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Chitosan-hydroxyapatite macroporous matrix for bone tissue engineering

机译:壳聚糖-羟基磷灰石大孔基质用于骨组织工程

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In recent years, bone tissue engineering which involves cells, three-dimensional (3-D) matrix and/or recombinant signalling molecules has been extensively studied to find an ideal bone implant. The scaffold for bone tissue engineering should be porous to allow mass transfer at high rate along with mechanical property in par with bone structure to ensure integrity of neo-tissue. In this work, we have combined well-known hydroxyapatite (Ca-10(PO4)(6)(OH)(2); HA) and chitosan that provides ideal surface chemistry for its osteoblast attachment and enhances mineralization and is known for its osteoconductive and osteoinductive properties. We have synthesized chitosan hydroxyapatite (CH HA) macroporous scaffold, in simple two-step process, using freeze-drying technique. Scanning electron microscope analysis showed macroporous architecture with interconnected pores. EMAX testing for elemental analysis clearly indicated presence of calcium, phosphorus and sodium along with oxygen and nitrogen in the scaffold. The Fourier's transmission infrared spectroscopy (FTIR) examination showed chemical bonding between both the polymers. To further evaluate 3-D profiling of CH HA scaffold, rheological testing was performed which showed no significant change in G', G '' and phase angle proving mechanical stability of the material which was able to bear stress without leading to deformation. Human osteoblast seeded on CH HA matrices showed enhanced cellular proliferation and viability for longer period of time. Increased mineral deposition was examined using alkaline phosphatase assay which confirmed that CH HA scaffold provided conducive environment for osteoblast proliferation and mineral deposition. The mechanical properties and microarchitecture of the scaffold were found to be ideal for bone tissue engineering.
机译:近年来,已经广泛研究了涉及细胞,三维(3-D)基质和/或重组信号分子的骨组织工程,以找到理想的骨植入物。用于骨组织工程的支架应该是多孔的,以允许大量的质量转移以及与骨骼结构同等的机械性能,以确保新组织的完整性。在这项工作中,我们结合了著名的羟基磷灰石(Ca-10(PO4)(6)(OH)(2); HA)和壳聚糖,壳聚糖为其成骨细胞的附着提供理想的表面化学作用,并增强矿化作用,并因其具有骨传导性而闻名和骨诱导特性。我们使用冷冻干燥技术,通过简单的两步过程合成了壳聚糖羟基磷灰石(CH HA)大孔支架。扫描电子显微镜分析显示大孔结构具有相互连接的孔。元素分析的EMAX测试清楚地表明支架中存在钙,磷和钠以及氧和氮。傅立叶透射红外光谱(FTIR)检查显示两种聚合物之间的化学键合。为了进一步评估CH HA支架的3-D轮廓,进行了流变测试,结果表明G',G''和相角没有明显变化,证明了该材料的机械稳定性,能够承受应力而不导致变形。播种在CH HA基质上的人类成骨细胞在更长的时间内显示出增强的细胞增殖能力和生存能力。使用碱性磷酸酶测定法检查增加的矿物质沉积,这证实了CH HA支架为成骨细胞增殖和矿物质沉积提供了有利的环境。发现该支架的机械性能和微结构是骨组织工程的理想选择。

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