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首页> 外文期刊>Bulletin of the American Physical Society >APS -Annual Meeting of the APS Four Corners Section- Event - Characterizing Large-Pore Protein Crystals for Advanced Material Applications
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APS -Annual Meeting of the APS Four Corners Section- Event - Characterizing Large-Pore Protein Crystals for Advanced Material Applications

机译:APS-APS四角分会年会-活动-表征用于高级材料应用的大孔蛋白晶体

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摘要

With rapidly growing interest in therapeutic macromolecules, high-density information storage, and advanced biofunctional fabrics comes the need for new materials capable of guest macromolecular storage and metered release on the nanoscale level. One novel possibility for such materials are engineered large-pore protein crystals (LPCs). Composed of numerous chiral constituents, LPCs are ordered biologically derived nanoporous materials exhibiting hexagonal close-packed pores greater than 8 nm. These substantial pores distinguish LPCs from typical nanoporous scaffolds, enabling engineered LPC materials to readily uptake, immobilize, and controllably release macromolecular guests. The chemical diversity and functional versatility of LPCs make them promising targets for use as nanostructured scaffolds with potential applications in drug delivery, biosensing, enantiomer separations, and multifunctional textiles. This work highlights our efforts to experimentally and computationally investigate macromolecular transport and interaction energies within an LPC environment using time-lapse confocal microscopy, bulk equilibrium adsorption, and hindered diffusion simulation.
机译:随着对治疗性大分子,高密度信息存储和先进的生物功能织物的兴趣迅速增长,对能够在纳米级客体大分子存储和计量释放的新材料的需求也随之而来。这种材料的一种新颖可能性是工程化的大孔蛋白晶体(LPC)。 LPC由许多手性成分组成,是有序生物衍生的纳米多孔材料,具有大于8 nm的六角形密堆积孔。这些大孔可​​将LPC与典型的纳米多孔支架区分开来,从而使工程化的LPC材料能够轻松吸收,固定和可控地释放大分子客体。 LPC的化学多样性和功能的多功能性使其成为纳米结构支架的有希望的靶标,在药物递送,生物传感,对映体分离和多功能纺织品中具有潜在的应用前景。这项工作强调了我们的工作,即使用时移共聚焦显微镜,本体平衡吸附和受阻扩散模拟,在实验和计算上研究LPC环境中的大分子传输和相互作用能。

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