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首页> 外文期刊>Journal of the American Chemical Society >Harnessing Peptide Binding to Capture and Reclaim Phosphate
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Harnessing Peptide Binding to Capture and Reclaim Phosphate

机译:利用肽结合捕获和回收磷酸盐

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摘要

With rising consumer demands, society is tapping into wastewater as an innovative source to recycle depleting resources. Novel reclamation technologies have been recently explored for this purpose, including several that optimize natural biological processes for targeted reclamation. However, this emerging field has a noticeable dearth of synthetic material technologies that are programmed to capture, release, and recycle specified targets; and of the novel materials that do exist, synthetic platforms incorporating biologically inspired mechanisms are rare. We present here a prototype of a materials platform utilizing peptide amphiphiles that has been molecularly engineered to sequester, release, and reclaim phosphate through a stimuli-responsive pH trigger, exploiting a protein-inspired binding mechanism that is incorporated directly into the self-assembled material network. This material is able to harvest and controllably release phosphate for multiple cycles of reuse, and it is selective over nitrate and nitrite. We have determined by simulations that the binding conformation of the peptide becomes constrained in the dense micelle corona at high pH such that phosphate is expelled when it otherwise would be preferentially bound. However, at neutral pH, this dense structure conversely employs multichain binding to further stabilize phosphate when it would otherwise be unbound, opening opportunities for higher-order conformational binding design to be engineered into this controllably packed corona. With this work, we are pioneering a new platform to be readily altered to capture other valuable targets, presenting a new class of capture and release materials for recycling resources on the nanoscale.
机译:随着消费者需求上升,社会正在挖掘废水作为一种创新资源的创新来源。最近为此目的探讨了新的填海科学技术,包括若干优化针对性填海的自然生物过程。然而,该新兴领域具有明显的浅薄的综合材料技术,这些技术被编程为捕获,释放和回收指定的目标;并且,存在的新材料,具有生物启发机制的合成平台是罕见的。我们在此提供利用肽两亲物的材料平台的原型通过刺激响应性pH触发,利用肽两亲物用于通过刺激的pH触发来螯合,释放和回收磷酸盐,利用直接掺入自组装材料中的蛋白质启动的粘合机构。网络。该材料能够收获和可控地释放磷酸盐,用于多循环重用,并且它是在硝酸盐和亚硝酸盐上选择的。我们已经通过模拟确定肽的结合构象在高pH下被约束在致密的胶束电晕中,使得当否则将优先结合时磷酸盐被排出。然而,在中性pH下,这种致密的结构相反地采用七种结合,以进一步稳定磷酸盐,否则在否则是未缔结的情况下,打开更高阶构象结合设计的机会被设计成该可控包装的电晕。通过这项工作,我们正在开创一个新的平台,旨在改变以捕获其他有价值的目标,呈现用于回收纳米级资源的新一类捕获和释放材料。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2021年第11期|4440-4450|共11页
  • 作者单位

    Pritzker School of Molecular Engineering University of Chicago Chicago Illinois 60637 United States;

    Pritzker School of Molecular Engineering University of Chicago Chicago Illinois 60637 United States;

    Pritzker School of Molecular Engineering University of Chicago Chicago Illinois 60637 United States;

    Pritzker School of Molecular Engineering University of Chicago Chicago Illinois 60637 United States;

    Pritzker School of Molecular Engineering University of Chicago Chicago Illinois 60637 United States;

    Chemical Engineering Department Ben-Gurion University Beer Sheva 841050 Israel;

    Chemical Engineering Department Ben-Gurion University Beer Sheva 841050 Israel;

    Pritzker School of Molecular Engineering University of Chicago Chicago Illinois 60637 United States Argonne National Laboratory Lemont Illinois 60439 United States;

    Pritzker School of Molecular Engineering University of Chicago Chicago Illinois 60637 United States Argonne National Laboratory Lemont Illinois 60439 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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