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A Model for Enhanced Nucleation of Protein Crystals on a Fractal Porous Substrate

机译:分形多孔基质上蛋白质晶体增强成核的模型

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摘要

The phenomenon of enhanced nucleation and crystallization of proteins on porous silicon (PS) is theoretically studied and explained. The PS layer is treated as a fractal structure, and a new mechanism of local supersaturation associated with the fractality is proposed. It is shown that the number of adsorbed molecules on a fragment with a fractal surface significantly exceeds that on one with flat surfaces. For a fractal PS surface, a local concentration of molecules that is sufficient for nucleation is possible inside and in the close vicinity of the pores, even when the average conditions in the bulk of the solution correspond to metastability. The wide distribution of fractal pore size is favorable for the crystallization of a wide range of macromolecules using the same sample. In addition, the PS technology is very flexible, allowing tailoring the pore size and concentration as well as the fractal properties to specific proteins by changing the fabrication conditions.
机译:从理论上研究和解释了多孔硅(PS)上蛋白质增强成核和结晶现象。将PS层视为分形结构,并提出了与分形相关的局部过饱和的新机制。结果表明,在具有分形表面的片段上吸附的分子数量大大超过了具有平坦表面的片段上吸附的分子数量。对于分形PS表面,即使在溶液的大部分中的平均条件对应于亚稳性,也可能在孔的内部和附近使局部成核的分子浓度足够成核。分形孔径的宽分布有利于使用相同样品结晶大范围的大分子。此外,PS技术非常灵活,可以通过更改制造条件来调整孔径和浓度以及特定蛋白质的分形特性。

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