首页> 外文期刊>Designed Monomers and Polymers: An International Journal on Monomer and Macromolecular Synthesis >Fabrication and characterization of chitosan-gelatinanohydroxyapatite-polyaniline composite with potential application in tissue engineering scaffolds
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Fabrication and characterization of chitosan-gelatinanohydroxyapatite-polyaniline composite with potential application in tissue engineering scaffolds

机译:壳聚糖-明胶/纳米羟基磷灰石-聚苯胺复合材料的制备与表征及其在组织工程支架中的潜在应用

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In this study to further improve surface characteristics of tissue engineering scaffolds, a novel composite based on chitosan-gelatinanohydroxyapatite-polyaniline (CS-GelHA-PANI) was prepared by blending the synthesized nHA and PANI with chitosan and gelatin solution followed by lyophilization technique. The prepared composite scaffold was characterized using Fourier transform infrared spectroscopy, X-ray diffraction, and scanning electron microscopy techniques. The effects of nHA and PANI on the physicochemical properties of the scaffold including swelling ratio, density, biodegradation, biomineralization, and mechanical behavior were investigated. The composite scaffold was highly porous with the mean pore size of 200 μm. Compared with CS-Gel and CS-GelHA scaffolds, the CS-GelHA-PANI scaffold exhibited lower degradation rate and higher biomineralization and mechanical strength. Preliminary evaluation of the biocompatibility and cytotoxicity of the CS-GelHA-PANI composite scaffold was performed by MTT assay using bovine leukemia virus fetal lamb kidney cell line (BLV-FLK) and then cell attachment studies were assessed using dental pulp stem cells. Results indicated no toxicity, and cells attached and proliferated on the pore surfaces of the scaffold. These findings suggested that the developed scaffold possess the prerequisites and can be used as a scaffold for hard tissues regeneration. Kchitosan;; gelatin;; nanohydroxyapatite;; polyaniline;; scaffold;; tissue engineering
机译:为了进一步改善组织工程支架的表面特性,通过将合成的nHA和PANI与壳聚糖和明胶溶液共混,制备了一种基于壳聚糖-明胶/纳米羟基磷灰石-聚苯胺的新型复合材料(CS-Gel / nHA-PANI)冻干技术。使用傅立叶变换红外光谱,X射线衍射和扫描电子显微镜技术对制备的复合支架进行表征。研究了nHA和PANI对支架的理化性质的影响,包括溶胀率,密度,生物降解,生物矿化和力学行为。复合支架高度多孔,平均孔径为200μm。与CS-Gel和CS-Gel / nHA-PANI支架相比,CS-Gel / nHA-PANI支架表现出更低的降解速率和更高的生物矿化度和机械强度。使用牛白血病病毒胎羊肾细胞系(BLV-FLK)通过MTT分析对CS-Gel / nHA-PANI复合支架的生物相容性和细胞毒性进行了初步评估,然后使用牙髓干细胞评估了细胞附着研究。结果表明没有毒性,并且细胞附着并在支架的孔表面上增殖。这些发现表明开发的支架具有先决条件,并且可用作硬组织再生的支架。 K 壳聚糖;;明胶;;纳米羟基磷灰石;聚苯胺;;脚手架;;组织工程

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