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用一种对N2-羧乙基-2'-脱氧鸟苷具有特异性的新型单克隆抗体测定人尿中的糖化核碱基。

Determination of glycated nucleobases in human urine by a new monoclonal antibody specific for N2-carboxyethyl-2'-deoxyguanosine.

作者信息

Schneider Marc, Thoss Gerlinde, Hübner-Parajsz Christa, Kientsch-Engel Rose, Stahl Peter, Pischetsrieder Monika

机构信息

Institute of Pharmacy and Food Chemistry, Friedrich-Alexander-University, Schuhstrasse 19, D-91052 Erlangen, Germany.

出版信息

Chem Res Toxicol. 2004 Oct;17(10):1385-90. doi: 10.1021/tx049929d.

Abstract

Sugars and sugar degradation products react in vivo readily with proteins (glycation) resulting in the formation of a heterogeneous group of reaction products, which are called advanced glycation end products (AGEs). AGEs notably change the structure and function of proteins so that extended protein-AGE formation is linked to complications such as nephropathy, atherosclerosis, and cataract. DNA can be glycated in vitro in a similar way as proteins, and the two diastereomers of N(2)-carboxyethyl-2'-deoxyguanosine (CEdG(A,B)) were identified as major DNA AGEs. It was postulated that DNA AGEs play an important role in aging, diabetes, and uremia. However, at the moment, sensitive methods to measure the extent and impact of DNA AGEs in vivo do not exist. In this study, we developed a monoclonal antibody, which recognized CEdG(A,B) with high affinity and specificity (MAb M-5.1.6). The I(50) value for CEdG(A,B) was 2.1 ng/mL, whereas other modified nuclueobases and AGE proteins showed negligible cross-reactivity. Unmodified 2'-deoxyguanosine was only weakly recognized with an I(50) value > 600,000 ng/mL, which is the limit of solubility. MAb M-5.1.6 was then used to measure the urinary excretion of AGE-modified nucleobases in a competitive enzyme-linked immunosorbent assay. The recovery of CEdG(A,B) from human urine was between 87.4 and 99.7% with coefficients of variations between 8.0 and 22.2%. The detection limit was 0.06 ng/mL, and the determination limit was 0.15 ng/mL with a linear range between 0.3 and 100 ng/mL. CEdG equivalents were analyzed in urine samples from 121 healthy volunteers, and concentrations between 1.2 and 117 ng CEdG equiv/mg creatinine were detected.

摘要

糖类及糖降解产物在体内易与蛋白质发生反应(糖基化),从而形成一组异质性的反应产物,这些产物被称为晚期糖基化终末产物(AGEs)。AGEs显著改变蛋白质的结构和功能,因此蛋白质-AGEs的大量形成与诸如肾病、动脉粥样硬化和白内障等并发症相关联。DNA在体外可与蛋白质以类似方式发生糖基化,并且N(2)-羧乙基-2'-脱氧鸟苷(CEdG(A,B))的两种非对映异构体被鉴定为主要的DNA AGEs。据推测,DNA AGEs在衰老、糖尿病和尿毒症中起重要作用。然而,目前尚无灵敏的方法来测定体内DNA AGEs的程度和影响。在本研究中,我们开发了一种单克隆抗体,它以高亲和力和特异性识别CEdG(A,B)(单克隆抗体M-5.1.6)。CEdG(A,B)的半数抑制浓度(I(50))值为2.1 ng/mL,而其他修饰的核苷酸碱基和AGE蛋白质显示出可忽略不计的交叉反应性。未修饰的2'-脱氧鸟苷仅被微弱识别,I(50)值>600,000 ng/mL,这是其溶解度极限。然后,单克隆抗体M-5.1.6被用于在竞争性酶联免疫吸附测定中测量AGE修饰的核苷酸碱基的尿排泄量。从人尿中回收CEdG(A,B)的回收率在87.4%至99.7%之间,变异系数在8.0%至22.2%之间。检测限为0.06 ng/mL,测定限为0.15 ng/mL,线性范围在0.3至100 ng/mL之间。对121名健康志愿者的尿液样本分析了CEdG当量,检测到的浓度在1.2至117 ng CEdG当量/毫克肌酐之间。

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