Altered Genes and Biological Functions in Response to Severe Burns

Author:

Liu Xinheng1,Rong Yongxian1,Huang Donglin2,Liang Zhijie2,Yi Xiaolin2,Wu Fangxiao2,Zhu Dandan2,Mo Steven3ORCID,Nong Wenhai4ORCID,Li Hongmian2ORCID

Affiliation:

1. Department of Burn and Plastic Surgery, Guiping People’s Hospital, Ren-Min West Road, Guiping, Guangxi 537200, China

2. Department of Plastic and Aesthetic Surgery, The Fifth Affiliated Hospital of Guangxi Medical University & The First People’s Hospital of Nanning, NO.89, Qi-Xing Road, Nanning, Guangxi 530022, China

3. CAS Center for Excellence in Brain Science and Intelligence Technology, Shanghai 200031, China

4. Department of Orthopedics, Binyang County People’s Hospital, Binyang, China

Abstract

Severe burns are acute wounds caused by local heat exposure, resulting in life-threatening systemic effects and poor survival. However, the specific molecular mechanisms remain unclear. First, we downloaded gene expression data related to severe burns from the GEO database (GSE19743, GSE37069, and GSE77791). Then, a gene expression analysis was performed to identify differentially expressed genes (DEGs) and construct protein-protein interaction (PPI) network. The molecular mechanism was identified by enrichment analysis and Gene Set Enrichment Analysis. In addition, STEM software was used to screen for genes persistently expressed during response to severe burns, and receiver operating characteristic (ROC) curve was used to identify key DEGs. A total of 2631 upregulated and 3451 downregulated DEGs were identified. PPI network analysis clustered these DEGs into 13 modules. Importantly, module genes mostly related with immune responses and metabolism. In addition, we identified genes persistently altered during the response to severe burns corresponding to survival and death status. Among the genes with high area under the ROC curve in the PPI network gene, CCL5 and LCK were identified as key DEGs, which may affect the prognosis of burn patients. Gene set variation analysis showed that the immune response was inhibited and several types of immune cells were decreased, while the metabolic response was enhanced. The results showed that persistent gene expression changes occur in response to severe burns, which may underlie chronic alterations in physiological pathways. Identifying the key altered genes may reveal potential therapeutic targets for mitigating the effects of severe burns.

Funder

Yong River Program of innovation and entrepreneurship of Nanning

Publisher

Hindawi Limited

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine

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