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基于液相色谱-质谱联用(LC-MS)的静电场轨道阱代谢组学,采用新型两性离子亲水作用液相色谱法及严格的代谢物鉴定,揭示了阿霉素诱导的乳腺癌细胞代谢紊乱。

LC-MS Orbitrap-based metabolomics using a novel hybrid zwitterionic hydrophilic interaction liquid chromatography and rigorous metabolite identification reveals doxorubicin-induced metabolic perturbations in breast cancer cells.

作者信息

Abdelrazig Salah, McCabe Áine, Yasin Alia, Chaudhary Rajneil, Ochsenkühn Michael A, Scicchitano David, Amin Shady A

机构信息

Marine Microbiomics Lab, Biology Program, New York University Abu Dhabi (NYUAD) P.O. Box 129188 Abu Dhabi United Arab Emirates

Mubadala ACCESS, New York University Abu Dhabi (NYUAD) P.O. Box 129188 Abu Dhabi United Arab Emirates.

出版信息

RSC Adv. 2025 Jun 19;15(26):20745-20759. doi: 10.1039/d5ra01044f. eCollection 2025 Jun 16.

Abstract

The identification of metabolites in biological samples presents a challenge in untargeted metabolomics, mainly due to limited databases and inadequate chromatography. Current LC columns suffer from high pH instability (silica-based), low efficiencies and pressure limitations (polymer-based), or inadequate retention of polar/semi-polar metabolites (reverse-phase). In this study, a comprehensive LC-MS workflow was developed to address these limitations using a novel zwitterionic HILIC (Z-HILIC), high-resolution MS, deep-scan data-dependent acquisition (DDA), and a large chemical library comprising 990 standards. The method performance was evaluated and compared with a widely-used ZIC-HILIC method. Z-HILIC detected 707 (71%) of the standards compared to 543 (55%) standards with the ZIC-HILIC showing enhanced resolution, sensitivity, selectivity and retention time (RT) distribution. In triple-negative Hs578T breast cancer cell extracts spiked with the standards, Z-HILIC annotated 79.1% of the detected standards 66.6% with ZIC-HILIC, demonstrating improved sensitivity, stability, and reduced matrix effects for metabolite profiling. Deep-scan DDA of the spiked cell extracts increased the number of the identified metabolites using RT, / and MS/MS by more than 80% compared to standard DDA. The workflow was used to investigate the metabolic signature of doxorubicin-treated Hs578T cells ( = 15). The analysis resulted in identifying 173 metabolites, of which 26 metabolites and 20 metabolic pathways were significantly altered in doxorubicin treated cells compared to controls. These pathways were associated with oxidative stress, mitochondrial dysfunction, and impaired biosynthesis, consistent with prior knowledge about the action of doxorubicin. This comprehensive workflow promises to enhance metabolite profiling across diverse metabolomics studies.

摘要

在非靶向代谢组学中,生物样品中代谢物的鉴定面临挑战,这主要归因于数据库有限和色谱分析不足。目前的液相色谱柱存在高pH值不稳定性(基于硅胶)、效率低下和压力限制(基于聚合物),或者对极性/半极性代谢物保留不足(反相)等问题。在本研究中,开发了一种全面的液相色谱-质谱工作流程,以解决这些局限性,该流程使用了新型两性离子亲水相互作用色谱(Z-HILIC)、高分辨率质谱、深度扫描数据依赖采集(DDA)以及包含990种标准品的大型化学库。对该方法的性能进行了评估,并与广泛使用的ZIC-HILIC方法进行了比较。Z-HILIC检测到了707种(71%)标准品,而ZIC-HILIC检测到543种(55%)标准品,Z-HILIC在分辨率、灵敏度、选择性和保留时间(RT)分布方面表现出增强。在添加了标准品的三阴性Hs578T乳腺癌细胞提取物中,Z-HILIC对79.1%的检测到的标准品进行了注释,而ZIC-HILIC为66.6%,这表明在代谢物谱分析中,Z-HILIC具有更高的灵敏度、稳定性和更低的基质效应。与标准DDA相比,添加了标准品的细胞提取物的深度扫描DDA使通过RT、/和MS/MS鉴定出的代谢物数量增加了80%以上。该工作流程用于研究阿霉素处理的Hs578T细胞(n = 15)的代谢特征。分析结果鉴定出173种代谢物,其中与对照相比,阿霉素处理的细胞中有26种代谢物和20条代谢途径发生了显著改变。这些途径与氧化应激、线粒体功能障碍和生物合成受损有关,这与之前关于阿霉素作用的知识一致。这种全面的工作流程有望在各种代谢组学研究中增强代谢物谱分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96e0/12177712/10a1b85b88e0/d5ra01044f-f1.jpg

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