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Influence of sodium alginate and methylcellulose on hydrolysis and physicochemical properties of alpha-TCP based materials

机译:藻酸钠和甲基纤维素对基于α-TCP材料水解和物理化学性质的影响

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摘要

The effect of the sodium alginate and methylcellulose modifiers on hydrolysis, setting reaction, microstructure, mechanical and in vitro properties of alpha-TCP based materials was investigated. It was found that the presence of sodium alginate impeded alpha-TCP hydrolysis to hydroxyapatite, which may have a significant influence on resorbability, biodegradation and biological behavior of biomaterials. There were several reasons for these phenomena, such as: (I) the gelation of sodium alginate in the presence of Ca2+, (II) the creation of an organic layer which impedes the diffusion of water molecules to alpha-TCP and (III) the uptake of water molecules by sodium alginate. The inhibitory effect was not observed for methylcellulose and it was diminished in simulated body fluid. Additionally, it was demonstrated that the examined cements varied in their microstructure, setting times and compressive strengths, depending on the applied kind of a polymer additive. The cement containing sodium alginate had a higher compressive strength (20 +/- 8 MPa) than the one with methylcellulose (17 +/- 4 MPa) and the one lacking polymer (14 +/- 4 MPa). All the developed materials exhibited high bioactivity in vitro.
机译:研究了藻酸钠和甲基纤维素改性剂对水解,设定反应,微观结构,机械和体外性质的影响。发现藻酸钠的存在阻抗α-TCP水解对羟基磷灰石,这可能对生物材料的可再吸收性,生物降解和生物学行为产生显着影响。这些现象有几个原因,例如:(i)在Ca2 +的存在下藻酸钠的凝胶化凝胶化的凝胶化产生有机层,其将水分子扩散到α-TCP和(iii)中通过海藻酸钠吸收水分子。对于甲基纤维素未观察到抑制作用,并且在模拟体液中减少。另外,证明,取决于涂覆的聚合物添加剂的种类,所检查的水泥在微观结构,设定时间和抗压强度中变化。含有藻酸钠的水泥具有比具有甲基纤维素(17 +/- 4MPa)的压缩强度(20 +/- 8MPa)和缺少聚合物(14 +/- 4MPa)的水泥。所有发发材料在体外表现出高生物活性。

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