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Computer simulation of proteins adsorption on hydroxyapatite surfaces with calcium phosphate ions

机译:磷酸钙离子对羟基磷灰石表面吸附的计算机模拟

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Protein adsorption plays a key role in determining the biological properties of calcium phosphate biomaterials. Calcium (Ca) and phosphate (P) ions are involved in the protein adsorption process and influence the protein adsorption behaviors. In this study, the proteins adsorption on hydroxyapatite (HA) (001), (100), (110), (010) surfaces with Ca, P ions in solution were investigated by Molecular Dynamics (MD) simulation. The results reveal that basic proteins were more favorable to adsorb on HA surface than acidic proteins. HA (110) surface absorbed more acidic proteins than HA (001) and (100). HA (010) surface adsorbed more basic protein. Basic residues play a more important role than acidic residues in the adsorption process, as the basic residues have shown higher absorption energy than acidic residues, and they were more likely to adsorb on HA surfaces than to bind P ions in solution. Most of the active sites of protein, especially for acidic residues, are prefer to interact with HA surface through water molecules. Basic residues are more likely to adsorb onto HA surfaces directly. The presence of Ca, P ions in solution can influence the adsorption behaviors of protein. The formation of Ca, P ion cluster may lead to desorption of proteins. And they can compete with water molecules to bond to HA surfaces, acting as a bridge of protein interacting with HA surfaces instead of water-bridge. This Ca, P ions bridge connection make the adsorption energy of protein weakened. The results of this study provided new information at atomic/molecular level to further interpret the mechanism of protein adsorption on calcium phosphate surfaces with Ca, P ions. It is also helpful for designing new calcium phosphate biomaterials with specific surface properties to adsorb target protein for biomedical applications. (C) 2017 Elsevier Ltd. All rights reserved.
机译:蛋白质吸附在决定磷酸钙生物材料的生物学性质方面起着关键作用。钙(Ca)和磷酸根离子(P)参与蛋白质吸附过程并影响蛋白质吸附行为。本研究采用分子动力学(MD)模拟研究了蛋白质在羟基磷灰石(HA)(001)、(100)、(110)、(010)表面与Ca、P离子的吸附关系.结果表明,碱性蛋白比酸性蛋白更有利于在HA表面吸附。HA(110)表面比HA(001)和(100)吸收更多的酸性蛋白质。HA(010)表面吸附的碱性蛋白质较多。碱性残基在吸附过程中比酸性残基起着更重要的作用,因为碱性残基比酸性残基表现出更高的吸收能,并且它们更容易吸附在HA表面而不是结合溶液中的P离子。蛋白质的大多数活性位点,特别是酸性残基,更喜欢通过水分子与HA表面相互作用。碱性残留物更有可能直接吸附在透明质酸表面。溶液中Ca、P离子的存在会影响蛋白质的吸附行为。Ca,P离子簇的形成可能导致蛋白质的解吸。它们可以与水分子竞争以与 HA 表面结合,充当与 HA 表面相互作用的蛋白质桥梁,而不是水桥。这种Ca、P离子的桥连接使蛋白质的吸附能减弱。本研究结果在原子/分子水平上提供了新的信息,以进一步解释蛋白质吸附在磷酸钙表面与Ca,P离子的机制。它还有助于设计具有特定表面特性的新型磷酸钙生物材料,以吸附生物医学应用中的靶蛋白。(C) 2017 爱思唯尔有限公司保留所有权利。

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