骨形态发生蛋白-2在金表面纳米尺度吸附的原子研究

Surfaces Pub Date : 2022-02-15 DOI:10.3390/surfaces5010010
I. Marquetti, S. Desai
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引用次数: 5

摘要

生物化学线索介导的纳米级表面形貌影响干细胞向不同谱系的分化。本研究的重点是骨形态发生蛋白(BMP-2)在纳米图案金基质上的吸附行为,这有助于骨和软骨组织结构的分化。采用平面、柱状、线性光栅和深基线性光栅对金衬底进行了图像化处理,并在20 ns内研究了端对端构型的BMP-2构象。线性光栅深底图案的吸附能最高,约为125 kJ/mol,其旋转半径保持在18.5 Å,吸附行为稳定。二级结构包括α-螺旋和β-薄片没有变性,因此BMP-2的生物利用度高,适用于深线性光栅模式。腕部和指关节表位的Ramachandran图显示没有位阻,并为I型和II型受体提供了结合位点。深线光栅衬底在金衬底5 Å内的接触数最多(88个原子),表明其在所考虑的衬底中优先选择纳米级图案。这项研究为BMP-2在纳米级金衬底上的原子吸附提供了新的见解,并在生物医学植入物和再生医学中有应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An Atomistic Investigation of Adsorption of Bone Morphogenetic Protein-2 on Gold with Nanoscale Topographies
Nanoscale surface topographies mediated with biochemical cues influence the differentiation of stem cells into different lineages. This research focuses on the adsorption behavior of bone morphogenetic protein (BMP-2) on nanopatterned gold substrates, which can aid in the differentiation of bone and cartilage tissue constructs. The gold substrates were patterned as flat, pillar, linear grating, and linear-grating deep based, and the BMP-2 conformation in end-on configuration was studied over 20 ns. The linear grating deep substrate pattern had the highest adsorption energy of around 125 kJ/mol and maintained its radius of gyration of 18.5 Å, indicating a stable adsorption behavior. Secondary structures including α-helix and β-sheet displayed no denaturation, and thus, the bioavailability of the BMP-2, for the deep linear-grating pattern. Ramachandran plots for the wrist and knuckle epitopes indicated no steric hindrances and provided binding sites to type I and type II receptors. The deep linear-grating substrate had the highest number of contacts (88 atoms) within 5 Å of the gold substrate, indicating its preferred nanoscale pattern choice among the substrates considered. This research provides new insights into the atomistic adsorption of BMP-2 on nanoscale topographies of a gold substrate, with applications in biomedical implants and regenerative medicine.
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CiteScore
4.40
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