败血症
脑病
医学
免疫学
平衡
急性肾损伤
脂蛋白
内科学
胆固醇
生物
生物信息学
作者
Xi Liang,Tianzhou Wu,Qi Chen,Jing Jiang,Yongpo Jiang,Yanyun Ruan,Huaping Zhang,Sheng Zhang,Chao Zhang,Peng Chen,Yuhang Lv,Jiaojiao Xin,Dongyan Shi,Xin Chen,Jun Li,Yinghe Xu
出处
期刊:Life science alliance
[Life Science Alliance]
日期:2021-08-24
卷期号:4 (10): e202101091-e202101091
被引量:6
标识
DOI:10.26508/lsa.202101091
摘要
Sepsis is defined as an organ dysfunction syndrome and it has high mortality worldwide. This study analysed the proteome of serum from patients with sepsis to characterize the pathological mechanism and pathways involved in sepsis. A total of 59 patients with sepsis were enrolled for quantitative proteomic analysis. Weighted gene co-expression network analysis (WGCNA) was performed to construct a co-expression network specific to sepsis. Key regulatory modules that were detected were highly correlated with sepsis patients and related to multiple functional groups, including plasma lipoprotein particle remodeling, inflammatory response, and wound healing. Complement activation was significantly associated with sepsis-associated encephalopathy. Triglyceride/cholesterol homeostasis was found to be related to sepsis-associated acute kidney injury. Twelve hub proteins were identified, which might be predictive biomarkers of sepsis. External validation of the hub proteins showed their significantly differential expression in sepsis patients. This study identified that plasma lipoprotein processes played a crucial role in sepsis patients, that complement activation contributed to sepsis-associated encephalopathy, and that triglyceride/cholesterol homeostasis was associated with sepsis-associated acute kidney injury.
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