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Hyperthermia response of PEGylated magnetic graphene nanocomposites for heating applications and accelerate antibacterial activity using magnetic fluid hyperthermia

机译:聚乙二醇化磁性石墨烯纳米复合材料的热疗响应,用于加热应用和使用磁性流体热疗加速抗菌活性

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In this research work, graphene/cobalt nanocomposites are functionalized with polyethylene glycol (PEG) to be a platform for theranostics application and antibacterial activity. The non-covalent functionalization of PEG on the surfaces of nanocomposites improved their stability and diminished their cytotoxicity. The PEGylated nanocomposites are demonstrated to allow simultaneous administration of two cancer therapy methods such as magnetic fluids hyperthermia (MFH) which is carried out by converting magnetic energy into heat through ferromagnetic cobalt nanoparticles and heat generation through near-infrared optical absorption by the reduced graphene oxide. A concise simulation is carried out to approximate in vivo conditions and provide a glimpse of practical PEGylated nanocomposites performance. Furthermore, we demonstrate the antimicrobial activity of the PEGylated nanocomposites against Gram-negative Escherichia coli bacteria under alternative current magnetic field (AMF). The graphene/cobalt/PEG (rGO/Co/PEG) nanocomposites show antibacterial activity toward E. coli bacteria of about 100%, when the bacteria intact with nanocomposites are placed under AMF for 15 min. For comparison, the antimicrobial activities of graphene/PEG sheets and cobalt/PEG nanoparticles are also checked. This study concentrates on the design of novel non-toxic PEGylated nanocomposites to be used for dual hyperthermia therapy and bacteria killing by MFH treatments.
机译:在该研究工作中,将石墨烯/钴纳米复合材料用聚乙二醇(PEG)官能化,是用于治疗施用和抗菌活性的平台。 PEG对纳米复合材料表面上的非共价官能化改善了它们的稳定性并降低了它们的细胞毒性。证明了聚乙烯化纳米复合材料以允许通过将磁能通过铁磁钴纳米颗粒和通过近红氧化物氧化物的近红外光学吸收来加热到热量来进行两种癌症治疗方法,例如磁性流体热疗(MFH)。 。在体内条件下进行简洁的模拟,并提供实际的聚乙二醇化纳米复合材料性能的一瞥。此外,我们在替代电流磁场(AMF)下,证明了Pegymated纳米复合材料对革兰阴性大肠杆菌细菌的抗微生物活性。当与纳米复合材料完整的细菌置于AMF下15分钟,当纳米复合物的细菌完整时,石墨烯/钴/ PEG(RGO / CO / PEG)纳米复合材料显示出约100%的大肠杆菌细菌的抗菌活性。为了进行比较,还检查石墨烯/ PEG片材和钴/ PEG纳米粒子的抗微生物活性。本研究专注于新型无毒聚乙二醇化纳米复合材料的设计,用于使用MFH治疗的双重热疗治疗和细菌。

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