Long-term dysregulation of plasma peptidome in mild and multiple COVID-19 recovered patients revealed by a novel efficient peptidomics workflow.

IF 3.8 2区 化学 Q1 BIOCHEMICAL RESEARCH METHODS Analytical and Bioanalytical Chemistry Pub Date : 2025-02-01 Epub Date: 2024-12-07 DOI:10.1007/s00216-024-05684-0
Zhijing Song, Chaoran Liu, Yaozhou Liu, Zheng Bian, Qing Sun, Ting He, Rong Su, Shengchun Huang, Ningbin Dai, Ke Li Zhao, Yan Li, Kai Liang
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Abstract

After recovering from COVID-19, many patients experience "long COVID" symptoms. Existing research has predominantly focused on moderate to severe cases, with limited studies examining mild cases and recurrent infections. The circulating low-molecular-weight (LMW) peptidome, involving lipid metabolism, coagulation, and immune pathways, is crucial for understanding COVID-19's long-term effects. We developed a peptidomics workflow utilizing solid-phase extraction with highly wrinkled GO-Fe3O4 composite materials (HWGO-F) and nanoLC-MS/MS detection. By altering the pH, HWGO-F enhances plasma peptide adsorption and purification. Compared to traditional methods, our workflow offers improved detection depth and reproducibility for over 70% of peptide signals with CV < 20%. We investigated plasma peptide profiles in mild COVID-19 patients post-recovery from single or second infections. The findings indicate persistent abnormalities in initial COVID-19 infections' plasma peptide profiles, gradually diminishing over time. Secondary infections prolong recovery. Disrupted functions include lipid metabolism, coagulation and complement cascades, and infection-related pathways. Lipid metabolism may normalize within 3 months, while coagulation and immune abnormalities can last 3-6 months. After secondary infections, lipid metabolism irregularities may last at least 1 month, with extended coagulation and immune imbalances. These results provide a theoretical foundation for understanding the widespread occurrence of long COVID and guide recovery care for mild cases.

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一种新的高效肽组学工作流程揭示了轻度和多次COVID-19康复患者血浆肽dome的长期失调。
从COVID-19恢复后,许多患者会出现“长时间COVID”症状。现有的研究主要集中在中度至重度病例,对轻度病例和复发性感染的研究有限。循环低分子量(LMW)肽dome涉及脂质代谢、凝血和免疫途径,对于了解COVID-19的长期影响至关重要。我们开发了一种肽组学工作流程,利用高皱褶GO-Fe3O4复合材料(HWGO-F)的固相萃取和纳米lc -MS/MS检测。通过改变pH值,HWGO-F增强了血浆肽的吸附和纯化。与传统方法相比,我们的工作流程提供了更高的检测深度和可重复性,超过70%的肽信号,CV < 20%。我们研究了单次或二次感染后恢复的COVID-19轻度患者的血浆肽谱。研究结果表明,初始COVID-19感染者的血浆肽谱持续异常,随着时间的推移逐渐减少。继发感染延长康复时间。被破坏的功能包括脂质代谢、凝血和补体级联以及感染相关途径。脂质代谢可在3个月内恢复正常,而凝血和免疫异常可持续3-6个月。继发感染后,脂质代谢异常可持续至少1个月,伴凝血和免疫失衡延长。这些结果为了解长冠肺炎的广泛发生提供了理论基础,为轻症患者的康复护理提供了指导。
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来源期刊
CiteScore
8.00
自引率
4.70%
发文量
638
审稿时长
2.1 months
期刊介绍: Analytical and Bioanalytical Chemistry’s mission is the rapid publication of excellent and high-impact research articles on fundamental and applied topics of analytical and bioanalytical measurement science. Its scope is broad, and ranges from novel measurement platforms and their characterization to multidisciplinary approaches that effectively address important scientific problems. The Editors encourage submissions presenting innovative analytical research in concept, instrumentation, methods, and/or applications, including: mass spectrometry, spectroscopy, and electroanalysis; advanced separations; analytical strategies in “-omics” and imaging, bioanalysis, and sampling; miniaturized devices, medical diagnostics, sensors; analytical characterization of nano- and biomaterials; chemometrics and advanced data analysis.
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My perspective of meaningful research for Analytical and Bioanalytical Chemistry. Rapid quantification of murine bile acids using liquid chromatography-tandem mass spectrometry. Green analytical chemistry: integrating sustainability into undergraduate education. Quantification of 11 kratom alkaloids including mitragynine and its main metabolites in human plasma using LC-MS/MS. Long-term dysregulation of plasma peptidome in mild and multiple COVID-19 recovered patients revealed by a novel efficient peptidomics workflow.
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