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Antibacterial activity of agricultural waste derived wollastonite doped with copper for bone tissue engineering

机译:掺铜的农业废硅灰石对骨组织工程的抗菌活性

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摘要

Bioactive ceramic materials with metal ions generation brought great attention in the class of biomaterials development and widely employed as a filler material for bone tissue regeneration. The present study aimed to fabricate calcium silicate based ceramic material doped with copper metal particles by sol-gel method. Rice straw of agricultural waste was utilized as a source material to synthesize wollastonite, then wollastonite was doped with copper to fabricate copper doped wollastonite (Cu-Ws) particles. The synthesized materials were subjected to physio-chemical characterization by TEM, DLS, FTIR, XRD and DSC analysis. It was found that the sizes of the WS particles was around 900 ran, while adding copper the size was increased upto 1184 nm and the addition of copper to the material sharpening the peak. The release of Cu ions was estimated by ICP analysis. The anti-bacterial potentiality of the particles suggested that better microbial growth inhibition against E. coli (Gram negative) and S. aureus (Gram positive) strains from ATCC, in which the growth inhibition was more significant against S. aureus. The biocompatibility in mouse Mesenchymal Stem cells (mMSC) showed the non-toxic effect up to 0.05 mg/ml concentration while the increase in concentration was found to be toxic to the cells. So the particles may have better potential application with the challenging prevention of post implantation infection in the field of bone tissue engineering (BTE).
机译:产生金属离子的生物活性陶瓷材料引起了生物材料开发领域的广泛关注,并广泛用作骨组织再生的填充材料。本研究旨在通过溶胶-凝胶法制备掺杂有铜金属颗粒的硅酸钙基陶瓷材料。以农业废弃物稻草为原料合成硅灰石,然后对硅灰石进行铜掺杂制备铜掺杂硅灰石(Cu-Ws)颗粒。通过TEM,DLS,FTIR,XRD和DSC分析对合成的材料进行理化表征。发现WS颗粒的尺寸约为900纳米,而添加铜的尺寸增加到1184 nm,并且向材料中添加铜使峰变尖。通过ICP分析来估计Cu离子的释放。颗粒的抗菌潜力表明,对来自ATCC的大肠杆菌(革兰氏阴性)和金黄色葡萄球菌(革兰氏阳性)菌株具有更好的微生物生长抑制作用,其中对金黄色葡萄球菌的生长抑制作用更为显着。小鼠间充质干细胞(mMSC)的生物相容性显示浓度高达0.05 mg / ml时无毒,而浓度增加对细胞有毒。因此,在骨组织工程学(BTE)领域中,这些颗粒可能具有更好的潜在应用,同时具有极具挑战性的植入后感染预防。

著录项

  • 来源
    《Materials science & engineering》 |2017年第2期|1156-1165|共10页
  • 作者单位

    Faculty of Allied Health Sciences, Chettinad Academy of Research and Education, Chettinad Health City, Kelambakkam, Tamil Nadu 603 103, India;

    Faculty of Allied Health Sciences, Chettinad Academy of Research and Education, Chettinad Health City, Kelambakkam, Tamil Nadu 603 103, India;

    Tissue Engineering and Cancer Research Laboratory, Department of Biotechnology, SRM University, Kattankulathur, Tamil Nadu 603 103, India;

    Faculty of Allied Health Sciences, Chettinad Academy of Research and Education, Chettinad Health City, Kelambakkam, Tamil Nadu 603 103, India;

    Faculty of Allied Health Sciences, Chettinad Academy of Research and Education, Chettinad Health City, Kelambakkam, Tamil Nadu 603 103, India;

    Faculty of Allied Health Sciences, Chettinad Academy of Research and Education, Chettinad Health City, Kelambakkam, Tamil Nadu 603 103, India;

    Tissue Engineering and Drug Delivery Laboratory, Department of Biomedical Engineering, National Yang Ming University, Taipei 112, Taiwan, ROC;

    Faculty of Allied Health Sciences, Chettinad Academy of Research and Education, Chettinad Health City, Kelambakkam, Tamil Nadu 603 103, India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Wollastonite; Agricultural waste; Copper doped wollastonite; E. coli; S. aureus; Bone tissue engineering;

    机译:硅灰石;农业废物;铜掺杂硅灰石;大肠杆菌;金黄色葡萄球菌;骨组织工程;

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