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Phase transformations, microstructure formation and in vitro osteoblast response in calcium silicate/brushite cement composites

机译:硅酸钙/硬硅酸盐水泥复合材料的相变,微观结构形成和体外成骨反应

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Self-setting simple calcium silicate/brushite (B) biocements with various Ca/P ratios were prepared by mutual mixing of both monocalcium silicate hydrate (CSH) or beta-wollastonite (woll) powders with B and the addition of 2 wt% NaH2PO4 solution as a hardening liquid. The phase composition of the final composites and the texture of the surface calcium phosphate/silica layer were controlled by the starting Ca/P ratio in composites and the pH during setting. It was verified that the presence of continuous bone-like calcium phosphate coating on the surface of the samples was not essential for in vitro osteoblast proliferation. The nanocrystalline calcium deficient hydroxyapatite and amorphous silica were found as the main setting products in composite mixtures with a Ca/P ratio close to the region of the formation of deficient hydroxyapatite-like calcium phosphates. No CSH phase with a lower Ca/Si ratio was identified after transformation. The results confirmed a small effect of the monocalcium silicate addition on the compressive strength (CS) of cements up to 30 wt% (around 20-25 MPa) and a significant rise of the value in 50 woll/B cement (65 MPa). The final setting times of the cement composites varied between 5 and 43 min depending on the P/L ratio and the type of monocalcium silicate phase in the cement mixture. 10CSH/B and 50 woll/B cements with different textures but free of both the needle-like and perpendicularly-oriented hydroxyapatite particles on the surface of the samples had low cytotoxicity.
机译:通过将单水合硅酸钙(CSH)或β-硅灰石(woll)粉末与B相互混合并添加2 wt%NaH2PO4溶液,制备具有各种Ca / P比的自凝型简单硅酸钙/钙铝石(B)生物水泥作为硬化液。最终复合材料的相组成和表面磷酸钙/二氧化硅层的织构由复合材料中的起始Ca / P比和凝固过程中的pH值控制。证实了样品表面上连续骨样磷酸钙涂层的存在对于体外成骨细胞增殖不是必需的。纳米晶钙缺乏羟基磷灰石和无定形二氧化硅被发现为复合混合物中的主要凝固产物,其Ca / P比接近于缺乏羟基磷灰石状磷酸钙形成区域。转变后未发现具有较低Ca / Si比的CSH相。结果证实,单硅酸钙的添加对水泥的抗压强度(CS)的影响很小,水泥的抗压强度(CS)高达30 wt%(约20-25 MPa),并且在50 woll / B水泥(65 MPa)中其值显着提高。水泥复合材料的最终凝固时间在5到43分钟之间变化,具体取决于水泥混合物中的P / L比和单硅酸钙相的类型。 10CSH / B和50 woll / B水泥具有不同的质地,但在样品表面均不含针状和垂直取向的羟基磷灰石颗粒,具有较低的细胞毒性。

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