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Rapid, low cost prototyping of transdermal devices for personal healthcare monitoring.用于个人医疗监测的透皮设备的快速、低成本原型制作。
Sens Biosensing Res. 2017 Apr;13:104-108. doi: 10.1016/j.sbsr.2016.10.004.
2
Microneedle Enzyme Sensor Arrays for Continuous In Vivo Monitoring.用于连续体内监测的微针酶传感器阵列
Methods Enzymol. 2017;589:413-427. doi: 10.1016/bs.mie.2017.02.002. Epub 2017 Mar 7.
3
A kanamycin sensor based on an electrosynthesized molecularly imprinted poly-o-phenylenediamine film on a single-walled carbon nanohorn modified glassy carbon electrode.一种基于在单壁碳纳米角修饰玻碳电极上电合成分子印迹聚邻苯二胺膜的卡那霉素传感器。
Analyst. 2016 Dec 19;142(1):218-223. doi: 10.1039/c6an02338j.
4
A highly selective electrochemical sensor for chloramphenicol based on three-dimensional reduced graphene oxide architectures.一种基于三维还原氧化石墨烯结构的用于氯霉素的高选择性电化学传感器。
Talanta. 2016 Dec 1;161:567-573. doi: 10.1016/j.talanta.2016.09.013. Epub 2016 Sep 4.
5
Molybdenum disulfide nanosheets coated multiwalled carbon nanotubes composite for highly sensitive determination of chloramphenicol in food samples milk, honey and powdered milk.二硫化钼纳米片包覆多壁碳纳米管复合材料用于食品样品(牛奶、蜂蜜和奶粉)中氯霉素的高灵敏度测定
J Colloid Interface Sci. 2017 Jan 1;485:129-136. doi: 10.1016/j.jcis.2016.09.029. Epub 2016 Sep 14.
6
Advanced Sensing of Antibiotics with Magnetic Gold Nanocomposite: Electrochemical Detection of Chloramphenicol.磁性金纳米复合材料对抗生素的高级传感:氯霉素的电化学检测
Chemistry. 2016 Sep 26;22(40):14279-84. doi: 10.1002/chem.201602434. Epub 2016 Aug 16.
7
Integrated hollow microneedle-optofluidic biosensor for therapeutic drug monitoring in sub-nanoliter volumes.集成中空微针-光流控生物传感器,用于亚纳升级别体积的治疗药物监测。
Sci Rep. 2016 Jul 6;6:29075. doi: 10.1038/srep29075.
8
Green synthesized gold nanoparticles decorated graphene oxide for sensitive determination of chloramphenicol in milk, powdered milk, honey and eye drops.绿色合成的金纳米粒子修饰氧化石墨烯用于灵敏测定牛奶、奶粉、蜂蜜和滴眼液中的氯霉素。
J Colloid Interface Sci. 2016 Aug 1;475:46-56. doi: 10.1016/j.jcis.2016.04.044. Epub 2016 Apr 27.
9
Signal-on electrochemical detection of antibiotics at zeptomole level based on target-aptamer binding triggered multiple recycling amplification.基于靶标适体结合引发的多重循环扩增的纳摩尔级抗生素的信号电化学检测
Biosens Bioelectron. 2016 Jun 15;80:471-476. doi: 10.1016/j.bios.2016.02.014. Epub 2016 Feb 6.
10
Understanding the mechanisms and drivers of antimicrobial resistance.理解抗菌药物耐药性的机制和驱动因素。
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迈向用于人体β-内酰胺监测的微创设备。

Towards a minimally invasive device for beta-lactam monitoring in humans.

作者信息

Rawson Timothy Miles, Sharma Sanjiv, Georgiou Pantelis, Holmes Alison, Cass Anthony, O'Hare Danny

机构信息

National Institute for Health Research Health Protection Research Unit in Healthcare Associated Infections and Antimicrobial Resistance, Imperial College London, Hammersmith Campus, Du Cane Road, London. W12 0NN. United Kingdom.

Department of Chemistry & Institute of Biomedical Engineering, Imperial College London, London, SW7 2AZ, United Kingdom.

出版信息

Electrochem commun. 2017 Sep;82:1-5. doi: 10.1016/j.elecom.2017.07.011.

DOI:10.1016/j.elecom.2017.07.011
PMID:31031564
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6485621/
Abstract

Antimicrobial resistance is a leading patient safety issue. There is a need to develop novel mechanisms for monitoring and subsequently improving the precision of how we use antibiotics. A surface modified microneedle array was developed for monitoring beta-lactam antibiotic levels in human interstitial fluid. The sensor was fabricated by anodically electrodepositing iridium oxide (AEIROF) onto a platinum surface on the microneedle followed by fixation of beta-lactamase enzyme within a hydrogel. Calibration of the sensor was performed to penicillin-G in buffer solution (PBS) and artificial interstitial fluid (ISF). Further calibration of a platinum disc electrode was undertaken using amoxicillin and ceftriaxone. Open-circuit potentials were performed and data analysed using the Hill equation and log(concentration [M]) plots. The microneedle sensor demonstrated high reproducibility between penicillin-G runs in PBS with mean K (±1SD) = 0.0044 ± 0.0013 M and mean slope function of log(concentration plots) 29 ± 1.80 mV/decade (r=0.933). Response was reproducible after 28 days storage at 4°C. In artificial ISF, the sensors response was K (±1SD) = 0.0077 ± 0.0187 M and a slope function of 34 ± 1.85 mv/decade (r=0.995). Our results suggest that microneedle array based beta-lactam sensing may be a future application of this AEIROF based enzymatic sensor.

摘要

抗菌药物耐药性是一个主要的患者安全问题。有必要开发新的机制来监测并随后提高我们使用抗生素的精准度。一种表面改性的微针阵列被开发用于监测人体组织间液中的β-内酰胺类抗生素水平。该传感器通过将氧化铱阳极电沉积(AEIROF)到微针上的铂表面,然后将β-内酰胺酶固定在水凝胶中制成。传感器在缓冲溶液(PBS)和人工组织间液(ISF)中针对青霉素-G进行了校准。使用阿莫西林和头孢曲松对铂盘电极进行了进一步校准。进行了开路电位测量,并使用希尔方程和对数(浓度[M])图对数据进行了分析。微针传感器在PBS中青霉素-G的多次测量之间显示出高重现性,平均K(±1SD)= 0.0044 ± 0.0013 M,对数(浓度图)的平均斜率函数为29 ± 1.80 mV/十倍(r = 0.933)。在4°C储存28天后响应具有重现性。在人工ISF中,传感器的响应为K(±1SD)= 0.0077 ± 0.0187 M,斜率函数为34 ± 1.85 mv/十倍(r = 0.995)。我们的结果表明基于微针阵列的β-内酰胺传感可能是这种基于AEIROF的酶传感器的未来应用方向。