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用于椎体成形术的可注射柠檬酸盐改性波特兰水泥。

Injectable citrate-modified Portland cement for use in vertebroplasty.

作者信息

Wynn-Jones Gareth, Shelton Richard M, Hofmann Michael P

机构信息

Biomaterials Unit, School of Dentistry, University of Birmingham, St Chad's Queensway, Birmingham, B4 6NN, UK.

出版信息

J Biomed Mater Res B Appl Biomater. 2014 Nov;102(8):1799-808. doi: 10.1002/jbm.b.33160. Epub 2014 Apr 8.

Abstract

The injectability of Portland cement (PC) with several citrate additives was investigated for use in clinical applications such as vertebroplasty (stabilization of a fractured vertebra with bone cement) using a syringe. A 2-wt % addition of sodium or potassium citrate with PC significantly improved cement injectability, decreased cement setting times from over 2 h to below 25 min, while increasing the compressive strength to a maximum of 125 MPa. Zeta-potential measurements indicated that the citrate anion was binding to one or more of the positively charged species causing charged repulsion between cement particles which dispersed aggregates and caused the liquefying effect of the anion. Analysis of the hydrating phases of PC indicated that the early strength producing PC phase (ettringite) developed within the first 2 h of setting following addition of the citrate anion, while this did not occur in the control cement (PC only). Within 24 h ettringite developed in PC as well as calcium-silicate-hydrate (C-S-H), the major setting phase of PC, whereas cements containing citrate did not develop this phase. The evidence suggested that in the presence of citrate the cements limited water supply appeared to be utilized for ettringite formation, producing the early strength of the citrate cements. The present study has demonstrated that it is possible to modify PC with citrate to both improve the injectability and crucially reduce the setting times of PC while improving the strength of the cement.

摘要

研究了几种柠檬酸盐添加剂对波特兰水泥(PC)的可注射性,以用于临床应用,如使用注射器进行椎体成形术(用骨水泥稳定骨折椎体)。向PC中添加2重量%的柠檬酸钠或柠檬酸钾可显著提高水泥的可注射性,将水泥凝固时间从2小时以上缩短至25分钟以下,同时将抗压强度提高到最大125MPa。ζ电位测量表明,柠檬酸根阴离子与一种或多种带正电的物质结合,导致水泥颗粒之间产生电荷排斥,从而分散聚集体并产生阴离子的液化效应。对PC水化相的分析表明,在添加柠檬酸根阴离子后,产生早期强度的PC相(钙矾石)在凝固的前2小时内形成,而对照水泥(仅PC)中未出现这种情况。在24小时内,PC中形成了钙矾石以及硅酸钙水化物(C-S-H),这是PC的主要凝固相,而含有柠檬酸盐的水泥未形成该相。证据表明,在存在柠檬酸盐的情况下,水泥有限的供水似乎被用于钙矾石的形成,从而产生了含柠檬酸盐水泥的早期强度。本研究表明,用柠檬酸盐改性PC可以提高其可注射性,关键是缩短PC的凝固时间,同时提高水泥的强度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b04/4657479/279225c334c1/jbm0102-1799-f1.jpg

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