl Univ, Laser & Sensor Applicat Lab, Busan 609735, South Korea
[3] Cent Electrochem Res Inst, Funct Mat Div, CSIR, Karaikkudi 630006, Tamil Nadu, India
来源
MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS | 2018年 / 84卷
关键词
F-hydroxyapatite; Ionic liquid; Osteoblast; Cytocompatibility; Antibacterial; Orthopedic implant; MECHANICAL-PROPERTIES; IN-VITRO; CONTROLLABLE SYNTHESIS; SILVER NANOPARTICLES; DOPED HYDROXYAPATITE; MAGNESIUM ALLOY; FLUORAPATITE; COMPOSITE; ALCOHOL; ANTIBACTERIAL;
D O I
10.1016/j.msec.2017.11.035
中图分类号
TB3 [工程材料学]; R318.08 [生物材料学];
学科分类号
0805 ; 080501 ; 080502 ;
摘要
This report has approached for the green synthesis of morphological controlled novel metal-doped fluorinated apatite/polymeric nanocomposites. The synthesized nanocomposites have investigated for hard tissue engineering and bone substitute applications. The selected fluoro ionic liquid explored the dual performances as fluorine precursor and as a soft template for the morphological development of apatite nanocomposite synthesis. The structural and surface studies (XRD, FTIR, FE-SEM, EDS, AFM, HR-TEM & SAED) confirmed the crystalline and morphological changes of synthesized fluorohydroxyapatite nanostructures at two different reaction temperatures. The fluorinated apatite nanocomposites doped with silver for metal-doped composites, which have effective antibacterial efficacy and favorable biocompatibility. The silver-doped nanocomposites showed excellent antibacterial ability against Staphylococcus aureus and Escherichia coli bacterial pathogens with the uniform release of silver and fluorine ions. These antibacterial performances have systematically tested by the quantitative and qualitative methods. The rod-like fluorinated apatite nanocrystals promote cell adhesion and viability of human osteosarcoma (MG-63) cell lines and these studies compared with the sheet-like apatite nanocomposites. This type of biomedical apatite materials may be a promising material for orthopedic implant and regeneration applications.
引用
收藏
页码:99 / 107
页数:9
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