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Chemical characteristics and hemostatic performances of ordered mesoporous calcium-doped silica xerogels

机译:有序介孔钙掺杂二氧化硅干凝胶的化学特性和止血性能

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A well-ordered mesoporous silicon dioxide calcium-doped xerogel (m-SXC) was synthesized by a sol-gel process. The in vitro bioactivity of the m-SXC was investigated by analyzing the apatite-forming ability in simulated body fluid (SBF) and MC3T3-E1 cell culture with materials, and the hemostatic activity of the m-SXC was determined by measuring the activated partial thromboplastin time (APTT) and prothrombin time (PT) in vitro. The results suggested that the m-SXC exhibited excellent in vitro bioactivity, with surface apatite formation for the m-SXC containing 10 w% Ca (m-SXC10) exceeding that containing 5 w% Ca (n-SXC5) and 0% Ca (m-SXC0) at 7 days, and the cell response test (MTT assay) and cell morphology observation demonstrated that these materials were biocompatible with no obvious negative effects on cellular viability. Moreover, the m-SXC with a high surface area (m-SXC0: 489.9 m~2 g~(-1), m-SXC5: 466.5 m~2 g~(-1), m-SXC10: 438.1 m~2 g~(-1)) possessed good hemostatic property because it could absorb a large amount of water from the blood, which could concentrate the components of blood and reduce the clotting time. Furthermore, the addition of calcium in the m-SXC had significant effects on the clotting time, in which the APTT (m-SXC0: 8 s, m-SXC5: 7 s, m-SXC10: 6 s, respectively) and PT (m-SXC0: 16 s, m-SXC5: 11 s, m-SXC10: 10 s, respectively) were shortened with the increase of Ca amounts in the m-SXC, indicating that incorporation of Ca in the m-SXC could improve its hemostatic activity.
机译:通过溶胶-凝胶法合成了有序的介孔二氧化硅钙掺杂干凝胶(m-SXC)。通过分析模拟体液(SBF)和含材料的MC3T3-E1细胞培养中的磷灰石形成能力,研究了m-SXC的体外生物活性,并通过测量活化部分的活性来确定m-SXC的止血活性体外凝血酶原时间(APTT)和凝血酶原时间(PT)。结果表明m-SXC表现出优异的体外生物活性,含有10 w%Ca(m-SXC10)的m-SXC表面磷灰石形成超过含有5 w%Ca(n-SXC5)和0%Ca( m-SXC0)在第7天进行细胞反应测试(MTT分析)和细胞形态观察表明,这些材料具有生物相容性,对细胞生存力没有明显的负面影响。此外,具有高表面积的m-SXC(m-SXC0:489.9 m〜2 g〜(-1),m-SXC5:466.5 m〜2 g〜(-1),m-SXC10:438.1 m〜2 g〜(-1))具有良好的止血性能,因为它可以从血液中吸收大量水,从而可以浓缩血液中的成分并减少凝血时间。此外,在m-SXC中添加钙对凝血时间有显着影响,其中APTT(分别为m-SXC0:8 s,m-SXC5:7 s,m-SXC10:6 s)和PT(随着m-SXC中Ca含量的增加,m-SXC0:16 s,m-SXC5:11 s,m-SXC10:10 s缩短),表明Ca掺入m-SXC可以改善其止血活性。

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