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Carbon Nanofibers in Pure Form and in Calcium Alginate Composites Films: New Cost-Effective Antibacterial Biomaterials against the Life-Threatening Multidrug-Resistant Staphylococcus epidermidis

机译:碳纳米纤维的纯净形式和藻酸钙复合材料薄膜:新型的具有成本效益的抗菌生物材料可抵抗威胁生命的耐多药表皮葡萄球菌

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摘要

Due to the current global health problem of antibiotic resistant recently announced by the World Health Organization, there is an urgent necessity of looking for new alternative antibacterial materials able to treat and impede multidrug-resistant infections which are cost-effective and non-toxic for human beings. In this regard, carbon nanofibers (CNFs) possess currently much lower cost than other carbon nanomaterials, such as graphene oxide, and exhibit excellent chemical, mechanical and electric properties. Furthermore, here, the first report on the antibacterial activity of CNFs was demonstrated. Thus, these nanomaterials, in pure form or incorporated in a minuscule amount into calcium alginate composite films to reduce production costs as much as possible, showed to be new weapons against a globally spreading multidrug-resistant pathogen, the methicillin-resistant Staphylococcus epidermidis (MRSE). This Gram-positive bacterium is becoming one of the most dangerous pathogens, due to its abundance on skin. In this study, these hollow filamentous materials, in direct contact with cells and loaded in the low-cost calcium alginate composite films, showed no cytotoxicity for human keratinocyte HaCaT cells, which render them very promising for biomedical applications. The CNFs used in this work were characterized by Raman spectroscopy and observed by high-resolution transmission electron with energy-disperse X-ray spectroscopy.
机译:由于世界卫生组织最近宣布的当前全球耐药性全球卫生问题,迫切需要寻找能够治疗和阻止对人类具有成本效益且无毒的耐多药感染的新型替代抗菌材料。众生。在这方面,碳纳米纤维(CNFs)目前比其他碳纳米材料(例如氧化石墨烯)具有更低的成本,并且具有出色的化学,机械和电性能。此外,在这里,首次证明了CNF的抗菌活性。因此,这些纳米材料以纯净形式或以极少量掺入海藻酸钙复合膜中以尽可能降低生产成本,被证明是对抗全球耐药菌的新病原体,即耐甲氧西林的表皮葡萄球菌(MRSE) )。由于这种革兰氏阳性细菌在皮肤上的含量很高,因此正成为最危险的病原体之一。在这项研究中,这些中空的丝状材料与细胞直接接触并装载在低成本的藻酸钙复合膜中,对人角质形成细胞HaCaT细胞没有细胞毒性,这使其在生物医学应用中非常有前途。这项工作中使用的CNF通过拉曼光谱进行表征,并通过具有能量色散X射线光谱的高分辨率透射电子进行观察。

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