Justin Gusphyl, Finley Stephen, Abdur Rahman Abdur Rub, Guiseppi-Elie Anthony
Center for Bioelectronics, Biosensors and Biochips (C3B), Clemson University Advanced Materials Center, 100 Technology Drive, Anderson, SC 29625, USA.
Biomed Microdevices. 2009 Feb;11(1):103-15. doi: 10.1007/s10544-008-9214-3.
Our interest is in the development of engineered microdevices for continuous remote monitoring of intramuscular lactate, glucose, pH and temperature during post-traumatic hemorrhaging. Two important design considerations in the development of such devices for in vivo diagnostics are discussed; the utility of micro-disc electrode arrays (MDEAs) for electrochemical biosensing and the application of biomimetic, bioactive poly(HEMA)-based hydrogel composites for implant biocompatibility. A poly(HEMA)-based hydrogel membrane containing polyethylene glycol (PEG) was UV cross-linked with tetraethyleneglycol diacrylate following application to MDEAs (50 mum discs) and to 250 mum diameter gold electrodes within 8-well culture ware. Cyclic voltammetry (CV) of the MDEAs revealed a reduction in the apparent diffusion coefficient of ferrocenemonocarboxylic acid (FcCO(2)H), from 6.68 x 10(-5) to 6.74 x 10(-6) cm(2)/s for the uncoated and 6 mum thick hydrogel coated devices, respectively. Single frequency (4 kHz) temporal impedance measurements of the hydrogels in the 8-well culture ware showed a reversible 5% change in the absolute impedance of the hydrogels when exposed to a pH change between 6.1 to 7.2 and a 20% drop between pH 6.1 and 8.8.
我们感兴趣的是开发工程化微型设备,用于在创伤后出血期间连续远程监测肌肉内的乳酸、葡萄糖、pH值和温度。本文讨论了开发此类用于体内诊断的设备时的两个重要设计考量;微盘电极阵列(MDEAs)在电化学生物传感中的效用,以及基于仿生、生物活性聚(甲基丙烯酸羟乙酯)的水凝胶复合材料在植入物生物相容性方面的应用。将含有聚乙二醇(PEG)的基于聚(甲基丙烯酸羟乙酯)的水凝胶膜应用于MDEAs(50μm圆盘)和8孔培养皿中直径为250μm的金电极后,用四乙二醇二丙烯酸酯进行紫外交联。MDEAs的循环伏安法(CV)显示,对于未涂层和6μm厚水凝胶涂层的设备,二茂铁单羧酸(FcCO₂H)的表观扩散系数分别从6.68×10⁻⁵降至6.74×10⁻⁶cm²/s。对8孔培养皿中的水凝胶进行单频(4kHz)时间阻抗测量表明,当暴露于pH值从6.1变化到7.2时,水凝胶的绝对阻抗有5%的可逆变化,而在pH值从6.1到8.8之间下降了20%。