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淀粉膜中掺入多壁和羟基化多壁碳纳米管的功能特性、润湿性和细胞毒性。

Functional characteristics, wettability properties and cytotoxic effect of starch film incorporated with multi-walled and hydroxylated multi-walled carbon nanotubes.

机构信息

Research Institute of Food Science and Technology (RIFST), Mashhad, Iran.

Department of Chemistry, Islamic Azad University, Quchan Branch, Iran.

出版信息

Int J Biol Macromol. 2017 Nov;104(Pt A):597-605. doi: 10.1016/j.ijbiomac.2017.06.031. Epub 2017 Jun 8.

Abstract

Two types of multi-walled carbon nanotubes (CNT and CNT-OH) at different levels (0.1-0.9wt%) were introduced into starch matrix in order to modify its functional properties. The optimum concentration of each nanotube was selected based on the results of water solubility, water permeability and mechanical experiments. The physico-mechanical data showed that CNT up to 0.7wt% led to a notable increase in water resistance, water barrier property and tensile strength, whilst regarding CNT-OH, these improvements found at 0.9wt%. Therefore, effects of optimized level of each nanotube on the starch film were evaluated by XRD, surface hydrophobicity, wettability and surface energy tests. XRD revealed that the position of starch characteristic peak shifted to higher degree after nanotubes introducing. The hydrophobic character of the film was greatly increased with incorporation of nanoparticles, as evidenced by increased contact angle with greatest value regarding CNT-OH. Moreover, CNT-OH notably decreased the surface free energy of the starch film. Finally, the conformity of both nanocomposites with actual food regulations on biodegradable materials was tested by cytotoxicity assay to evaluate the possibility of application in food packaging sector. Both nanocomposite films had potential of cytotoxic effects, since they could increase cytoplasmic lactate dehydrogenase release from L-929 fibroblast cells in contact with their surface.

摘要

两种类型的多壁碳纳米管(CNT 和 CNT-OH)在不同水平(0.1-0.9wt%)下被引入到淀粉基质中,以改变其功能特性。根据水溶性、水渗透性和机械实验的结果,选择了每种纳米管的最佳浓度。物理力学数据表明,高达 0.7wt%的 CNT 导致抗水能力、水阻隔性能和拉伸强度显著提高,而对于 CNT-OH,则在 0.9wt%时发现这些改进。因此,通过 XRD、表面疏水性、润湿性和表面能测试评估了每种纳米管的最佳水平对淀粉膜的影响。XRD 表明,引入纳米管后,淀粉特征峰的位置向更高的程度移动。纳米粒子的加入极大地增加了薄膜的疏水性,这一点可以通过接触角的增加得到证明,而 CNT-OH 的接触角最大。此外,CNT-OH 显著降低了淀粉膜的表面自由能。最后,通过细胞毒性测定来测试这两种纳米复合材料与实际食品可生物降解材料法规的符合性,以评估它们在食品包装领域应用的可能性。这两种纳米复合材料薄膜都有可能产生细胞毒性作用,因为它们可以增加与表面接触的 L-929 成纤维细胞细胞质中乳酸脱氢酶的释放。

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