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首页> 外文期刊>Journal of Materials Science. Materials in Medicine >Nano-scaled hydroxyapatite/polymer composite I. Coating of sintered hydroxyapatite particles on poly(γ-methacryloxypropyl trimethoxysilane)-grafted silk fibroin fibers through chemical bonding
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Nano-scaled hydroxyapatite/polymer composite I. Coating of sintered hydroxyapatite particles on poly(γ-methacryloxypropyl trimethoxysilane)-grafted silk fibroin fibers through chemical bonding

机译:纳米级羟基磷灰石/聚合物复合材料I.通过化学键合在聚(γ-甲基丙烯酰氧基丙基三甲氧基硅烷)接枝的丝素蛋白纤维上涂覆烧结的羟基磷灰石颗粒

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摘要

The inorganic-organic composite consisting of nano-scaled hydroxyapatite (HAp) and silk fibroin (SF) fibers was prepared through covalent linkage to develop a novel biomaterial for a soft-tissue-compatible material. The preparation of the composite was conducted through the three-step procedure consisting of chemical modification using 2-methacryloxyethyl isocyanate (MOD monomer to introduce vinyl groups on SF, poly(γ-methacryloxypropyl trimethoxysilane) (MPTS) graft-polymerization on SF, and coupling process between the surface of polyMPTS-grafted SF and HAp nano-particles. The amount of the graft-polymerization of polyMPTS through vinyl groups was well controlled by the reaction time. The nano-crystals were subsequently coated on the grafted fibers by heating at 120℃ for 2 h in a vacuum. The crystalline structure of the SF substrate did not change in the procedure. In the SEM observation of the composite surface, it was found that the bonded nano-crystals were separated and partially aggregated with several crystals attached on the SF fiber surface. The HAp particles adhered more strongly on the SF surface with separation or aggregation of several crystals than on the surface of the original SF after ultrasonic treatment.
机译:通过共价键合制备了由纳米级羟基磷灰石(HAp)和丝素蛋白(SF)纤维组成的无机-有机复合材料,从而开发出一种新型的软组织相容性生物材料。复合材料的制备通过三步程序进行,包括使用异氰酸2-甲基丙烯酰氧基乙酯(MOD单体在SF上引入乙烯基,对SF的聚(γ-甲基丙烯酰氧基丙基三甲氧基硅烷)(MPTS)接枝聚合和偶联)进行化学修饰。接枝聚MPTS的SF和HAp纳米颗粒的表面过程,通过反应时间很好地控制了聚MPTS通过乙烯基的接枝聚合量,然后在120℃加热将纳米晶体包覆在接枝纤维上真空中保持2 h,在此过程中SF衬底的晶体结构没有改变,在SEM观察复合材料表面时,发现键合的纳米晶体被分离并部分聚集,并附着有多个晶体。与原始SF表面相比,HAp颗粒更牢固地粘附在SF表面上,并分离或聚集了多个晶体。经过超声波处理。

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