TY - JOUR
T1 - Development of a stopped flow reactor for the rapid, high sensitivity measurement of endotoxin concentration in dialysate
AU - Miyasaka, Takehiro
AU - Iijima, Kaori
AU - Sakai, Kiyotaka
AU - Yoshimi, Yasuo
AU - Aketagawa, Jun
AU - Tamura, Hiroshi
AU - Tanaka, Shigenori
N1 - Copyright:
Copyright 2017 Elsevier B.V., All rights reserved.
PY - 1999
Y1 - 1999
N2 - Continuous measurement of endotoxin concentration in dialysate, using a separated endotoxin-specific limulus reagent, promises rapid measurement without the complex operating procedures of the limulus reagent. To achieve high sensitivity measurements in a short period of time, an improved system featuring stopped-flow operation was developed. To prevent dispersion of the limulus reagent and residence of reacting solution containing the limulus reagent in the system reactor, the circuit in the reactor was changed from a coil configuration to a straight line, and its length was reduced. An endotoxin test solution was supplied at 760 μl/min, into which 40 μl of limulus reagent was pulse-injected. Flow was stopped at the point where the test solution entered the reactor. After the completion of the reaction, the solution was passed through a spectrophotometer and the relationship between reaction time and absorbance was determined. Peak tailing was less than that obtained by the conventional technique, good correlation was obtained from the peak height, and a decrease in sensitivity caused by broadening of the peak was suppressed. The lower detection limit of dialysate was 100 endotoxin units (EU)/L at a reaction time of 20 minutes, and 60 EU/L at 30 minutes. Change from the monitoring system to stop-flow operation made high sensitivity monitoring of endotoxin concentration with a short reaction time possible.
AB - Continuous measurement of endotoxin concentration in dialysate, using a separated endotoxin-specific limulus reagent, promises rapid measurement without the complex operating procedures of the limulus reagent. To achieve high sensitivity measurements in a short period of time, an improved system featuring stopped-flow operation was developed. To prevent dispersion of the limulus reagent and residence of reacting solution containing the limulus reagent in the system reactor, the circuit in the reactor was changed from a coil configuration to a straight line, and its length was reduced. An endotoxin test solution was supplied at 760 μl/min, into which 40 μl of limulus reagent was pulse-injected. Flow was stopped at the point where the test solution entered the reactor. After the completion of the reaction, the solution was passed through a spectrophotometer and the relationship between reaction time and absorbance was determined. Peak tailing was less than that obtained by the conventional technique, good correlation was obtained from the peak height, and a decrease in sensitivity caused by broadening of the peak was suppressed. The lower detection limit of dialysate was 100 endotoxin units (EU)/L at a reaction time of 20 minutes, and 60 EU/L at 30 minutes. Change from the monitoring system to stop-flow operation made high sensitivity monitoring of endotoxin concentration with a short reaction time possible.
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U2 - 10.1097/00002480-199901000-00023
DO - 10.1097/00002480-199901000-00023
M3 - Article
C2 - 9952018
AN - SCOPUS:0032601375
SN - 1058-2916
VL - 45
SP - 104
EP - 108
JO - ASAIO Journal
JF - ASAIO Journal
IS - 1
ER -