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Functionalized Vertically Super-Aligned Multiwalled Carbon Nanotubes for Potential Biomedical Applications

机译:功能化垂直超对准的多壁碳纳米管用于潜在的生物医学应用

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摘要

Currently, there is a lack of ultrasensitive diagnostic tool to detect some diseases such as ischemic stroke, thereby impacting effective and efficient intervention for such diseases at an embryonic stage. In addition to the lack of proper detection of the neurological diseases, there is also a challenge in the treatment of these diseases. Carbon nanotubes have a potential to be employed in solving the theragnostic challenges in those diseases. In this study, carbon nanotubes were successfully synthesized for potential application in the detection and treatment of the neurological diseases such as ischemic stroke. Vertically aligned multiwalled carbon nanotubes (VA-MWCNTs) were purified with HCl, carboxylated with H SO :HNO (3:1) and acylated with SOCl for use in potential targeting studies and for the design of a carbon-based electrode for possible application in the diagnosis of neurological diseases, including ischemic stroke. MWCNTs were washed, extracted from the filter membranes and dried in a vacuum oven at 60 °C for 24 h prior to functionalization and PEGylation. CNTs were characterized by SEM, TEM, OCA, DLS, CV and EIS. The HCl-treated CNT obtained showed an internal diameter, outer diameter and thickness of 8 nm, 34 nm and 75 µm, while these parameters for the H SO -HNO -treated CNT were 8 nm, 23 nm and 41µm, respectively. PEGylated CNT demonstrated zeta potential, polydispersive index and particle size distribution of 6 mV, 0.41 and 98 nm, respectively. VA-MWCNTs from quartz tube were successfully purified, carboxylated, acylated and PEGylated for potential functionalization for use in targeting studies. For designing the carbon-based electrode, VA-MWCNTs on silicon wafer were successfully incorporated into epoxy resin for diagnostic applications. Functionalized MWCNTs were nontoxic towards PC-12 neuronal cells. In conclusion, vertically super-aligned MWCNTs have been successfully synthesized and functionalized for possible theragnostic biomedical applications in neurological disorders such as ischemic stroke.
机译:当前,缺乏用于检测某些疾病例如缺血性中风的超灵敏诊断工具,从而影响了在胚胎期对此类疾病的有效干预。除了缺乏对神经系统疾病的正确检测之外,在治疗这些疾病方面也存在挑战。碳纳米管具有解决这些疾病的鼻甲挑战的潜力。在这项研究中,成功​​地合成了碳纳米管,可用于检测和治疗缺血性中风等神经系统疾病。垂直排列的多壁碳纳米管(VA-MWCNTs)用HCl纯化,用H SO:HNO(3:1)羧化并用SOCl酰化,用于潜在的靶向研究和设计碳基电极,可能用于诊断神经系统疾病,包括缺血性中风。洗涤MWCNT,从滤膜中提取,并在60°C的真空烘箱中干燥24小时,然后进行功能化和PEG化。通过SEM,TEM,OCA,DLS,CV和EIS对CNT进行了表征。得到的经HCl处理的CNT的内径,外径和厚度分别为8nm,34nm和75μm,而经H SO -HNO处理的CNT的这些参数分别为8nm,23nm和41μm。聚乙二醇化的CNT的zeta电位,多分散指数和粒径分布分别为6 mV,0.41和98 nm。来自石英管的VA-MWCNTs已成功纯化,羧化,酰化和PEG化,具有潜在的功能化能力,可用于靶向研究。为了设计碳基电极,已将硅晶片上的VA-MWCNT成功地结合到环氧树脂中用于诊断应用。功能化的MWCNTs对PC-12神经元细胞无毒。总之,已经成功地合成了垂直超取向的MWCNTs并对其进行了功能化,以用于在诸如缺血性中风等神经系统疾病中的吻合生物医学应用。

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