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首页> 外文期刊>Journal of materials science >pH-responsive collagen fibrillogenesis in confined droplets induced by vapour diffusion
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pH-responsive collagen fibrillogenesis in confined droplets induced by vapour diffusion

机译:pH响应的胶原弥散性原纤维形成在受限液滴中的扩散

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摘要

A novel methodology for the assembly of collagen fibrils in microliter drops is proposed. It consists in the gradual increase of pH by means of vapour diffusion coming from the decomposition of NH_4HCO_3 solutions. The pH increase rate as well as the final steady pH of solutions containing collagen can be adjusted by varying the concentration of NH_4HCO_3. Both parameters are of predominant importance in collagen fibrillogenesis. The effect of these parameters on the kinetic of the fibrillogenesis process and on the fibrils morphology was studied. We found that both the kinetic and the morphology are mainly driven by electrostatic interactions. A gradual increase of pH slows down the formation of collagen fibres and favours the lateral interaction between fibrils producing broader fibres. On the other hand, a rapid increase of pH reduces the lateral electrostatic interactions favouring the formation of thinner fibres. The formation of the D-band periodicity is also a pH-dependent process that occurs after fibrillogenesis when the most stable state of fibres formation has been reached.
机译:提出了一种以微升滴形式组装胶原原纤维的新方法。它在于通过NH_4HCO_3溶液的分解而产生的蒸汽扩散来逐渐增加pH值。可以通过改变NH_4HCO_3的浓度来调节含胶原蛋白溶液的pH升高速率以及最终的稳定pH。这两个参数在胶原原纤维形成中均至关重要。研究了这些参数对原纤维形成过程动力学和原纤维形态的影响。我们发现动力学和形态都主要由静电相互作用驱动。 pH值的逐渐增加会减慢胶原纤维的形成,并有利于产生较宽纤维的原纤维之间的侧向相互作用。另一方面,pH值的快速增加会减少侧向静电相互作用,从而有助于形成更细的纤维。 D波段周期性的形成也是pH依赖的过程,当达到纤维形成的最稳定状态时,会在原纤维形成后发生。

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  • 来源
    《Journal of materials science》 |2014年第10期|2305-2312|共8页
  • 作者单位

    Laboratorio de Estudios Cristalograficos, Instituto Andaluz de Ciencias de la Tierra (IACT, CSIC-UGR), Avda. de las Palmeras 4, 18100 Armilla (Granada), Spain,Institute of Science and Technology for Ceramics (ISTEC), National Research Council (CNR), Via Granarolo 64, 48018 Faenza, RA, Italy;

    Institute of Science and Technology for Ceramics (ISTEC), National Research Council (CNR), Via Granarolo 64, 48018 Faenza, RA, Italy;

    Institute of Science and Technology for Ceramics (ISTEC), National Research Council (CNR), Via Granarolo 64, 48018 Faenza, RA, Italy;

    Laboratorio de Estudios Cristalograficos, Instituto Andaluz de Ciencias de la Tierra (IACT, CSIC-UGR), Avda. de las Palmeras 4, 18100 Armilla (Granada), Spain;

    Laboratorio de Estudios Cristalograficos, Instituto Andaluz de Ciencias de la Tierra (IACT, CSIC-UGR), Avda. de las Palmeras 4, 18100 Armilla (Granada), Spain;

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