在聚l -天冬氨酸存在下水合草酸钙的形成。

Scanning microscopy Pub Date : 1996-01-01
J A Wesson, E Worcester
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引用次数: 0

摘要

聚l -天冬氨酸(PA)对自发成核后生长的草酸钙晶体结构的影响,被评价为缓冲盐溶液中相对过饱和度和钙:草酸比的函数,pH值和离子强度在正常人尿的范围内。PA被用作自然发生的酸性尿蛋白的模型,这些蛋白已被证明可以抑制草酸钙晶体的成核和生长。用光学显微镜和x射线粉末衍射对生长的晶体进行了表征。在不添加PA的情况下,一水草酸钙是首选的结晶形式,在大多数不添加PA的情况下,一水草酸钙是唯一的结晶形式。然而,PA的存在有利于形成草酸钙二水合物晶体,当存在足够的量。在较高的过饱和度和较低的钙:草酸比下,影响优选晶体结构变化所需的PA量增加,表现出对这两个变量的非线性依赖。PA还被证明是草酸钙二水合结晶的动力学抑制剂。研究发现,天冬氨酸单体在质量浓度远远超过PA获得100%草酸钙所需的质量浓度时,不会改变一水草酸钙的首选结构,这表明PA的聚合性质对晶体结构的影响至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Formation of hydrated calcium oxalates in the presence of poly-L-aspartic acid.

The effect of poly-L-aspartic acid (PA) on the crystal structure of calcium oxalate crystals grown after spontaneous nucleation was evaluated as a function of relative supersaturation and calcium:oxalate ratio in a buffered salt solution, with pH and ionic strength in the range of normal human urine. PA was used as a model for naturally occurring acidic urine proteins that have been shown to inhibit nucleation and growth of calcium oxalate crystals. The crystals grown were characterized by optical microscopy and X-ray powder diffraction. It was observed that calcium oxalate monohydrate was the preferred crystalline form in the absence of added PA, and it was the only crystalline form obtained at most conditions tested without PA. However, the presence of PA favored the formation of calcium oxalate dihydrate crystals, when present in adequate quantities. The quantity of PA required to affect this change in preferred crystal structure was increased at higher supersaturations and at lower calcium:oxalate ratios, exhibiting a non-linear dependence on both variables. PA was also shown to be a kinetic inhibitor of calcium oxalate dihydrate crystallization. Aspartic acid monomer was found to cause no change in the preferred structure of calcium oxalate monohydrate at mass concentrations well beyond those required with PA to obtain 100% calcium oxalate dihydrate, indicating the critical importance of the polymeric nature of PA for this effect on crystal structure.

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