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首页> 外文期刊>Journal of biomedical materials research, Part A >Effect of doping in carbon nanotubes on the viability of biomimetic chitosan-carbon nanotubes-hydroxyapatite scaffolds
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Effect of doping in carbon nanotubes on the viability of biomimetic chitosan-carbon nanotubes-hydroxyapatite scaffolds

机译:碳纳米管中掺杂对仿生壳聚糖-碳纳米管-羟基磷灰石支架活性的影响

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摘要

This work describes the preparation and characterization of biomimetic chitosan/multiwall carbon nanotubesano-hydroxyapatite (CTS/MWCNTHAp) scaffolds and their viability for bone tissue engineering applications. The cryogenic process ice segregation-induced self-assembly (ISISA) was used to fabricate 3D biomimetic CTS scaffolds. Proper combination of cryogenics, freeze-drying, nature and molecular ratio of solutes give rise to 3D porous interconnected scaffolds with clusters of nHAp distributed along the scaffold surface. The effect of doping in CNT (e.g. with oxygen and nitrogen atoms) on cell viability was tested. Under the same processing conditions, pore size was in the range of 20-150 μm and irrespective on the type of CNT. Studies on cell viability with scaffolds were carried out using human cells from periosteum biopsy. Prior to cell seeding, the immunophenotype of mesenchymal periosteum or periosteum-derived stem cells (MSCs-PCs) was characterized by flow cytometric analysis using fluorescence-activated and characteristic cell surface markers for MSCs-PCs. The characterized MSCs-PCs maintained their periosteal potential in cell cultures until the 2nd passage from primary cell culture. Thus, the biomimetic CTS/MWCNTHAp scaffolds demonstrated good biocompatibility and cell viability in all cases such that it can be considered as promising biomaterials for bone tissue engineering.
机译:这项工作描述了仿生壳聚糖/多壁碳纳米管/纳米羟基磷灰石(CTS / MWCNT / nHAp)支架的制备和表征,以及它们在骨组织工程应用中的可行性。低温过程中冰分离诱导的自组装(ISISA)用于制造3D仿生CTS支架。低温,冷冻干燥,溶质的性质和分子比的正确组合会产生3D多孔互连支架,nHAp簇沿支架表面分布。测试了掺杂在CNT中(例如用氧和氮原子)对细胞活力的影响。在相同的加工条件下,孔径大小在20-150μm范围内,而与CNT的类型无关。使用骨膜活检的人类细胞进行了支架细胞存活力的研究。在细胞接种之前,通过流式细胞术分析使用间充质骨膜或骨膜来源的干细胞(MSCs-PCs)的免疫表型,该流式细胞术分析使用了MSCs-PCs的荧光激活和特征性细胞表面标记。表征的MSCs-PC在原代细胞培养的第2代之前一直保持其在细胞培养中的骨膜潜能。因此,仿生CTS / MWCNT / nHAp支架在所有情况下均表现出良好的生物相容性和细胞生存力,因此可以被认为是用于骨组织工程的有前途的生物材料。

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