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聚丙烯酸改性磷酸钙骨水泥:水泥粉末组成以及聚合酸分子量和浓度的影响

Poly(acrylic acid) modified calcium phosphate cements: the effect of the composition of the cement powder and of the molecular weight and concentration of the polymeric acid.

作者信息

Majekodunmi A O, Deb S

机构信息

Department of Dental Biomaterials, GKT Dental Institute, Floor 17, Guy's Tower, London Bridge, London, UK.

出版信息

J Mater Sci Mater Med. 2007 Sep;18(9):1883-8. doi: 10.1007/s10856-007-3026-5. Epub 2007 May 24.

DOI:10.1007/s10856-007-3026-5
PMID:17522964
Abstract

Polymer modified calcium phosphate cements made with cement powders of varying tetracalcium phosphate [TTCP] content were prepared using two different molecular weight fractions of poly(acrylic acid) at four different concentrations. The ratio of the precursors (TTCP:DCPA) in the cement powder was found to influence the initial setting which decreased with increasing concentration of TTCP in the powder phase. It was also observed that cements derived from the higher molecular weight containing PAA yielded significantly (P < 0.05) shorter initial setting time (Ti) than cements containing the lower molecular weight, poly(acrylic acid) [GE7 PAA] The effect of the varying the TTCP content in the three different cement types PCPC-A, PCPC-B and PCPC-C showed that the trends of the compressive strength were specific to the concentration and molecular weight of the poly (acrylic acid). A 20% concentration of Glascol-E7 with a cement powder composed of an equimolar ratio of precursors (PCPC-B) resulted in optimal compressive strength within the range investigated. The TTCP content of the cement powder could also be varied to improve the diametral tensile strengths of the cements; the specific effects however, were again governed by both the concentration and molecular weight of the constituent poly (acrylic acid). The influence of TTCP on both the initial setting time and diametral tensile strength was related to the Ca (2+) ion concentration, which determined the rate and amount of cross-linking in the cement.

摘要

使用两种不同分子量级分的聚丙烯酸,以四种不同浓度制备了由不同磷酸四钙[TTCP]含量的水泥粉末制成的聚合物改性磷酸钙水泥。发现水泥粉末中前驱体(TTCP:DCPA)的比例会影响初凝,随着粉末相中TTCP浓度的增加,初凝时间会缩短。还观察到,含有较高分子量聚丙烯酸的水泥产生的初凝时间(Ti)明显(P < 0.05)短于含有较低分子量聚丙烯酸[GE7 PAA]的水泥。在三种不同的水泥类型PCPC-A、PCPC-B和PCPC-C中改变TTCP含量的影响表明,抗压强度的趋势特定于聚丙烯酸的浓度和分子量。20%浓度的Glascol-E7与由等摩尔比前驱体组成的水泥粉末(PCPC-B)在研究范围内产生了最佳抗压强度。水泥粉末的TTCP含量也可以改变以提高水泥的径向拉伸强度;然而,具体效果同样受组成聚丙烯酸的浓度和分子量的控制。TTCP对初凝时间和径向拉伸强度的影响与Ca(2+)离子浓度有关,Ca(2+)离子浓度决定了水泥中的交联速率和交联量。

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