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Three-Dimensional-Printed Electrochemical Sensor for Simultaneous Dual Monitoring of Serotonin Overflow and Circular Muscle Contraction

机译:三维印刷电化学传感器,用于同时进行血清素溢流和圆肌收缩的双重监测

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摘要

Serotonin (5-HT) is a key signaling molecule within the mucosal epithelium of the intestinal wall and has been shown to be an important modulator of motility. At present, no single approach has been established for simultaneous dual measurement of 5-HT overflow and circular muscle contraction. We developed a 3D-printed carbon black/polylactic acid (PLA) electrochemical sensor, which had a geometry suitable for ex vivo measurement in the anorectum. The device was characterized for sensitivity and stability for 5-HT measurements as well as suitability for accurate tracking of anorectal contractions. The 3D-printed electrochemical sensor had a linear range in physiological concentrations of 5-HT (1-10 mu M) present within the intestinal tract and a limit of detection of 540 nM. The sensor was stable for 5-HT measurement following ex vivo tissue measurements. There was a signficant correlation in the amplitude and duration of individual contractions when comparing the measurements using an isometric force transducer and 3D-printed electrochemical sensor. Finally, in the presence of 1 mu M fluoxetine, the sensor was able to monitor a reduction in contractility as well as an increase in 5- HT overflow as predicted. Overall, the 3D-printed sensor has the ability to conduct dual simultaneous measurements of 5-HT overflow and contractility. This single device will have significant potential for clinical measurements of anorectum function and signaling that can direct therapeutic management of patients with bowel disorders.
机译:血清素(5-HT)是肠壁上皮内的粘膜上皮内的关键信号分子,并且已被证明是一种重要的运动调节剂。目前,没有建立单一方法,用于同时进行5-HT溢出和圆形肌肉收缩。我们开发了一种3D印刷的炭黑/聚乳酸(PLA)电化学传感器,其几何形状适于在肛门肠中的exvivo测量。该装置的特征在于5-HT测量的灵敏度和稳定性,以及用于准确跟踪肛肠收缩的适用性。 3D印刷电化学传感器在肠道内存在的5-HT(1-10μm)的生理浓度的线性范围和540nm的检测限。在离体组织测量后,传感器稳定为5-HT测量。在使用等距力换能器和3D印刷电化学传感器比较测量时,各个收缩的幅度和持续时间存在迹象相关性。最后,在1 mu m氟苯甲酸的存在下,传感器能够监测收缩力的减少以及预测的5-HT溢出的增加。总的来说,3D印刷传感器能够进行5-HT溢出和收缩性的双同时测量。这种单一器件将具有显着的临床测量临床测量的临床测量和信号传导,可以直接对肠疾病患者的治疗管理。

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  • 来源
    《Analytical chemistry》 |2019年第18期|共7页
  • 作者单位

    Univ Brighton Sch Pharm &

    Biomol Sci Brighton BN2 4GJ E Sussex England;

    Univ Brighton Sch Comp Engn &

    Math Brighton BN2 4GJ E Sussex England;

    Univ Brighton Sch Pharm &

    Biomol Sci Brighton BN2 4GJ E Sussex England;

    Univ Brighton Sch Comp Engn &

    Math Brighton BN2 4GJ E Sussex England;

    Univ Brighton Sch Pharm &

    Biomol Sci Brighton BN2 4GJ E Sussex England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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