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由磷酸四钙/磷酸二钙混合物在水凝胶中形成羟基磷灰石。

Formation of hydroxyapatite in hydrogels from tetracalcium phosphate/dicalcium phosphate mixtures.

作者信息

Sugawara A, Antonucci J M, Takagi S, Chow L C, Ohashi M

出版信息

J Nihon Univ Sch Dent. 1989 Mar;31(1):372-81. doi: 10.2334/josnusd1959.31.372.

DOI:10.2334/josnusd1959.31.372
PMID:2732787
Abstract

Apatitic calcium phosphate cements, formed by the ambient reaction of tetracalcium phosphate (TTCP) with dicalcium phosphates (DCP), have been recently reported. H2O or dilute aq. H3PO4 (0.2%) is used as the liquid vehicle for this reaction. The aim of this study was to ascertain if hydroxyapatite (HAp) can form in self-cured hydrogel composites containing TTCP/DCP mixes. The setting times (ST) and diametral tensile strengths (DTS) of these hydrogel composites were also determined. The hydrogels were of two types: (1) vinyl thermosets derived from the copolymerization of HEMA (2-hydroxyethyl methacrylate) and cross-linking monomers, and (2) polyelectrolyte-based hydrogels formed from aq. poly(alkenoic acids), e.g., poly(acrylic acid). Cylindrical specimens 6 mm D x 3 mm H were prepared and stored in H2O for up to 30 days. The HEMA composites were hardened in 7-15 min by free radical initiation (benzoyl peroxide/tertiary aromatic amine). The polyelectrolyte cements were hardened in 6-8 min. After various periods of storage in H2O at 37 degrees C, some of the specimens were examined by X-ray spectroscopy for HAp. HAp formation was not observed in the HEMA composites even after 30 days of H2O storage but was detected in the polyacid cements. The 24-h DTS values of the HEMA composites (14-26 MPa) were higher than those of the polyacid cements (7-12 MPa). Both the H2O content and pH may thus be factors controlling the rate and extent of HAp formation in hydrogel composites containing TTCP/DCP mixtures.

摘要

最近有报道称,磷酸四钙(TTCP)与磷酸二钙(DCP)在环境条件下反应形成了无定形磷酸钙水泥。水或稀磷酸水溶液(0.2%)用作该反应的液体载体。本研究的目的是确定在含有TTCP/DCP混合物的自固化水凝胶复合材料中是否能形成羟基磷灰石(HAp)。还测定了这些水凝胶复合材料的凝固时间(ST)和径向拉伸强度(DTS)。水凝胶有两种类型:(1)由甲基丙烯酸2-羟乙酯(HEMA)与交联单体共聚得到的乙烯基热固性材料,以及(2)由水性聚(链烯酸),如聚(丙烯酸)形成的基于聚电解质的水凝胶。制备了直径6mm×高3mm的圆柱形试样,并在水中储存长达30天。HEMA复合材料通过自由基引发(过氧化苯甲酰/叔芳胺)在7-15分钟内硬化。聚电解质水泥在6-8分钟内硬化。在37℃的水中储存不同时间后,一些试样通过X射线光谱法检测HAp。即使在水中储存30天后,在HEMA复合材料中也未观察到HAp的形成,但在聚酸水泥中检测到了HAp的形成。HEMA复合材料的24小时DTS值(14-26MPa)高于聚酸水泥(7-12MPa)。因此,水含量和pH值都可能是控制含有TTCP/DCP混合物的水凝胶复合材料中HAp形成速率和程度的因素。

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