MINIATURIZED MULTIENZYME BIOSENSORS INTEGRATED WITH PH SENSORS ON FLEXIBLE POLYMER CARRIERS FOR INVIVO APPLICATIONS

被引:52
作者
URBAN, G
JOBST, G
KEPLINGER, F
ASCHAUER, E
TILADO, O
FASCHING, R
KOHL, F
机构
[1] Institut für allgemeine Elektrotechnik und Elektronik, L. Boltzmann-Institut für biomedizinische Mikrotechnik, Hirnkreislaufforschung. Technische Universität Wien, 1040 Wien
关键词
ENZYMATIC GLUCOSE SENSOR; INTEGRATED AND MINIATURIZED THIN-FILM SENSORS; PHOTOSTRUCTURABLE ENZYME MEMBRANES; HYDROGELS; SOLID-STATE THIN-FILM PH SENSOR;
D O I
10.1016/0956-5663(92)85056-G
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
An electrochemical glucose sensor has been integrated, together with a pH sensor, on a flexible polyimide substrate for in vivo applications. The glucose sensor is based on the measurement of H2O2 produced by the membrane-entrapped enzyme glucose oxidase (GOD). To minimize electrochemical interference, an electrode configuration was designed to perform differential measurements. The solid-state pH sensor employs a PVC-based neutral carrier membrane. The enzymes GOD and catalase were immobilized into two layers of photolithographically patterned hydrogels. The intended use of this device is the short-term monitoring of glucose and pH in intensive care units and operating theatres, especially for neurosurgical applications. The developed immobilization technique can also be used to create integrated multi-sensor chips for clinical analysers. The glucose and pH sensor exhibited excellent performance during tests in buffer solutions, serum and whole blood.
引用
收藏
页码:733 / 739
页数:7
相关论文
共 21 条
[1]  
AMMANN D, 1983, ION SEL ELECTRODE R, V5, P3
[2]  
ANZAI J, 1987, CHEM PHARM BULL, V35, P693
[3]   CORTICAL EVOKED-POTENTIAL AND EXTRACELLULAR K+ AND H+ AT CRITICAL LEVELS OF BRAIN ISCHEMIA [J].
ASTRUP, J ;
SYMON, L ;
BRANSTON, NM ;
LASSEN, NA .
STROKE, 1977, 8 (01) :51-57
[4]   DESIGN AND APPLICATION OF THICK-FILM MULTISENSORS [J].
HAMPP, N ;
EPPELSHEIM, C ;
POPP, J ;
BISENBERGER, M ;
BRAUCHLE, C .
SENSORS AND ACTUATORS A-PHYSICAL, 1992, 31 (1-3) :144-148
[5]   INTEGRATED MULTI-BIOSENSORS BASED ON AN ION-SENSITIVE FIELD-EFFECT TRANSISTOR USING PHOTOLITHOGRAPHIC TECHNIQUES [J].
HANAZATO, Y ;
NAKAKO, M ;
SHIONO, S ;
MAEDA, M .
IEEE TRANSACTIONS ON ELECTRON DEVICES, 1989, 36 (07) :1303-1310
[6]   INTEGRATED DIFFERENTIAL ENZYME SENSORS USING HYDROGEN AND FLUORIDE-ION SENSITIVE MULTIGATE FETS [J].
HINTSCHE, R ;
DRANSFELD, I ;
SCHELLER, F ;
PHAM, MT ;
HOFFMANN, W ;
HUELLER, J ;
MORITZ, W .
BIOSENSORS & BIOELECTRONICS, 1990, 5 (04) :327-334
[7]  
JOBST G, 1993, IN PRESS BIOSENSORS
[8]  
Keplinger F, 1990, Biomed Tech (Berl), V35 Suppl 2, P96, DOI 10.1515/bmte.1990.35.s2.96
[9]  
KIMURA J, 1988, BIOSENSORS, V4, P41
[10]   PLANAR AMPEROMETRIC ENZYME-BASED GLUCOSE MICROELECTRODE [J].
KOUDELKA, M ;
GERNET, S ;
DEROOIJ, NF .
SENSORS AND ACTUATORS, 1989, 18 (02) :157-165