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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Polypeptide-catalyzed silica for dental applications.
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Polypeptide-catalyzed silica for dental applications.

机译:牙科用多肽催化二氧化硅。

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Polypeptides such as polylysine have been shown to catalyze the condensation and direct the structure of silica from precursor solutions under ambient conditions. Several of the reaction parameters have been shown to mediate this activity. Specifically, mechanical perturbation seems to play a role in the formation of hierarchical structures. Most studies have been conducted in solution, but biomedical and particularly dental applications will likely require control of biosilicified coatings, films or particle formation on surfaces. Tetraethylorthosilicate was reacted with polylysine and then spin coated onto a surface. The process parameters catalyst structure, pH, buffer: ethanol ratio and percentage of cocatalyst polyethyleneimine were varied to determine their effects on the formed silica. The chemical nature and morphology of the silica were investigated with FTIR and SEM, respectively and reaction rates were monitored with a colorimetric assay. Our results show that these process parameters had only minor effects on composition, but the catalyst conformation influenced the degree of hydration while the pH, choice of solvent and cocatalyst strongly influenced morphology. We also found that perturbation from spin coating significantly influences the silicification dynamics. The ability to catalyze nano- to micron-sized mineral with different morphologies using polypeptides could have numerous dental applications including, sealing of dentin tubules, in situ reinforcement of resin interfaces or preparation of implant surfaces.
机译:多肽(如聚赖氨酸)已显示出催化缩合作用,并在环境条件下从前体溶液引导二氧化硅的结构。已经显示了几种反应参数可介导这种活性。具体而言,机械扰动似乎在分层结构的形成中起作用。大多数研究都是在溶液中进行的,但是生物医学尤其是牙科应用可能需要控制生物硅化的涂层,薄膜或表面上的颗粒形成。使原硅酸四乙酯与聚赖氨酸反应,然后旋涂在表面上。改变工艺参数,催化剂结构,pH,缓冲液:乙醇比和助催化剂聚乙烯亚胺的百分比,以确定它们对形成的二氧化硅的影响。用FTIR和SEM分别研究了二氧化硅的化学性质和形态,并用比色法监测了反应速率。我们的结果表明,这些工艺参数对组成的影响很小,但催化剂的构型影响水合度,而pH,溶剂和助催化剂的选择对形貌有很大影响。我们还发现,旋涂的扰动会显着影响硅化动力学。使用多肽催化具有不同形态的纳米级至微米级矿物的能力可能具有广泛的牙科应用,包括牙本质小管的密封,树脂界面的原位增强或植入物表面的制备。

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