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2,3,5-氯化三苯基四氮唑作为杀菌剂动力学研究的新工具

2,3,5-Triphenyltetrazolium chloride as a novel tool in germicide dynamics.

作者信息

Hurwitz S J, McCarthy T J

出版信息

J Pharm Sci. 1986 Sep;75(9):912-6. doi: 10.1002/jps.2600750920.

Abstract

A novel, colorimetric method using 2,3,5-triphenyltetrazolium chloride (TTC) in tandem with membrane filtration is described for the determination of death rates of Escherichia coli (E. coli) due to microbiocides. This method enables results to be obtained on the same day in contrast to the 18 h required by the accepted aerobic plate count method. The microbiocides investigated were the preservatives 2-bromo-2-nitro-1,3-propanediol (Bronopol), N-(hydroxymethyl)-N-(1,3-dihydroxymethyl-2,5- dioxo-4-imidazolidinyl)-N'-(hydroxymethyl)-urea (Germall II), phenethyl alcohol, and benzyl alcohol. D values (time required per log reduction of E coli) were determined by this method, and equations relating the D values to preservative concentrations were derived [i.e., eta values (the logarithmic values relating changes in rates of kill for specified changes in concentration) and A values (extrapolated D values at 1% concentration) were determined]. these equations are compared with those previously published using the accepted aerobic plate count method. The potential advantages of this method are that it has a broad range of application as TTC is reduced by a wide variety of microbes; the test is easily done; results can be achieved in one day; dead cells do not cause interference; test sensitivity can be increased by increasing the length of incubation time or by using membrane filtration in tandem with TTC reduction; and preservative inactivation may be achieved by filtration and flushing with an inactivator, or by adding neutralizers to the TTC broth.

摘要

本文描述了一种新颖的比色法,该方法使用氯化三苯基四氮唑(TTC)并结合膜过滤技术来测定杀菌剂导致的大肠杆菌(E. coli)死亡率。与公认的需氧平板计数法所需的18小时相比,此方法能够在同一天获得结果。所研究的杀菌剂为防腐剂2-溴-2-硝基-1,3-丙二醇(布罗波尔)、N-(羟甲基)-N-(1,3-二羟甲基-2,5-二氧代-4-咪唑烷基)-N'-(羟甲基)-脲(杰马II)、苯乙醇和苯甲醇。通过该方法测定了D值(大肠杆菌每减少一个对数所需的时间),并推导了将D值与防腐剂浓度相关联的方程[即确定了η值(浓度特定变化时杀灭率变化的对数值)和A值(1%浓度下的外推D值)]。将这些方程与先前使用公认的需氧平板计数法发表的方程进行了比较。该方法的潜在优势在于,由于TTC可被多种微生物还原,其应用范围广泛;测试操作简便;一天内即可获得结果;死细胞不会产生干扰;可通过延长孵育时间或结合TTC还原使用膜过滤来提高测试灵敏度;并且可通过过滤并用灭活剂冲洗,或向TTC肉汤中添加中和剂来实现防腐剂的灭活。

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