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首页> 外文期刊>Biomaterials >Ionic modification of calcium phosphate cement viscosity. Part II: hypodermic injection and strength improvement of brushite cement
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Ionic modification of calcium phosphate cement viscosity. Part II: hypodermic injection and strength improvement of brushite cement

机译:离子改性磷酸钙水泥的粘度。第二部分:皮下注射和透钙磷石强度的提高

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Brushite-forming calcium phosphate cements are of great interest as bone replacement materials because they are resorbable in physiological conditions. However, their short setting times, low mechanical strengths and limited injectability limit broad clinical application. In this study, we showed that a significant improvement of these properties of brushite cement could be achieved by the use of sodium citrate or citric acid as setting retardants, such that workable cement pastes with a powder to liquid ratio of up to 5 could be manufactured. The cement used in this study consisted of an equimolar powder mixture of beta-tricalcium phosphate and monocalcium phosphate hydrate The use of 500 mm-1 m retardant solutions as liquid phase enabled initial setting times of 8-12 min. Wet compressive strength were found to be in the range between 12-18 MPa after immersion of uncompacted cement samples in serum for 24h. A further strength improvement to 32 MPa was obtained by compaction of the cement paste during samples preparation. This is significant because high-temperature processes cannot be used to fabricate hydrated calcium phosphate materials. Cement pastes were injectable through a hypodermic needle at a powder to liquid ratio of 3.3 g/ml when a 1 M citric acid was used as liquid phase, thus enabling precise controlled delivery to small defects. (C) 2003 Elsevier Ltd. All rights reserved. [References: 25]
机译:形成透钙磷石的磷酸钙水泥作为骨替代材料备受关注,因为它们在生理条件下可吸收。但是,它们的凝固时间短,机械强度低和可注射性有限,限制了其广泛的临床应用。在这项研究中,我们表明,通过使用柠檬酸钠或柠檬酸作为阻凝剂,可以显着改善透钙磷石水泥的这些性能,从而可以制造出粉/液比例最高为5的可用水泥浆。 。本研究中使用的水泥由β-磷酸三钙和磷酸一钙水合物的等摩尔粉末混合物组成。使用500 mm-1 m的阻燃剂溶液作为液相,可使初始凝固时间为8-12分钟。将未压实的水泥样品浸入血清中24小时后,湿抗压强度在12-18 MPa之间。通过在样品制备过程中压实水泥浆将强度进一步提高到32 MPa。这是很重要的,因为不能使用高温工艺来制造水合磷酸钙材料。当将1 M柠檬酸用作液相时,可以通过皮下注射针以3.3 g / ml的粉液比注入水泥浆,因此可以精确控制小缺陷的传递。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:25]

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