The LPS-induced inflammation model is widely used for studying inflammatory processes due to its cost-effectiveness, reproducibility, and faithful representation of key hallmarks. While researchers often validate this model using clinical cytokine markers, a comprehensive understanding of gene regulatory mechanisms requires extending investigation beyond these hallmarks. Our study leveraged multiple whole-blood bulk RNA-seq datasets to rigorously compare the transcriptional profiles of the well-established LPS-induced inflammation model with those of several human diseases characterized by systemic inflammation. Beyond conventional inflammation-associated systems, we explored additional systems indirectly associated with inflammatory responses (i.e., ISR, RAAS, and UPR) using a customized core inflammatory gene list. Our cross-condition-validation approach spanned four distinct conditions: systemic lupus erythematosus (SLE) patients, dengue infection, candidemia infection, and staphylococcus aureus exposure. This analysis approach, utilizing the core gene list aimed to assess the model's suitability for understanding the gene regulatory mechanisms underlying inflammatory processes triggered by diverse factors. Our analysis resulted in elevated expressions of innate immune-associated genes, coinciding with suppressed expressions of adaptive immune-associated genes. Also, upregulation of genes associated with cellular stresses and mitochondrial innate immune responses underscored oxidative stress as a central driver of the corresponding inflammatory processes in both the LPS-induced and other inflammatory contexts.
RNA-Seq of an LPS-Induced Inflammation Model Reveals Transcriptional Profile Patterns of Inflammatory Processes.
LPS诱导炎症模型的RNA测序揭示了炎症过程的转录谱模式
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作者:Sheen Kisung, Myung Seokho, Lee Dong-Min, Yu Sanghyeon, Choi Yueun, Kim Taeyoon, Kim Jihan, Ji Sang-Gu, Kim Myung-Seo, Kim Wonnam, Lee Yoonsung, Kim Man S, Park Yeon-Cheol
| 期刊: | Life-Basel | 影响因子: | 3.400 |
| 时间: | 2024 | 起止号: | 2024 Apr 26; 14(5):558 |
| doi: | 10.3390/life14050558 | 研究方向: | 免疫/内分泌 |
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