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Hydroxyapatite from Golden Apple Snail Shell with Calcined Kaolin for Biomaterial Applications

机译:来自金苹果的羟基磷灰石与煅烧高岭土的生物材料应用

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Biomaterials containing calcium phosphate ceramics have been used as bone substitute materials. In this study, the compressive strength and in vitro bioactivity tests of hydroxyapatite (HAp) from golden apple snail shell mixed with calcined kaolin (CK) were investigated for used as bone substitute materials. Mixed paste samples were cured at 23 °C and 60°C for 2 days and curing continued at 23°C for 7 days. The effects of HAp:CK weight ratio on compressive strength and apatite formation in simulated body fluid (SBF) were investigated. The good compressive strength was 32.93 MPa at 25% hydroxyapatite with 75% calcined kaolin at curing temperature of 60°C. Apatite formation was observed on sample surfaces after soaking in SBF for 28 days using SEM, EDS and XRD analyses. It was found that apatite formation took place on the surface of samples, consisting of HAp, after immersion in SBF.
机译:含有磷酸钙陶瓷的生物材料已被用作骨替代材料。在该研究中,研究了从与煅烧高岭土(CK)混合的金苹果(HAP)的羟基磷灰石(HAP)的抗压强度和体外生物活性试验用于用作骨替代材料。将混合的糊状样品在23℃至60℃下固化2天,并在23℃下继续固化7天。研究了HAP:CK重量比在模拟体液(SBF)中对压缩强度和磷灰石形成的影响。良好的抗压强度为32.93MPa,在25%羟基磷灰石中,固化温度为75%煅烧高岭土60℃。使用SEM,EDS和XRD分析在SBF浸泡28天后在样品表面上观察到磷灰石形成。发现磷灰石形成在样品表面上发生,由HAP组成,浸入SBF后。

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