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Fabrication of Surfactant-Dispersed HiPco Single-Walled Carbon Nanotube-Based Alginate Hydrogel Composites as Cellular Products

机译:表面活性剂分散的HIPCO单壁碳纳米管藻酸盐水凝胶复合材料的制备作为细胞产物

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摘要

In this study, we designed, synthesized, and characterized ultrahigh purity single-walled carbon nanotube (SWCNT)-alginate hydrogel composites. Among the parameters of importance in the formation of an alginate-based hydrogel composite with single-walled carbon nanotubes, are their varying degrees of purity, their particulate agglomeration and their dose-dependent correlation to cell viability, all of which have an impact on the resultant composite’s efficiency and effectiveness towards cell-therapy. To promote their homogenous dispersion by preventing agglomeration of the SWCNT, three different surfactants-sodium dodecyl sulfate (SDS-anionic), cetyltrimethylammonium bromide (CTAB-cationic), and Pluronic F108 (nonionic)-were utilized. After mixing of the SWCNT-surfactant with alginate, the mixtures were cross-linked using divalent calcium ions and characterized using Raman spectroscopy. Rheometric analysis showed an increase in complex viscosity, loss, and storage moduli of the SWCNT composite gels in comparison with pure alginate gels. Scanning electron microscopy revealed the presence of a well-distributed porous structure, and all SWCNT-gel composites depicted enhanced electrical conductivity with respect to alginate gels. To characterize their biocompatibility, cardiomyocytes were cultured atop these SWCNT-gels. Results comprehensively implied that Pluronic F108 was most efficient in preventing agglomeration of the SWCNTs in the alginate matrix, leading to a stable scaffold formation without posing any toxicity to the cells.
机译:在本研究中,我们设计了合成和表征超高纯度单壁碳纳米管(SWCNT) - alginate水凝胶复合材料。在具有单壁碳纳米管的基于藻酸盐基水凝胶复合材料的重要性的参数中,它们的不同程度的纯度,它们的颗粒聚集和它们与细胞活力的剂量相关的相关性,所有这些都对其产生了影响合成的综合效率和对细胞疗法的有效性。通过防止SWCNT的聚集,三种不同的表面活性剂 - 十二烷基硫酸钠(SDS-阴离子),甲烷基三甲基溴化铵(CTAB-阳离子)和Pluronic F108(非离子) - 使用,以促进其均匀分散体。在用藻酸盐混合SWCNT-表面活性剂之后,使用二价钙离子交联并使用拉曼光谱表征。与纯藻酸盐凝胶相比,流变分析显示SWCNT复合凝胶的复杂粘度,损失和储存模量的增加。扫描电子显微镜显示出存在良好分布的多孔结构,并且所有SWCNT-凝胶复合材料都描绘了相对于藻酸盐凝胶增强的导电性。为了表征其生物相容性,在这些SWCNT-凝胶上培养心肌细胞。结果全面地暗示Pluronic F108在防止藻酸盐基质中的SWCNT的聚集中最有效,导致稳定的支架形成,而不会对细胞构成任何毒性。

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