Cytokine and molecular networks in sepsis cases: a network biology approach.

IF 2.2 4区 医学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Dong Wook Jekarl, Kyung Soo Kim, Seungok Lee, Myungshin Kim, Yonggoo Kim
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引用次数: 25

Abstract

Sepsis is a life-threatening condition of organ dysfunction caused by a dysregulated host immune response to infection. We performed network analysis of cytokine molecules and compared network structures between a systematic inflammatory response syndrome (SIRS) or normal control (NC) group and a sepsis group. We recruited SIRS (n = 33) and sepsis (n = 89) patients from electronic medical records (EMR) according to whether data on PCT, CRP, interleukin (IL)-1β, IL-2, IL-4, IL-5, IL-6, IL-9, IL-10, IL-12p70, IL-13, IL-17, IL-22, TNF-α, and IFN-γ levels were available. From the public GEO dataset, GSE66099, GSE9960, GSE95233, GSE57065 were downloaded. Genes corresponding to 15 molecules were extracted from an expression array. A correlation matrix was formed for the 15 molecules and statistically significant molecular pairs were used as pairs for network analysis of coexpression. The number of molecular or gene expression pairs significantly correlated among the SIRS or control and sepsis groups are as follows for datasets: EMR, 15 and 15; GEO66099-1, 13 and 15; GEO9960, 13 and 11; GSE95233, 13 and 8; GSE66099-2, 15 and 14; GSE57065, 14 and 13, respectively. Network analysis revealed that network diameter, number of nodes and shortest path were equal to or lower in the sepsis group. The coexpression network in sepsis patients was relatively small sized and had lower shortest paths compared with the SIRS group or healthy control group. Cytokines with one degree (k = 1) are increased in sepsis group compared with SIRS or healthy control group. IL-9 and IL-2 were not included in network of sepsis group indicating that these cytokines showed no correlation with other cytokines. These data might imply that cytokines tend to be dysregulated in the sepsis group compared to that of SIRS or normal control groups.

脓毒症病例中的细胞因子和分子网络:网络生物学方法。
脓毒症是一种危及生命的器官功能障碍,由宿主对感染的免疫反应失调引起。我们对细胞因子分子进行了网络分析,并比较了系统性炎症反应综合征(SIRS)或正常对照组(NC)组和败血症组之间的网络结构。根据是否有PCT、CRP、白细胞介素(IL)-1β、IL-2、IL-4、IL-5、IL-6、IL-9、IL-10、IL-12p70、IL-13、IL-17、IL-22、TNF-α和IFN-γ水平的数据,从电子病历(EMR)中招募SIRS (n = 33)和败血症(n = 89)患者。从GEO公共数据集中下载GSE66099、GSE9960、GSE95233、GSE57065。从表达阵列中提取15个分子对应的基因。将15个分子形成相关矩阵,并以具有统计学意义的分子对作为共表达的网络分析对。SIRS组、对照组和脓毒症组之间显著相关的分子或基因表达对数量如下:EMR, 15和15;geo66099 - 1,13和15;GEO9960, 13和11;GSE95233, 13和8;GSE66099-2、15和14;分别为GSE57065、14和13。网络分析显示,脓毒症组的网络直径、节点数和最短路径均等于或低于脓毒症组。脓毒症患者的共表达网络相对较小,最短路径较SIRS组或健康对照组低。与SIRS或健康对照组相比,脓毒症组细胞因子呈1度(k = 1)升高。IL-9和IL-2未被纳入脓毒症组网络,说明这些细胞因子与其他细胞因子无相关性。这些数据可能暗示,与SIRS或正常对照组相比,败血症组的细胞因子倾向于失调。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
European cytokine network
European cytokine network 生物-免疫学
CiteScore
5.70
自引率
0.00%
发文量
5
审稿时长
6 months
期刊介绍: The journal that brings together all areas of work involving cytokines. European Cytokine Network is an electronic journal that publishes original articles and abstracts every quarter to provide an essential bridge between researchers and clinicians with an interest in this cutting-edge field. The journal has become a must-read for specialists in the field thanks to its swift publication and international circulation. The journal is referenced in several databases, including Medline, which is testament to its scientific quality.
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