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首页> 外文期刊>Biomedical materials >Synthesis and characterizations of alginate-α-tricalcium phosphate microparticle hybrid film with flexibility and high mechanical property as a biomaterial
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Synthesis and characterizations of alginate-α-tricalcium phosphate microparticle hybrid film with flexibility and high mechanical property as a biomaterial

机译:磷酸盐α-β-β-三核杂交杂交膜具有柔韧性和高机械性能的合成与特征,作为生物材料

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摘要

Abiocompatible hybrid film has been fabricated using alginate (Alg), α-tricalcium phosphate (α- TCP) microparticle and calcium chloride through ionic crosslinking as a biomaterial. The ‘screeding method' (like a concrete finishing process) has been employed to develop the Alg-α-TCP film. For this method, the Alg/α-TCP blend has been prepared using an ultra-sonicator and then put on a glass slide. After that, the excess volume of blend has been cut off by skidding another slide along with the surface of the blend to achieve proper grade and flatness. The mechanical strength and flexibility of the film (Alg-α-TCP) has been controlled by changing its compositions. The crosslinking phenomenon has been confirmed by attenuated total reflectance Fourier transform infrared spectroscopy (ATRFTIR),~(13)C nuclear magnetic resonance (NMR), x-ray diffraction and thermogravimetric analyses. The ATR-FTIR and ~(13)CNMRanalysis results suggest that carboxylate groups of the alginate are ionically cross-linked with Ca~(2+) ions, while the α-TCP particles reside in the network by physical interaction. The micro-fatigue test results imply high tensile strength (up to 257 MPa) and flexibility (up to 13% elongation) of the Alg-α-TCP hybrid films. The SEM analysis suggests the α-TCP particles are homogeneously distributed on the surface of Alg-α-TCP films, whereas cross-sectional images confirmed the presence ofα-TCP in the cross-linked network.TGAresults demonstrated that thermal stability of the hybrid film was enhanced due to ionic crosslinking and interfacial interaction between alginate and α-TCP. The incorporation ofα-TCP particles diminished the swelling ratio of the hybrid film. The in vitro bone cell (MC3T3) culture and cytotoxicity tests showed that the hybrid film is biocompatible. The hybrid film releases bovine serum albumin and dimethyloxaloylglycine in a controlled way at pH7 and 7.4, and 37 °C. Overall, the biocompatible Alg-α-TCP hybrid film with excellent
机译:通过离子交联作为生物材料,使用藻酸盐(alg),α-三钙(α-TCP)微粒和氯化钙制造了辅助杂交膜。已经采用了“拆卸方法”(如混凝土精加工过程)来开发ALG-α-TCP膜。对于该方法,使用超声波器制备了ALG /α-TCP混合物,然后放在载玻片上。之后,通过将另一种滑块与混合物的表面一起滑动以实现适当的等级和平坦度,通过将过量的混合物进行切断。通过改变其组合物来控制膜(ALG-α-TCP)的机械强度和柔韧性。通过减弱总反射率傅里叶变换红外光谱(ATRFTIR),〜(13)C核磁共振(NMR),X射线衍射和热重分析来证实交联现象。 ATR-FTIR和〜(13)CNMRANAL分析结果表明,藻酸盐的羧酸盐基团与Ca〜(2+)离子离子交联,而α-TCP颗粒通过物理相互作用驻留在网络中。微疲劳试验结果暗示了藻类-TCP混合膜的高抗拉强度(高达257MPa)和柔韧性(高达13%)。 SEM分析表明α-TCP颗粒在ALG-α-TCP薄膜的表面上均匀分布,而横截面图像证实了交联网络中的α-TCP的存在。动力膜的热稳定性证明了杂交膜的热稳定性由于藻酸盐和α-TCP之间的离子交联和界面相互作用,增强了增强。 α-TCP颗粒的掺入减少了混合膜的溶胀比。体外骨细胞(MC3T3)培养和细胞毒性试验表明,杂化膜是生物相容性的。混合膜以PH7和7.4和37℃的受控方式释放牛血清白蛋白和二甲基氧丙基甘油。总的来说,生物相容性的ALG-α-TCP混合膜优异

著录项

  • 来源
    《Biomedical materials》 |2018年第2期|共13页
  • 作者单位

    Department of Chemical and Biomolecular Engineering Seoul National University of Science and Technology Seoul 01811 Republic of Korea;

    Advanced Biomaterials and Tissue Engineering Center Huazhong University of Science and Technology Wuhan 430074 People's Republic of China;

    Department of Chemical and Biomolecular Engineering Seoul National University of Science and Technology Seoul 01811 Republic of Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医用一般科学;
  • 关键词

    alginate; biomaterials; calcium phosphate; crosslinking; hybrid film;

    机译:藻酸盐;生物材料;磷酸钙;交联;混合膜;

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