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Development of Novel Biodegradable Amino Acid Ester Based Polyphosphazene- Hydroxyapatite Composites for Bone Tissue Engineering

机译:骨组织工程新型生物降解氨基酸酯基多磷酸铁矿石复合材料

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Hydroxyapatite formed from low temperature setting calcium phosphate cements (CPC) are currently been used for various orthopaedic applications. CPCs are attractive candidates for the development of scaffolds for bone tissue engineering, since they are moldable, resorbable, set at physiological temperature without the use of toxic chemicals, and can be processed in an operating room setting. However they may have mechanical disadvantages which seriously limit them to non-load bearing orthopaedic applications. The aim of the present study was to develop composites from polyphosphazenes and calcium deficient hydroxyapatite precursors to form poorly crystalline hydroxyapatite-polymer composites. Composites were formed from calcium deficient hydroxyapatite precursors (Ca/P - 1.5, 1.6) and biodegradable polyphosphazenes, poly[bis(ethyl alanato)phosphazene] (PNEA) and poly[(50%ethyl alanato) (50%methyl phenoxy)phosphazene] (PNEA_(50)mPh_(50)) at physiological temperature. The results demonstrated that poorly crystalline hydroxyapatite that resembled the mineral component of bone was formed in the presence of biodegradable polyphosphazenes. The surface morphology of all the four composites was identical with a porous microstructure. The composites supported the adhesion and proliferation of osteoblast like MC3T3-E1 cells making them potential candidates for bone tissue engineering.
机译:目前用于各种整形外科应用的低温设定磷酸钙水泥(CPC)形成的羟基磷灰石。 CPCS是骨骼组织工程脚手架的有吸引力的候选人,因为它们是可模塑的,可再吸收的,在没有使用有毒化学物质的生理温度下设定,并且可以在手术室设置中加工。然而,它们可能具有机械缺点,这严重限制了它们的非负载轴承骨科应用。本研究的目的是开发来自多磷腈和缺乏羟基磷灰石前体的复合材料,形成良好的羟基磷灰石 - 聚合物复合材料。复合材料由钙缺乏羟基磷灰石前体(Ca / p-1.5,1.6)和可生物降解的多相磷腈,聚[双(乙基丙酸乙酯)磷腈](PNEA)和聚[(50%乙基丙酸乙酯)(50%甲基苯氧基)磷腈]。 (生理温度下PNEA_(50)MPH_(50))。结果表明,在可生物降解的多磷腈存在下,形成了类似于骨矿物成分的结晶羟基磷灰石。所有四个复合材料的表面形态与多孔微观结构相同。复合材料支持骨喷细胞的粘附性和增殖,如MC3T3-E1细胞,使其成为骨组织工程的潜在候选者。

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