Highly Biocompatible Graphite Electrodes by Using Interface‐Stable Coating and the Application to Hemodialysis

材料科学 生物相容性 石墨 涂层 电极 电导率 复合材料 生物医学工程 冶金 化学 医学 物理化学
作者
Xinkai Xu,Yi Xu,Haitao Guo,Zanxin Zhou,Wenjie Hu,Leilei Wang,Shuang Li,Shugang Wang,Xu Zheng,Qi Gu,Yuan Xia,Jingqiang Cui,Guosheng Wang,Yewang Su
出处
期刊:Advanced materials and technologies [Wiley]
卷期号:9 (22)
标识
DOI:10.1002/admt.202400305
摘要

Abstract In the treatment of kidney diseases such as chronic kidney disease (CKD) and acute tubular necrosis (ATN), prolonged contact between conductivity sensors and patients' bodily fluids is required, necessitating high biocompatibility for the electrodes. However, the widely used graphite electrodes exhibit limited biocompatibility, showing a cell survival rate of only 88% under indirect contact conditions, and <56% under direct contact conditions. Here, the surface detachment of graphite electrodes in liquid environments leading to cell death upon contact is observed and a solution is proposed to enhance biocompatibility and ensure conductivity, by forming a layer of interface‐stable coating (ISC) as a conductive isolation membrane on their surface. For applications with contact requirements, graphite‐like carbon (GLC) coated graphite electrodes are investigated and developed, resulting in an exceptional cell survival rate exceeding 96% under indirect contact conditions, and a relatively high survival rate exceeding 91% under direct contact conditions, both accompanied by significant proliferation. GLC‐coated graphite electrodes are successfully to monitor the dialysate conductivity in a hemodialysis machine and achieve stable monitoring with temperature compensation. The results demonstrate ISC graphite electrodes' potential in biomedical fluid monitoring, with the developed process applicable to other fields.
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