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首页> 外文期刊>International Journal of Materials and Chemistry >Amorphous Calcium Orthophosphates: Nature, Chemistry and Biomedical Applications
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Amorphous Calcium Orthophosphates: Nature, Chemistry and Biomedical Applications

机译:非晶态正磷酸钙:性质,化学和生物医学应用

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摘要

Amorphous calcium orthophosphates (ACPs) represent a unique class of biomedically relevant calcium orthophosphate salts, having variable chemical but rather identical glass-like physical properties, in which there are neither translational nor orientational long-range orders of the atomic positions. Normally, ACPs are the first solid phases, precipitated after a rapid mixing of aqueous solutions containing ions of Ca2+ and PO43-; however, other production techniques are known. Interestingly, but ACPs prepared by wet-chemical techniques were found to possess a relative constancy in their chemical composition over a relatively wide range of preparation conditions, which suggested the presence of a well-defined local structural unit, presumably, with the structure of Ca9(PO4)6 – so-called a Posner’s cluster. However, the presence of similar clusters in ACPs produced by other techniques remains uncertain. All ACPs are thermodynamically unstable compounds and, unless stored in dry conditions or doped by stabilizers, spontaneously they tend to transform to crystalline calcium orthophosphates, mainly to calcium apatites. This solution instability of ACPs and their easy transformation to crystalline phases are of a great biological relevance. Namely, the initiating role ACPs play in matrix vesicle biomineralization raises the importance of ACPs from a mere laboratory curiosity to that of a reasonable key intermediate in skeletal calcification. In addition, due to great chemical and structural similarities to the calcified tissues of mammals, as well as excellent biocompatibility and bioresorbability, all types of ACPs are very promising candidates to manufacture artificial bone grafts. In this review, current knowledge on occurrence, preparation, composition, structure, major properties and biomedical applications of ACPs have been summarized. To assist the readers in looking for the specific details on ACPs, a great number of references have been collected and systematized.
机译:非晶态正磷酸钙(ACP)代表一类独特的生物医学相关的正磷酸钙盐,具有可变的化学性质,但具有相同的类似玻璃的物理性质,其中原子位置既没有平移也没有取向的长程顺序。通常,ACP是第一个固相,是在快速混合含有Ca 2 + 和PO 4 3-离子的水溶液后沉淀出来的;然而,其他生产技术是已知的。有趣的是,但是发现通过湿化学技术制备的ACP在相对宽的制备条件下其化学组成具有相对恒定性,这表明存在一个定义明确的局部结构单元,大概是Ca的结构 9 (PO 4 6 –所谓的Posner簇。然而,由其他技术产生的ACP中类似簇的存在仍然不确定。所有ACP都是热力学不稳定的化合物,除非在干燥条件下存储或由稳定剂掺杂,否则它们会自发地转变为结晶正磷酸钙,主要转变为磷灰石钙。 ACP的这种溶液不稳定性及其易于转化为结晶相具有重要的生物学意义。即,ACP在基质囊泡生物矿化中起的起始作用使ACP的重要性从单纯的实验室好奇心提高到骨骼钙化中合理的关键中间体的重要性。另外,由于与哺乳动物钙化组织的化学和结构相似性以及出色的生物相容性和生物再吸收性,所有类型的ACP都是制造人造骨移植物的非常有希望的候选者。在这篇综述中,总结了有关ACP的发生,制备,组成,结构,主要性质和生物医学应用的当前知识。为了帮助读者寻找有关ACP的具体细节,已经收集了大量参考文献并将其系统化。

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