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Low temperature formation of hydroxyapatite-poly(alkyl oxybenzoate)phosphazene composites for biomedical applications.

机译:用于生物医学应用的羟基磷灰石-聚(氧基苯甲酸烷基酯)磷腈复合材料的低温形成。

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The formation of biodegradable composites which may be suitable as bone analogs is described. Polyphosphazene-hydroxyapatite (HAp) composites were produced via an acid-base reaction of tetracalcium phosphate and anhydrous dicalcium phosphate in the presence of polyphosphazenes bearing alkyl ester containing side-groups. The polyphosphazenes used were poly(ethyl oxybenzoate)phosphazene (PN-EOB) and poly(propyl oxybenzoate) phosphazene (PN-POB). The effects of temperature and the proportions of polymers, PN-EOB and PN-POB on the kinetics, reaction chemistry and phase evolution during the formation of stoichiometric HAp were studied. Kinetics, phase evolution and microstructural development were evaluated using isothermal calorimetry, X-ray diffraction and scanning electron microscopy, respectively. Analysis of solution chemistry revealed that the increases in the pH during the formation of SHAp, resulted in partial hydrolysis of the polymer surfaces, which led in turn to the formation of a calcium cross-linked polymer surface. The calcium cross-linked polymer surface appeared to facilitate the nucleation and growth of apatite deposits on the polymer. The current study illustrates the in situ formation of HAp in the presence of polyphosphazenes, where HAp is chemically bonded to the polymer.
机译:描述了适合作为骨类似物的可生物降解的复合物的形成。聚磷腈-羟基磷灰石(HAp)复合材料是通过磷酸四钙和无水磷酸二钙在带有含烷基酯的侧基的聚磷腈存在下的酸碱反应制得的。所使用的聚磷腈是聚(氧苯甲酸乙酯)磷腈(PN-EOB)和聚(氧苯甲酸丙酯)磷腈(PN-POB)。研究了化学计量HAp形成过程中温度和聚合物比例,PN-EOB和PN-POB对动力学,反应化学和相演化的影响。分别使用等温量热法,X射线衍射和扫描电子显微镜对动力学,相演化和微观结构发展进行了评估。溶液化学分析表明,SHAp形成过程中pH升高,导致聚合物表面部分水解,进而导致形成钙交联的聚合物表面。钙交联的聚合物表面似乎促进了聚合物上磷灰石沉积物的成核和生长。当前的研究说明了在聚磷腈存在下原位形成HAp的情况,其中HAp与聚合物化学键合。

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