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人类焦磷酸钙晶体沉积病模型:明胶基质中的结晶动力学

A model for human calcium pyrophosphate crystal deposition disease: crystallization kinetics in a gelatin matrix.

作者信息

Mandel N S, Mandel G S

出版信息

Scan Electron Microsc. 1984(Pt 4):1779-92.

PMID:6098005
Abstract

A model for the deposition of calcium pyrophosphate dihydrate (CPPD) crystals in cartilage observed in human CPPD crystal deposition disease has been developed using diffusion of calcium and pyrophosphate ions through a denatured collagen matrix environment at physiologic pH. This model system uses biological grade gelatin and has allowed for the study of crystal deposition over a wide range of calcium and pyrophosphate concentrations, including physiologic levels. The model has reproducibly formed the two crystallographic dimorphs observed clinically: triclinic and monoclinic calcium pyrophosphate dihydrate. In addition, amorphous calcium pyrophosphate has been identified, and is the first species to form in the crystallization process and transforms to orthorhombic calcium pyrophosphate tetrahydrate. This in turn dissolves with a very localized increase in available pyrophosphate leading to the formation of triclinic and monoclinic calcium pyrophosphate dihydrate. The denatured collagen matrix has allowed for the formation of the two in vivo crystals at pyrophosphate concentrations lower than previously reported in solution studies.

摘要

通过在生理pH值下,使钙离子和焦磷酸根离子在变性胶原基质环境中扩散,建立了一种在人类焦磷酸钙二水合物(CPPD)晶体沉积病中观察到的CPPD晶体在软骨中沉积的模型。该模型系统使用生物级明胶,并能够在包括生理水平在内的广泛钙和焦磷酸浓度范围内研究晶体沉积。该模型已可重复地形成临床上观察到的两种晶体学双晶型:三斜晶系和单斜晶系的焦磷酸钙二水合物。此外,还鉴定出了无定形焦磷酸钙,它是结晶过程中首先形成的物种,并转变为正交晶系的焦磷酸钙四水合物。这反过来又会在局部可用焦磷酸增加的情况下溶解,导致形成三斜晶系和单斜晶系的焦磷酸钙二水合物。变性胶原基质能够在低于先前溶液研究报道的焦磷酸浓度下形成两种体内晶体。

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