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氨基酸与生物矿物相互作用的模型研究:L-丝氨酸在羟基磷灰石-水界面的作用

Model Studies on the Interaction of Amino Acids with Biominerals: The Effect of L-Serine at the Hydroxyapatite-Water Interface.

作者信息

Spanos Nikos, Klepetsanis Pavlos G., Koutsoukos Petros G.

机构信息

Institute of Chemical Engineering and High Temperature Chemical Processes, Patras, GR, 26500, Greece

出版信息

J Colloid Interface Sci. 2001 Apr 15;236(2):260-265. doi: 10.1006/jcis.2000.7396.

Abstract

The effect of L-serine in supersaturated solutions of calcium phosphate was investigated under plethostatic conditions. The rates of crystal growth measured in the presence of L-serine at relatively high concentrations and in the range between 2x10(-3) and 1x10(-2) mol dm(-3) were appreciably reduced. The inhibitory effect of L-serine was found to be due to blocking of a portion of the active growth sites by adsorption. Kinetics measurements in the presence of L-serine as well as adsorption isotherm analysis suggested Langmuir-type adsorption of L-serine on the surface of hydroxyapatite (HAP) with a relatively low affinity for the substrate. Adsorption experiments showed that at pH 7.4 considerable adsorption of L-serine onto HAP takes place, whereas at pH 10.0 the adsorption was negligible, suggesting that electrostatic interactions are dominant. Attraction between the positively charged protonated amino group of the L-serine molecule and the negatively charged HAP surface contributed largely to the adsorption. This was corroborated by the fact that, in the presence of L-serine in the solution, a significant shift of zeta-potential of the HAP particles to less negative values was found at pH values close to 7.4. At pH values higher than 10.0 essentially no shift of zeta-potential takes place. On the basis of the experimental results, a model was proposed according to which L-serine absorbs on the surface of HAP through electrostatic attractions exerted between one negative site of the HAP surface, i.e., phosphate or hydroxyl ion, and the positively charged protonated amino group of one L-serine molecule, forming a surface ion pair. Copyright 2001 Academic Press.

摘要

在恒压条件下研究了L-丝氨酸在磷酸钙过饱和溶液中的作用。在相对高浓度(2×10⁻³至1×10⁻² mol dm⁻³)的L-丝氨酸存在下测得的晶体生长速率明显降低。发现L-丝氨酸的抑制作用是由于吸附导致一部分活性生长位点被阻断。在L-丝氨酸存在下的动力学测量以及吸附等温线分析表明,L-丝氨酸在羟基磷灰石(HAP)表面的吸附为Langmuir型,对底物的亲和力相对较低。吸附实验表明,在pH 7.4时,L-丝氨酸大量吸附到HAP上,而在pH 10.0时吸附可忽略不计,这表明静电相互作用起主导作用。L-丝氨酸分子带正电的质子化氨基与带负电的HAP表面之间的吸引力在很大程度上促成了吸附。这一点得到了如下事实的证实:在溶液中存在L-丝氨酸的情况下,在接近pH 7.4时发现HAP颗粒的ζ电位明显向较不负值移动。在pH值高于10.0时,ζ电位基本上没有移动。基于实验结果,提出了一个模型,根据该模型,L-丝氨酸通过HAP表面的一个负位点(即磷酸根或氢氧根离子)与一个L-丝氨酸分子带正电的质子化氨基之间产生的静电吸引力吸附在HAP表面,形成表面离子对。版权所有2001年学术出版社。

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