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Hydrothermal Preparation and Characterization of Ultralong Strontium-Substituted Hydroxyapatite Whiskers Using Acetamide as Homogeneous Precipitation Reagent

机译:乙酰胺均相沉淀剂的水热制备超长锶取代羟基磷灰石晶须

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摘要

The ultralong strontium- (Sr-) substituted hydroxyapatite (SrHAp) whiskers were successfully prepared using acetamide as homogeneous precipitation reagent. The effect of the Sr substitution amount on the lattice constants and proliferation of human osteoblast cells (MG-63) was further investigated. The results showed that the SrHAp whiskers with diameter of 0.2–12 μm and ultralong length up to 200 μm were obtained and the Sr substitution level could be facilely tailored by regulating the initial molar ratio of Sr/(Sr + Ca) in raw materials. The Sr2+ replaced part of Ca2+ and the lattice constants increased apparently with the increase of the Sr substitution amount. Compared with the pure HAp whiskers, the Sr substitution apparently stimulated the proliferation of MG-63 at certain extracted concentrations. Our study suggested that the obtained SrHAp whiskers might be used as bioactive and mechanical reinforcement materials for hard tissue regeneration applications.
机译:以乙酰胺为均相沉淀剂,成功制备了超长锶-(Sr-)取代羟基磷灰石(SrHAp)晶须。进一步研究了Sr取代量对人成骨细胞(MG-63)晶格常数和增殖的影响。结果表明,获得的SrHAp晶须直径为0.2–12μm,超长长度可达200​​μm,可以通过调节原料中Sr /(Sr + Ca)的初始摩尔比来轻松定制Sr取代水平。 Sr 2 + 取代了Ca 2 + 的一部分,晶格常数随着Sr取代量的增加而明显增加。与纯HAp晶须相比,Sr取代显然在一定提取浓度下刺激了MG-63的增殖。我们的研究表明,获得的SrHAp晶须可用作硬组织再生应用的生物活性和机械增强材料。

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