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菊粉的自动化酶促分析

Automated enzymatic analysis of inulin.

作者信息

Summerfield A L, Hortin G L, Smith C H, Wilhite T R, Landt M

机构信息

Department of Pathology, Washington University School of Medicine, St. Louis Children's Hospital, MO 63110.

出版信息

Clin Chem. 1993 Nov;39(11 Pt 1):2333-7.

PMID:8222231
Abstract

We have developed an automated enzymatic assay for quantitation of inulin in plasma and urine that can be performed on the Cobas FARA II. In the assay, inulinase hydrolyzes inulin to fructose, and sorbitol dehydrogenase converts fructose to sorbitol with consumption of NADH, which is detected by spectrophotometry. The method incorporates a sample blank (inactivated inulinase) for each specimen to subtract contributions of endogenous fructose. Recovery of fructose or inulin was near 100%, with linearity to 300 mg/L. The enzymatic assay (y) agreed well with an anthrone comparison method (x) for analysis of inulin in both urine specimens (y = 1.00x - 138; Sy/x = 714) and plasma specimens (y = 1.00x - 3.5; Sy/x = 5.5). Glucose at 300 mg/L yielded an apparent inulin value of 1.3 mg/L in the enzymatic assay, but reacted at nearly 10% equivalency in the anthrone assay. Interferences from sorbitol, mannitol, and xylitol were negligible. CVs for day-to-day precision studies were 1-4%. The automated enzymatic assay of inulin is faster and avoids the use of caustic reagents required by the classical anthrone method.

摘要

我们开发了一种用于定量血浆和尿液中菊粉的自动化酶法检测,该检测可在Cobas FARA II上进行。在该检测中,菊粉酶将菊粉水解成果糖,山梨醇脱氢酶将果糖转化为山梨醇并消耗NADH,通过分光光度法检测NADH。该方法为每个样本设置了样本空白(灭活菊粉酶),以减去内源性果糖的贡献。果糖或菊粉的回收率接近100%,线性范围达300 mg/L。酶法检测(y)与蒽酮比较法(x)在尿液样本(y = 1.00x - 138;Sy/x = 714)和血浆样本(y = 1.00x - 3.5;Sy/x = 5.5)中菊粉分析方面一致性良好。在酶法检测中,300 mg/L的葡萄糖产生的表观菊粉值为1.3 mg/L,但在蒽酮检测中的反应当量接近10%。山梨醇、甘露醇和木糖醇的干扰可忽略不计。日常精密度研究的变异系数为1 - 4%。菊粉的自动化酶法检测速度更快,且避免了经典蒽酮法所需的腐蚀性试剂的使用。

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