A flow injection microdialysis sampling chemiluminescence system for in vivo on-line monitoring of glucose in intravenous and subcutaneous tissue fluid microdialysates
被引:47
作者:
Fang, Q
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机构:NORTHEASTERN UNIV,DEPT CHEM,FLOW INJECT ANAL RES CTR,SHENYANG 110006,PEOPLES R CHINA
Fang, Q
Shi, XT
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机构:NORTHEASTERN UNIV,DEPT CHEM,FLOW INJECT ANAL RES CTR,SHENYANG 110006,PEOPLES R CHINA
Shi, XT
Sun, YQ
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机构:NORTHEASTERN UNIV,DEPT CHEM,FLOW INJECT ANAL RES CTR,SHENYANG 110006,PEOPLES R CHINA
Sun, YQ
Fang, ZL
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机构:NORTHEASTERN UNIV,DEPT CHEM,FLOW INJECT ANAL RES CTR,SHENYANG 110006,PEOPLES R CHINA
Fang, ZL
机构:
[1] NORTHEASTERN UNIV,DEPT CHEM,FLOW INJECT ANAL RES CTR,SHENYANG 110006,PEOPLES R CHINA
[2] CHINA MED UNIV,SHENYANG 110001,PEOPLES R CHINA
[3] SHENYANG PHARMACEUT UNIV,SHENYANG 110015,PEOPLES R CHINA
A novel now injection on-line microdialysis system for in vivo monitoring of glucose in subcutaneous tissue fluid and blood is described, An implantable loop-type microdialysis probe was used for subcutaneous sampling, and a flow-through microdialyzer was used for intravenous sampling by pumping of the blood from the tested rabbit through the microdialyzer located outside the living system at a now rate of 10 mu L/min. The perfusion rate of the dialysate was 20 mu L/min. The glucose in the dialysate was detected on-line with a now injection chemiluminescence system after passing through an immobilized glucose oxidase reactor. The calibration of the detector system (including reader) and monitoring of baseline drifts were performed simultaneously to improve the reliability of the monitoring process. The dialysate sample volume was 20 mu L, and the sample throughput was 28 h(-1). The variation of glucose level in subcutaneous tissue fluid and blood of the rabbits was monitored after the administration of glucose or insulin to demonstrate the favorable resolution and reliability of the system for in vivo on-line monitoring.