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首页> 外文期刊>Journal of Cancer Research and Clinical Oncology >Measurement of 4-hydroxylation of ifosfamide in human liver microsomes using the estimation of free and protein-bound acrolein and codetermination of keto- and carboxyifosfamide.
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Measurement of 4-hydroxylation of ifosfamide in human liver microsomes using the estimation of free and protein-bound acrolein and codetermination of keto- and carboxyifosfamide.

机译:使用估计的游离和结合蛋白质的丙烯醛以及酮基和羧基异环磷酰胺的共价测定,测定人肝微粒体中异环磷酰胺的4-羟基化。

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摘要

AbstractPURPOSE. The aim of the present study was to determine the turnover (4-hydroxylation and N-dechloroethylation) of ifosfamide in a total of 25 human liver microsomal preparations in which the codetermination of keto- and carboxyifosfamide as well as the calculation of free and protein-bound acrolein was carried out for the first time.METHODS. The 4-hydroxylation of ifosfamide was estimated by using acrolein (free and protein-bound) and a newly developed procedure involving the codetermination of keto- and carboxyifosfamide (LC/MS). The ifosfamide N-dechloroethylation was determined as the sum of 2- and 3-dechloroethylifosfamide (LC/MS).RESULTS. Using the usual estimation of liberated free acrolein in 25 human liver microsomal preparations, the 4-hydroxylation of ifosfamide amounted to 0.28+/-0.16 nmol/min. nmol(P450). However, after calculating the 4-hydroxylation as the sum of free and protein-bound acrolein and keto- and carboxyifosfamide, a ninefold higher activity (2.40+/-0.73 nmol/min. nmol(P450)) was found. The percentage of the inactive metabolites keto- (25/25) and carboxyifosfamide (5/25) in the 4-hydroxylation amounted to only 0.79-5.25% (mean 2.90%). The ifosfamide N-dechloroethylation (mean 0.21+/-0.11 nmol/min. nmol(P450)) determined as the sum of 2- and 3-dechloroethylifosfamide was estimated as 8.3+/-4.3% of the total ifosfamide turnover. The application of the relative substrate-activity factor (RSF)-approach and the calculation of the contribution of various isoforms in the ifosfamide 4-hydroxylation yielded the following results: CYP 3A4: 58+/-31%, CYP 2A6: 25+/-15%, and CYP 2C9: 5+/-2% of the total measured 4-hydroxylation. A correlation between 4-hydroxylation and the N-dechloroethylation rates of ifosfamide and the activities of isoenzymes indicates the involvement of both CYP 3A4 ( P=0.026) and CYP 2C9 ( P=0.012) in the 4-hydroxylation reaction and of CYP 3A4 ( P<0.01) in the N-dechloroethylation reaction.CONCLUSIONS. The estimation of protein-bound acrolein should be included in the calculation of the ifosfamide 4-hydroxylation besides liberated free acrolein. Because of the small amounts of the inactive metabolites keto- and carboxyifosfamide, the exclusive determination of acrolein only (free and protein-bound) seems to suffice for the calculation of total ifosfamide hydroxylation. Using this method the hepatic in vitro turnover of ifosfamide was estimated as 92% for 4-hydroxylation (CYP 3A4 and CYP 2A6 mediated) and 8% for N-dechloroethylation (CYP 3A4 mediated), and in this way, a relative overestimation of the N-dechloroethylation of ifosfamide on the whole metabolism is avoided.
机译:摘要目的。本研究的目的是确定总共25种人肝微粒体制剂中异环磷酰胺的周转率(4-羟基化和N-脱氯乙基化),其中酮体和羧基异环磷酰胺的共价键合以及游离和蛋白质的计算首次进行结合丙烯醛的方法。异环磷酰胺的4-羟基化是通过使用丙烯醛(游离的且与蛋白质结合)和一种新开发的方法进行的,该方法涉及酮基和羧异磷酰胺的共价终止作用(LC / MS)。将异环磷酰胺N-脱氯乙基化确定为2-和3-脱氯乙基环磷酰胺的总和(LC / MS)。使用25种人肝微粒体制剂中释放的游离丙烯醛的通常估计值,异环磷酰胺的4-羟基化量为0.28 +/- 0.16nmol / min。 nmol(P450)。但是,在将4-羟基化计算为游离和结合蛋白的丙烯醛与酮基和羧异磺酰胺的总和后,发现其活性提高了九倍(2.40 +/- 0.73 nmol / min。nmol(P450))。在4-羟基化反应中,非活性代谢物酮-(25/25)和羧异磺酰胺(5/25)的比例仅为0.79-5.25%(平均为2.90%)。估计的异环磷酰胺N-脱氯乙基化(平均0.21 +/- 0.11 nmol / min。nmol(P450))是异环磷酰胺总转换量的8.3 +/- 4.3%,估计为2-和3-脱氯乙基异磷酰胺的和。相对底物活性因子(RSF)方法的应用以及异环磷酰胺4-羟基化中各种同工型的贡献的计算得出以下结果:CYP 3A4:58 +/- 31%,CYP 2A6:25 + / -15%,而CYP 2C9:占总测得的4-羟基化水平的5 +/- 2%。异环磷酰胺的4-羟基化和N-脱氯乙基化速率与同工酶活性之间的相关性表明CYP 3A4(P = 0.026)和CYP 2C9(P = 0.012)参与了4-羟基化反应和CYP 3A4(P = 0.012)。 P <0.01)在N-脱氯乙基化反应中。结论。除释放的游离丙烯醛外,应将蛋白质结合的丙烯醛的估计值包括在异环磷酰胺4-羟基化的计算中。由于少量的非活性代谢物酮和羧异环磷酰胺,仅丙烯醛(游离和结合蛋白质)的测定似乎足以计算异环磷酰胺的总羟基化程度。使用这种方法,估计异环磷酰胺在肝脏中的体外转化率为4-羟基化(CYP 3A4和CYP 2A6介导)为92%,N-脱氯乙基化(CYP 3A4介导)为8%,因此这种方法的相对高估避免了异环磷酰胺在整个代谢过程中的N-脱氯乙基化。

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