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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A facile way to fabricate manganese phosphate self-assembled carbon networks as efficient electrochemical catalysts for real-time monitoring of superoxide anions released from HepG2 cells
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A facile way to fabricate manganese phosphate self-assembled carbon networks as efficient electrochemical catalysts for real-time monitoring of superoxide anions released from HepG2 cells

机译:以磷酸锰自组装碳网络为高效的电化学催化剂,用于从HepG2细胞释放的超氧化物阴离子实时监测的高效电化学催化剂

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AbstractQuantification of superoxide anions (O2??) is significant in the monitoring of many serious diseases and the design of enzyme-mimic catalysts plays the main role in the development of non-enzymatic O2??sensors. Herein, we proposed a facile self-assembly process to synthesize manganese phosphate modified carbon networks using three kinds of widely-used carbon materials (MWCNTs, NGS and GO) as pillar connectors. Characterizations demonstrate that manganese phosphate is widely dispersed inside and on the surface of carbon networks without visible morphology. Meanwhile, all three kinds of synthesized catalysts were successfully immobilized on the screen-printed carbon electrodes to evaluate the electrochemical performance of fabricated sensors. The results indicate that sensors based on Mnx(PO4)ymodified MWCNTs exhibit high sensitivity with an extremely low detection limit of 0.127μM (S/N = 3) and a wide liner range of 0–1.817mM (R2= 0.998). We further employed the recommended sensors in the real-time monitoring of HepG2 cells released O2??under the stimulating of Zymosan (20mg/mL). Noticeably, the proposed sensors exhibit not only sensitive response but also stable current steps upon different addition of Zymosan. The calculated concentrations of cell-released O2??vary from 6.772 to 24.652pM cell?1for the Zymosan amount use
机译:<![cdata [ 抽象 超氧化物阴离子的量化(O 2 ?? )在监测许多严重疾病和酶模拟催化剂的设计中具有重要作用在非酶O 2 ?? 传感器。在此,我们提出了一种容易自组装方法,以合成使用三种广泛使用的碳材料(MWCNT,NGS)作为柱连接器来合成磷酸锰改性碳网络。表征表明,磷酸锰在没有可见形态的情况下广泛分散在碳网络的内部和表面上。同时,所有三种合成催化剂在丝网印刷的碳电极上成功地固定在丝网印刷的碳电极上,以评估制造传感器的电化学性能。结果表明,基于Mn X (PO 4 Y 修改的MWCNTS表现出高灵敏度,极低检测限为0.127μm(S / N = 3),宽衬里范围为0-1.817mm(R 2 = 0.998)。我们进一步使用推荐的传感器在Hepg2单元的实时监测释放O 2 ?? 在Zymosan(20mg / ml)的刺激下。明显的是,所提出的传感器不仅表现出敏感的响应,而且在不同添加唑唑时也稳定的电流步骤。计算浓度的细胞释放o 2 ?? 从6.772变化到24.652pm细胞?1 用于Zymosan金额使用

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