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用于尿液核酸加合物组学的优化两步固相萃取方法的开发

Development of an Optimized Two-Step Solid-Phase Extraction Method for Urinary Nucleic Acid Adductomics.

作者信息

Keidel Alexandra, Virzi Jazmine, Deloso Laura, Möller Carolina, Chaput Dale, Evans-Nguyen Theresa, Chang Yuan-Jhe, Chao Mu-Rong, Hu Chiung-Wen, Cooke Marcus S

机构信息

Oxidative Stress Group, Department of Molecular Biosciences, University of South Florida, Tampa, FL 33620, USA.

Department of Chemistry, University of South Florida, Tampa, FL 33620, USA.

出版信息

Biomolecules. 2025 Apr 17;15(4):594. doi: 10.3390/biom15040594.

Abstract

The exposome represents the totality of endogenous and exogenous exposures across the lifespan. These exposures may result in DNA and RNA damage, in the form of adducts, which is a key factor in the etiology of a variety of human diseases, including cancer. It is understood that, following their repair, nucleic acid adducts are excreted into the urine, making urine an ideal, non-invasive matrix in which to study the whole-body nucleic acid adductome (the totality of nucleic acid adducts). However, the measurement of these adducts in urine presents challenges due to matrix interference and the variety of the chemical nature across the spectrum of nucleic adducts making their "one-size-fits-all" extraction by solid-phase extraction (SPE) challenging. Here, different types of SPE sorbents, and their combination, were evaluated for maximal recovery of nucleic acid adducts from urine. The SPE column combination of ENV+ coupled with PHE provided the best retention of a cocktail of 20 nucleic acid adduct standards. An untargeted high resolution mass spectrometry approach incorporating FeatureHunter 1.3 software was used to demonstrate the ability of this SPE method to successfully recover endogenous urinary nucleic acid adducts in addition to those represented by the cocktail of isotopically labeled standards. Using our approach, FeatureHunter 1.3 recognized approximately 500 adducts in both mouse and human urine samples. Isotopically labeled standards were used to identify a selection of the endogenous adducts and begin the characterization of the urinary nucleic acid adductome of mice and humans.

摘要

暴露组代表了个体一生中内源性和外源性暴露的总和。这些暴露可能导致DNA和RNA损伤,形成加合物,这是包括癌症在内的多种人类疾病病因中的一个关键因素。据了解,核酸加合物在修复后会排泄到尿液中,这使得尿液成为研究全身核酸加合物组(核酸加合物的总和)的理想非侵入性基质。然而,由于基质干扰以及核酸加合物光谱范围内化学性质的多样性,使得通过固相萃取(SPE)对其进行“一刀切”的提取具有挑战性,因此在尿液中测量这些加合物存在困难。在此,对不同类型的SPE吸附剂及其组合进行了评估,以实现从尿液中最大程度地回收核酸加合物。ENV+与PHE联用的SPE柱组合对20种核酸加合物标准品的混合物保留效果最佳。采用结合FeatureHunter 1.3软件的非靶向高分辨率质谱方法,证明了该SPE方法除了能成功回收同位素标记标准品混合物所代表的加合物外,还能成功回收内源性尿核酸加合物。使用我们的方法,FeatureHunter 1.3在小鼠和人类尿液样本中识别出了大约500种加合物。同位素标记标准品用于鉴定部分内源性加合物,并开始对小鼠和人类的尿核酸加合物组进行表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b09f/12024844/d0e679bb1318/biomolecules-15-00594-g001.jpg

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