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Implantable Microprobe with Arrayed Microsensors for Combined Amperometric Monitoring of the Neurotransmitters Glutamate and Dopamine

机译:可植入微探针具有阵列微传感器用于组合神经递质谷氨酸和多巴胺的舒适监测

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摘要

An implantable, micromachined microprobe with a microsensor array for combined monitoring of the neurotransmitters, glutamate (Glut) and dopamine (DA), by constant potential amperometry has been created and characterized. Microprobe studies in vitro revealed Glut and DA microsensor sensitivities of 126±5 nA·μM−1·cm−2 and 3250±50 nA·μM−1·cm−2, respectively, with corresponding detection limits of 2.1±0.2 μM and 62±8 nM, both at comparable ~1 sec response times. No diffusional interaction of H2O2 among arrayed microelectrodes was observed. Also, no responses from the electroactive interferents, ascorbic acid (AA), uric acid (UA), DOPA (a DA catabolite) or DOPAC (a DA precursor), over their respective physiological concentration ranges, were detected. The dual sensing microbe attributes of size, detection limit, sensitivity, response time and selectivity make it attractive for combined sensing of Glut and DA in vivo.
机译:已经创建并表征了一种带有微传感器阵列的可植入微加工微探针,用于通过恒电位安培法对神经递质,谷氨酸(Glut)和多巴胺(DA)进行组合监测。体外微探针研究显示,Glut和DA微传感器的灵敏度分别为126±5 nA·μM -1 ·cm −2 和3250±50 nA·μM -1 < / sup>·cm −2 分别具有2.1±0.2μM和62±8 nM的相应检测极限,两者的响应时间均为可比较的〜1秒。没有观察到H2O2在排列的微电极之间的扩散相互作用。而且,在各自的生理浓度范围内,未检测到电活性干扰物,抗坏血酸(AA),尿酸(UA),DOPA(DA分解代谢物)或DOPAC(DA前体)​​的响应。双重感测微生物的大小,检测限,灵敏度,响应时间和选择性都使其在体内联合检测Glut和DA具有吸引力。

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