Clinical application and immune infiltration landscape of stemness-related genes in heart failure

被引:2
作者
Yan, Wenting [1 ]
Li, Yanling [2 ]
Wang, Gang [3 ]
Huang, Yuan [1 ]
Xie, Ping [2 ]
机构
[1] Gansu Univ Tradit Chinese Med, Lanzhou, Peoples R China
[2] Gansu Prov Hosp, Dept Cardiol, 204 Donggang West Rd, Lanzhou 730000, Peoples R China
[3] Lanzhou Univ, Clin Med Coll 1, Lanzhou, Peoples R China
关键词
HF; Stemness; Diagnosis; Nomogram; Immune infiltration; DIASTOLIC DYSFUNCTION; MYOCARDIAL-INFARCTION; MOLECULAR SIGNATURES; CARDIAC-HYPERTROPHY; NONCODING RNAS; R PACKAGE; T-CELLS; REGENERATION; DATABASE; IDENTIFICATION;
D O I
10.1002/ehf2.15055
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Background: Heart failure (HF) is the leading cause of morbidity and mortality worldwide. Stemness refers to the self-renewal and differentiation ability of cells. However, little is known about the heart's stemness properties. Thus, the current study aims to identify putative stemness-related biomarkers to construct a viable prediction model of HF and characterize the immune infiltration features of HF. Methods: HF datasets from the Gene Expression Omnibus (GEO) database were adopted as the training and validation cohorts while stemness-related genes were obtained from GeneCards and previously published papers. Feature selection was performed using two machine learning algorithms. Nomogram models were then constructed to predict HF risk based on the selected key genes. Moreover, the biological functions of the key genes were evaluated using Gene Ontology (GO) and Kyoto Encyclopedia of Genes Genomes (KEGG) pathway analyses, and gene set variation analysis (GSVA) and enrichment analysis (GSEA) were performed between the high- and low-risk groups. The immune infiltration landscape in HF was investigated, and the interaction network of key genes was analysed to predict potential targets and molecular mechanisms. Results: Seven key genes, namely SMOC2, LUM, FNDC1, SCUBE2, CD163, BLM and S1PR3, were included in the proposed nomogram. This nomogram showed good predictive performance for HF diagnosis in the training and validation sets. GO and KEGG analyses revealed that the key genes were primarily associated with ageing, inflammatory processes and DNA oxidation. GSEA and GSVA identified various inflammatory and immune signalling pathways that were enriched between the high- and low-risk groups. The infiltration of 15 immune cell subsets suggests that adaptive immunity has an important role in HF. Conclusions: Our study identified a clinically significant stemness-related signature for predicting HF risk, with the potential to improve early disease diagnosis, optimize risk stratification and provide new strategies for treating patients with HF.
引用
收藏
页码:250 / 270
页数:21
相关论文
共 83 条
[31]   Specific ablation of CD4+ T-cells promotes heart regeneration in juvenile mice [J].
Li, Jiatao ;
Liang, Cai ;
Yang, Kevin Y. ;
Huang, Xiuzhen ;
Han, Mao Ying ;
Li, Xisheng ;
Chan, Vicken W. ;
Chan, Kathleen S. ;
Liu, Di ;
Huang, Zhan-Peng ;
Zhou, Bin ;
Lui, Kathy O. .
THERANOSTICS, 2020, 10 (18) :8018-8035
[32]   Loss of P53 regresses cardiac remodeling induced by pressure overload partially through inhibiting HIF1α signaling in mice [J].
Li, Jiming ;
Zeng, Jingjing ;
Wu, Lianpin ;
Tao, Luyuan ;
Liao, Zhiyong ;
Chu, Maoping ;
Li, Lei .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2018, 501 (02) :394-399
[33]   starBase v2.0: decoding miRNA-ceRNA, miRNA-ncRNA and protein-RNA interaction networks from large-scale CLIP-Seq data [J].
Li, Jun-Hao ;
Liu, Shun ;
Zhou, Hui ;
Qu, Liang-Hu ;
Yang, Jian-Hua .
NUCLEIC ACIDS RESEARCH, 2014, 42 (D1) :D92-D97
[34]   The Molecular Signatures Database Hallmark Gene Set Collection [J].
Liberzon, Arthur ;
Birger, Chet ;
Thorvaldsdottir, Helga ;
Ghandi, Mahmoud ;
Mesirov, Jill P. ;
Tamayo, Pablo .
CELL SYSTEMS, 2015, 1 (06) :417-425
[35]   Cells of the adult human heart [J].
Litvinukova, Monika ;
Talavera-Lopez, Carlos ;
Maatz, Henrike ;
Reichart, Daniel ;
Worth, Catherine L. ;
Lindberg, Eric L. ;
Kanda, Masatoshi ;
Polanski, Krzysztof ;
Heinig, Matthias ;
Lee, Michael ;
Nadelmann, Emily R. ;
Roberts, Kenny ;
Tuck, Liz ;
Fasouli, Eirini S. ;
DeLaughter, Daniel M. ;
McDonough, Barbara ;
Wakimoto, Hiroko ;
Gorham, Joshua M. ;
Samari, Sara ;
Mahbubani, Krishnaa T. ;
Saeb-Parsy, Kourosh ;
Patone, Giannino ;
Boyle, Joseph J. ;
Zhang, Hongbo ;
Zhang, Hao ;
Viveiros, Anissa ;
Oudit, Gavin Y. ;
Bayraktar, Omer Ali ;
Seidman, J. G. ;
Seidman, Christine E. ;
Noseda, Michela ;
Hubner, Norbert ;
Teichmann, Sarah A. .
NATURE, 2020, 588 (7838) :466-+
[36]  
Liu YY, 2017, QUANT BIOL, V5, P338, DOI 10.1007/s40484-017-0121-6
[37]   Receiver Operating Characteristic Curve in Diagnostic Test Assessment [J].
Mandrekar, Jayawant N. .
JOURNAL OF THORACIC ONCOLOGY, 2010, 5 (09) :1315-1316
[38]   The extracellular matrix proteoglycan lumican improves survival and counteracts cardiac dilatation and failure in mice subjected to pressure overload [J].
Mohammadzadeh, Naiyereh ;
Lunde, Ida G. ;
Andenaes, Kine ;
Strand, Mari E. ;
Aronsen, Jan Magnus ;
Skrbic, Biljana ;
Marstein, Henriette S. ;
Bandlien, Caroline ;
Nygard, Stale ;
Gorham, Joshua ;
Sjaastad, Ivar ;
Chakravarti, Shukti ;
Christensen, Geir ;
Engebretsen, Kristin V. T. ;
Tonnessen, Theis .
SCIENTIFIC REPORTS, 2019, 9 (1)
[39]   Biology of Isl1+ cardiac progenitor cells in development and disease [J].
Moretti, A. ;
Lam, J. ;
Evans, S. M. ;
Laugwitz, K. -L. .
CELLULAR AND MOLECULAR LIFE SCIENCES, 2007, 64 (06) :674-682
[40]   Cardiomyocyte gene programs encoding morphological and functional signatures in cardiac hypertrophy and failure [J].
Nomura, Seitaro ;
Satoh, Masahiro ;
Fujita, Takanori ;
Higo, Tomoaki ;
Sumida, Tomokazu ;
Ko, Toshiyuki ;
Yamaguchi, Toshihiro ;
Tobita, Takashige ;
Naito, Atsuhiko T. ;
Ito, Masamichi ;
Fujita, Kanna ;
Harada, Mutsuo ;
Toko, Haruhiro ;
Kobayashi, Yoshio ;
Ito, Kaoru ;
Takimoto, Eiki ;
Akazawa, Hiroshi ;
Morita, Hiroyuki ;
Aburatani, Hiroyuki ;
Komuro, Issei .
NATURE COMMUNICATIONS, 2018, 9