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Mass Spectrometry Imaging-Based Metabolomics Highlights Spatial Metabolic Alterations in Three Types of Liver Injuries

化学 代谢组学 牛磺酸 质谱成像 肝损伤 脂肪肝 质谱法 代谢物 代谢途径 生物化学 代谢组 谷氨酰胺 色谱法 新陈代谢 药理学 内科学 生物 医学 疾病 氨基酸
作者
Zihan Zhu,Yun Zhang,Jun Li,Yuhao Han,Lei Wang,Yaqi Zhang,Haoyuan Geng,Yurong Zheng,Xiao Wang,Chenglong Sun,Baoguo Li,Panpan Chen
出处
期刊:Journal of Pharmaceutical and Biomedical Analysis [Elsevier]
卷期号:: 116030-116030
标识
DOI:10.1016/j.jpba.2024.116030
摘要

Liver's distinctive function renders it highly susceptible to diverse damage sources. Characterizing the metabolic profiles and spatial signatures in different liver injuries is imperative for early diagnosis and etiology-oriented treatment. In this comparative study, we conducted whole-body spatial metabolomics on zebrafish with liver injury induced by ethanol (EtOH), acetaminophen (APAP), and thioacetamide (TAA). The two specific levels, the whole-body and liver-specific metabolic profiles, as well as their regional distributions, were systematically mapped in situ by mass spectrometry imaging, which is distinct from conventional LC-MS and GC-MS methods. We found that liver injury regions exhibited more pronounced metabolic reprogramming than the entire organism, leading to significant alterations in eight fatty acids, three phospholipids, and four low-molecular-weight metabolites. More importantly, fatty acids as well as small molecule metabolites including glutamine, glutamate, taurine and malic acid displayed contrasting changes between alcoholic liver disease (ALD) and non-alcoholic fatty liver disease (NAFLD). In addition, phospholipids, including Lyso PC (16:0) and Lyso PE (18:0), demonstrated notable down-regulation in all damaged liver, whereas PC (34:1) underwent upregulation. This study not only deepens insights into distinct potential biomarkers for liver injuries, but also underscores spatial metabolomics as a powerful tool to elucidate possible pathogenic mechanisms in other metabolic diseases.
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