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氧化石墨烯和壳聚糖生物聚合物负载二氧化钛用于抗菌和防腐研究。

The graphene oxide and chitosan biopolymer loads TiO for antibacterial and preservative research.

作者信息

Xu Weirui, Xie Wenjie, Huang Xiaoquan, Chen Xu, Huang Na, Wang Xin, Liu Jie

机构信息

Department of Chemistry, Jinan University, Guangzhou 510632, China.

Department of Chemistry, Jinan University, Guangzhou 510632, China.

出版信息

Food Chem. 2017 Apr 15;221:267-277. doi: 10.1016/j.foodchem.2016.10.054. Epub 2016 Oct 17.

Abstract

Microorganism breeding is a known cause of food spoilage and disease transmission. Aspergillus niger (A. niger) and Bacillus subtilis (B. subtilis) are examples of microorganisms that cause deterioration of fresh fruits and vegetables during storage, which can be a serious threat to human health. In this work, we synthesized a self-assembled film of graphene oxide (GO) and chitosan (CS) biopolymers with titanium dioxide (TiO) nanoparticles embedded in its surface. We then characterized its antibacterial and preservative properties. We found that these non-cytotoxic nanometer-scale films, especially when the ratio of graphene oxide, chitosan and titanium dioxide nanoparticles in the nanocomposites is 1:20:4, exhibited high antibacterial activity against the biofilm-forming strains A. niger and B. subtilis. The preservation capacity of the nanocomposites was evaluated by enzymatic experiments. The nanocomposites did not show any cytotoxicity against mammalian somatic cells and plant cells. Altogether, this work demonstrated that the nanocomposites disrupted microbial film formation while avoiding internalization by animal and plant cells. Due to their selectivity and safety, these nanocomposites demonstrate potential as antimicrobial coatings for food preservation.

摘要

微生物滋生是食品变质和疾病传播的一个已知原因。黑曲霉(A. niger)和枯草芽孢杆菌(B. subtilis)是导致新鲜水果和蔬菜在储存期间变质的微生物实例,这可能对人类健康构成严重威胁。在这项工作中,我们合成了一种氧化石墨烯(GO)和壳聚糖(CS)生物聚合物的自组装膜,其表面嵌入了二氧化钛(TiO)纳米颗粒。然后我们对其抗菌和保鲜性能进行了表征。我们发现这些无细胞毒性的纳米级薄膜,特别是当纳米复合材料中氧化石墨烯、壳聚糖和二氧化钛纳米颗粒的比例为1:20:4时,对形成生物膜的菌株黑曲霉和枯草芽孢杆菌表现出高抗菌活性。通过酶促实验评估了纳米复合材料的保鲜能力。纳米复合材料对哺乳动物体细胞和植物细胞未表现出任何细胞毒性。总之,这项工作表明,纳米复合材料破坏了微生物膜的形成,同时避免了被动物和植物细胞内化。由于其选择性和安全性,这些纳米复合材料显示出作为食品保鲜抗菌涂层的潜力。

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