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Microwave Plasma Sintering and in vitro Study of Porous HA/β-TCP Biphasic Bioceramics

机译:多孔HA /β-TCP双相烧结烧结和体外研究微波血浆烧结和体外研究

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Porous HA/β-TCP biphasic calcium phosphate (BCP) bioceramics were prepared by microwave plasma in order to solve the problems on sintering of Ca-P bioceramics by a conventional furnace. The plasma-sintered samples exhibit a higher densification rate, smaller grain size and higher compressive strength compared to those of conventional sintered samples. The [Ca~(2+)] concentration and the dissolution rate are also higher than those of conventional sintered samples in physiological saline. After immersed in simulated body fluid (SBF) and simulated inflammation body fluid, the amount of bone-like apatite formed on plasma-sintered samples is more than that formed on conventional sintered samples. The results indicate that plasma sintered porous BCP bioceramics have better mechanical properties and may also have better biological properties. On the other hand, the surface of samples that underwent a simulated inflammation procedure is smoother and the amount of bone-like apatite formed on them is less than that formed on the samples immersed in normal SBF all the time, which may indicate that the light acid in an inflammation response would affect the bone reconstruction when Ca-P bioceramics implanted in living body.
机译:通过微波等离子体制备多孔HA /β-TCP双相磷酸钙(BCP)生物陶瓷,以解决传统炉子烧结CA-P生物陶瓷的问题。与常规烧结样品相比,等离子体烧结样品表现出更高的致密化速率,较小的粒度和更高的抗压强度。 [Ca〜(2+)]浓度和溶出速率也高于生理盐水中常规烧结样品的浓度。在浸入模拟体液(SBF)和模拟炎症体液之后,在血浆烧结样品上形成的骨状磷灰石的量大于在常规烧结样品上形成的脂肪磷灰石。结果表明,血浆烧结多孔BCP生物陶瓷具有更好的机械性能,并且还可以具有更好的生物特性。另一方面,经历了模拟炎症手术的样品表面是光滑的,并且在它们上形成的骨状磷灰石的量小于在浸入正常SBF的样品上形成的骨状磷灰石的量,这可能表明光线当Ca-P生物陶瓷植入生活体内时,炎症反应中的酸会影响骨重建。

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