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Erschienen in: Inflammation 6/2020

17.06.2020 | Original Article

miR-103a-3p Could Attenuate Sepsis-Induced Liver Injury by Targeting HMGB1

verfasst von: Leifeng Chen, Qiang Lu, Fumou Deng, Shengliang Peng, Jiajia Yuan, Chunfang Liu, Xiaohong Du

Erschienen in: Inflammation | Ausgabe 6/2020

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Abstract

The liver is one of the most vulnerable organs during sepsis. Current studies have proven that microRNAs play important roles in injury and inflammation. The current study aimed to investigate the role of miR-103 in septic liver injury. The sepsis model was established by cecal ligation and puncture in mice. Then, the mice were divided into four groups: normal group, sepsis group, sepsis + miR-103a-3p agomir group, and sepsis + negative control group. Liver injury was observed by hematoxylin-eosin staining and electron microscopic studies. The sepsis-induced apoptosis in liver tissues was assessed by TUNEL staining. The levels of inflammatory cytokines in liver tissues were determined by enzyme-linked immunosorbent assay kits. The targeted gene of miR-103a-3p in cells was predicted by bioinformatics algorithm and confirmed by dual-luciferase reporter assay. The expression of miR-103a-3p, HMBG1, and the apoptosis-relative proteins was examined by quantitative real-time polymerase chain reaction and Western blotting. miR-103a-3p was downregulated in liver tissues of sepsis animals. miR-103a-3p agomir could alleviate liver injury including the tissue injury and mitochondrial damage, inhibit the secretion of inflammatory factors, and decrease the apoptosis of liver cells. The high-mobility group B1 (HMGB1) was overregulated in sepsis, and it was a downstream target gene of miR-103a-3p. The results of the rescue assay confirmed that miR-103a-3p had a protection role in septic liver injury by targeting HMGB1. In summary, HMGB1 was one of the genes targeted by miR-103a-3p, which played roles in septic injury. These data may provide novel insight for the identification of new target and treatment strategies for septic liver injury.
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Literatur
1.
Zurück zum Zitat Angus, D.C., and T. van der Poll. 2013. Severe sepsis and septic shock. The New England Journal of Medicine 369: 840–851.CrossRef Angus, D.C., and T. van der Poll. 2013. Severe sepsis and septic shock. The New England Journal of Medicine 369: 840–851.CrossRef
2.
Zurück zum Zitat Angus, D.C., W.T. Linde-Zwirble, J. Lidicker, G. Clermont, J. Carcillo, and M.R. Pinsky. 2001. Epidemiology of severe sepsis in the United States: analysis of incidence, outcome, and associated costs of care. Critical Care Medicine 29: 1303–1310.CrossRef Angus, D.C., W.T. Linde-Zwirble, J. Lidicker, G. Clermont, J. Carcillo, and M.R. Pinsky. 2001. Epidemiology of severe sepsis in the United States: analysis of incidence, outcome, and associated costs of care. Critical Care Medicine 29: 1303–1310.CrossRef
3.
Zurück zum Zitat Martin, G.S., D.M. Mannino, S. Eaton, and M. Moss. 2003. The epidemiology of sepsis in the United States from 1979 through 2000. The New England Journal of Medicine 348: 1546–1554.CrossRef Martin, G.S., D.M. Mannino, S. Eaton, and M. Moss. 2003. The epidemiology of sepsis in the United States from 1979 through 2000. The New England Journal of Medicine 348: 1546–1554.CrossRef
4.
Zurück zum Zitat Li, A., J. Li, Y. Bao, D. Yuan, and Z. Huang. 2016. Xuebijing injection alleviates cytokine-induced inflammatory liver injury in sepsis-induced septic rats through induction of suppressor of cytokine signaling. Experimental and Therapeutic Medicine 12: 1531–1536.CrossRef Li, A., J. Li, Y. Bao, D. Yuan, and Z. Huang. 2016. Xuebijing injection alleviates cytokine-induced inflammatory liver injury in sepsis-induced septic rats through induction of suppressor of cytokine signaling. Experimental and Therapeutic Medicine 12: 1531–1536.CrossRef
5.
Zurück zum Zitat Ambros, V. 2004. The functions of animal microRNAs. Nature 431: 350–355.CrossRef Ambros, V. 2004. The functions of animal microRNAs. Nature 431: 350–355.CrossRef
6.
Zurück zum Zitat Baek, D., J. Villén, C. Shin, F.D. Camargo, S.P. Gygi, and D.P. Bartel. 2008. The impact of microRNAs on protein output. Nature 455: 64–71.CrossRef Baek, D., J. Villén, C. Shin, F.D. Camargo, S.P. Gygi, and D.P. Bartel. 2008. The impact of microRNAs on protein output. Nature 455: 64–71.CrossRef
7.
Zurück zum Zitat Kim, H., J.M. Yang, Y. Jin, S. Jheon, K. Kim, C.T. Lee, J.H. Chung, and J.H. Paik. 2017. MicroRNA expression profiles and clinicopathological implications in lung adenocarcinoma according to EGFR, KRAS, and ALK status. Oncotarget 8: 8484–8498.CrossRef Kim, H., J.M. Yang, Y. Jin, S. Jheon, K. Kim, C.T. Lee, J.H. Chung, and J.H. Paik. 2017. MicroRNA expression profiles and clinicopathological implications in lung adenocarcinoma according to EGFR, KRAS, and ALK status. Oncotarget 8: 8484–8498.CrossRef
8.
Zurück zum Zitat Serafin, A., L. Foco, S. Zanigni, H. Blankenburg, A. Picard, A. Zanon, G. Giannini, I. Pichler, M.F. Facheris, P. Cortelli, P.P. Pramstaller, A.A. Hicks, F.S. Domingues, and C. Schwienbacher. 2015. Overexpression of blood microRNAs 103a, 30b, and 29a in L-dopa-treated patients with PD. Neurology 84: 645–653.CrossRef Serafin, A., L. Foco, S. Zanigni, H. Blankenburg, A. Picard, A. Zanon, G. Giannini, I. Pichler, M.F. Facheris, P. Cortelli, P.P. Pramstaller, A.A. Hicks, F.S. Domingues, and C. Schwienbacher. 2015. Overexpression of blood microRNAs 103a, 30b, and 29a in L-dopa-treated patients with PD. Neurology 84: 645–653.CrossRef
9.
Zurück zum Zitat Li, R., P. Liang, J. Yuan, and F. He. 2020. Exosomal miR-103a-3p ameliorates lipopolysaccharide-induced immune response in BEAS-2B cells via NF-κB pathway by targeting transducin β-like 1X related protein 1. Clinical and Experimental Pharmacology & Physiology 47 (4): 620–627.CrossRef Li, R., P. Liang, J. Yuan, and F. He. 2020. Exosomal miR-103a-3p ameliorates lipopolysaccharide-induced immune response in BEAS-2B cells via NF-κB pathway by targeting transducin β-like 1X related protein 1. Clinical and Experimental Pharmacology & Physiology 47 (4): 620–627.CrossRef
10.
Zurück zum Zitat de Pádua, Lúcio K., A.C.S. Rabelo, C.M. Araújo, G.C. Brandão, G.H.B. de Souza, R.G. da Silva, D.M.S. de Souza, A. Talvani, F.S. Bezerra, A.J. Cruz Calsavara, and D.C. Costa. 2018. Anti-inflammatory and Antioxidant properties of black mulberry (Morus nigra L.) in a model of LPS-induced sepsis. Oxidative Medicine and Cellular Longevity 7: 5048031. de Pádua, Lúcio K., A.C.S. Rabelo, C.M. Araújo, G.C. Brandão, G.H.B. de Souza, R.G. da Silva, D.M.S. de Souza, A. Talvani, F.S. Bezerra, A.J. Cruz Calsavara, and D.C. Costa. 2018. Anti-inflammatory and Antioxidant properties of black mulberry (Morus nigra L.) in a model of LPS-induced sepsis. Oxidative Medicine and Cellular Longevity 7: 5048031.
11.
Zurück zum Zitat Karlsson, S., V. Pettilä, J. Tenhunen, R. Laru-Sompa, M. Hynninen, and E. Ruokonen. 2008. HMGB1 as a predictor of organ dysfunction and outcome in patients with severe sepsis. Intensive Care Medicine 34: 1046–1053.CrossRef Karlsson, S., V. Pettilä, J. Tenhunen, R. Laru-Sompa, M. Hynninen, and E. Ruokonen. 2008. HMGB1 as a predictor of organ dysfunction and outcome in patients with severe sepsis. Intensive Care Medicine 34: 1046–1053.CrossRef
12.
Zurück zum Zitat Wisnoski, N., C.S. Chung, Y. Chen, X. Huang, and A. Ayala. 2007. The contribution of CD4+ CD25+ T-regulatory-cells to immune suppression in sepsis. Shock 27: 251–257.CrossRef Wisnoski, N., C.S. Chung, Y. Chen, X. Huang, and A. Ayala. 2007. The contribution of CD4+ CD25+ T-regulatory-cells to immune suppression in sepsis. Shock 27: 251–257.CrossRef
13.
Zurück zum Zitat Li, P.Z., J.Z. Li, M. Li, J.P. Gong, and K. He. 2014. An efficient method to isolate and culture mouse Kupffer cells. Immunology Letters 158 (1–2): 52–56.CrossRef Li, P.Z., J.Z. Li, M. Li, J.P. Gong, and K. He. 2014. An efficient method to isolate and culture mouse Kupffer cells. Immunology Letters 158 (1–2): 52–56.CrossRef
14.
Zurück zum Zitat Saikia, P., D. Bellos, M.R. McMullen, K.A. Pollard, C. de la Motte, and L.E. Nagy. 2017. MicroRNA 181b-3p and its target importin α5 regulate toll-like receptor 4 signaling in Kupffer cells and liver injury in mice in response to ethanol. Hepatology 66 (2): 602–615.CrossRef Saikia, P., D. Bellos, M.R. McMullen, K.A. Pollard, C. de la Motte, and L.E. Nagy. 2017. MicroRNA 181b-3p and its target importin α5 regulate toll-like receptor 4 signaling in Kupffer cells and liver injury in mice in response to ethanol. Hepatology 66 (2): 602–615.CrossRef
15.
Zurück zum Zitat Mandal, P., S. Roychowdhury, P.H. Park, B.T. Pratt, T. Roger, and L.E. Nagy. 2010. Adiponectin and heme oxygenase-1 suppress TLR4/MyD88-independent signaling in rat Kupffer cells and in mice after chronic ethanol exposure. Journal of Immunology 185: 4928–4937.CrossRef Mandal, P., S. Roychowdhury, P.H. Park, B.T. Pratt, T. Roger, and L.E. Nagy. 2010. Adiponectin and heme oxygenase-1 suppress TLR4/MyD88-independent signaling in rat Kupffer cells and in mice after chronic ethanol exposure. Journal of Immunology 185: 4928–4937.CrossRef
16.
Zurück zum Zitat Liu, Y.X., L. Wang, W.J. Liu, H.T. Zhang, J.H. Xue, Z.W. Zhang, and C.J. Gao. 2016. MiR-124-3p/B4GALT1 axis plays an important role in SOCS3-regulated growth and chemo-sensitivity of CML. Journal of Hematology & Oncology 9: 69.CrossRef Liu, Y.X., L. Wang, W.J. Liu, H.T. Zhang, J.H. Xue, Z.W. Zhang, and C.J. Gao. 2016. MiR-124-3p/B4GALT1 axis plays an important role in SOCS3-regulated growth and chemo-sensitivity of CML. Journal of Hematology & Oncology 9: 69.CrossRef
17.
Zurück zum Zitat Chen, Y.L., G. Xu, X. Liang, J. Wei, J. Luo, G.N. Chen, X.D. Yan, X.P. Wen, M. Zhong, and X. Lv. 2016. Inhibition of hepatic cells pyroptosis attenuates CLP-induced acute liver injury. American Journal of Translational Research 8: 5685–5695.PubMedPubMedCentral Chen, Y.L., G. Xu, X. Liang, J. Wei, J. Luo, G.N. Chen, X.D. Yan, X.P. Wen, M. Zhong, and X. Lv. 2016. Inhibition of hepatic cells pyroptosis attenuates CLP-induced acute liver injury. American Journal of Translational Research 8: 5685–5695.PubMedPubMedCentral
18.
Zurück zum Zitat Lv, X., Y. Zhang, Y. Cui, Y. Ren, R. Li, and Q. Rong. 2015. Inhibition of microRNA155 relieves sepsis induced liver injury through inactivating the JAK/STAT pathway. Molecular Medicine Reports 12: 6013–6018.CrossRef Lv, X., Y. Zhang, Y. Cui, Y. Ren, R. Li, and Q. Rong. 2015. Inhibition of microRNA155 relieves sepsis induced liver injury through inactivating the JAK/STAT pathway. Molecular Medicine Reports 12: 6013–6018.CrossRef
19.
Zurück zum Zitat Han, Y., Y. Li, and Y. Jiang. 2016. The prognostic value of plasma MicroRNA-155 and MicroRNA-146a level in severe sepsis and sepsis-induced acute lung injury patients. Clinical Laboratory 62: 2355–2360.CrossRef Han, Y., Y. Li, and Y. Jiang. 2016. The prognostic value of plasma MicroRNA-155 and MicroRNA-146a level in severe sepsis and sepsis-induced acute lung injury patients. Clinical Laboratory 62: 2355–2360.CrossRef
20.
Zurück zum Zitat Gao, X.L., J.Q. Li, Y.T. Dong, E.J. Cheng, J.N. Gong, Y.L. Qin, Y.Q. Huang, J.J. Yang, S.J. Wang, and D.D. An. 2018. Upregulation of microRNA-335-5p reduces inflammatory responses by inhibiting FASN through the activation of AMPK/ULK1 signaling pathway in a septic mouse model. Cytokine 1109: 466–478.CrossRef Gao, X.L., J.Q. Li, Y.T. Dong, E.J. Cheng, J.N. Gong, Y.L. Qin, Y.Q. Huang, J.J. Yang, S.J. Wang, and D.D. An. 2018. Upregulation of microRNA-335-5p reduces inflammatory responses by inhibiting FASN through the activation of AMPK/ULK1 signaling pathway in a septic mouse model. Cytokine 1109: 466–478.CrossRef
21.
Zurück zum Zitat Hu, X., J. Miao, M. Zhang, X. Wang, Z. Wang, J. Han, D. Tong, and C. Huang. 2018. miRNA-103a-3p promotes human gastric cancer cell proliferation by targeting and suppressing ATF7 in vitro. Molecules and Cells 41: 390–400.PubMedPubMedCentral Hu, X., J. Miao, M. Zhang, X. Wang, Z. Wang, J. Han, D. Tong, and C. Huang. 2018. miRNA-103a-3p promotes human gastric cancer cell proliferation by targeting and suppressing ATF7 in vitro. Molecules and Cells 41: 390–400.PubMedPubMedCentral
22.
Zurück zum Zitat Tang, H., D. Zhu, G. Zhang, X. Luo, and W. Xie. 2019. AFAP1-AS1 promotes proliferation of pituitary adenoma cells through miR-103a-3p to activate PI3K/AKT signaling pathway. World Neurosurgery 130: e888–e898.CrossRef Tang, H., D. Zhu, G. Zhang, X. Luo, and W. Xie. 2019. AFAP1-AS1 promotes proliferation of pituitary adenoma cells through miR-103a-3p to activate PI3K/AKT signaling pathway. World Neurosurgery 130: e888–e898.CrossRef
23.
Zurück zum Zitat Liguori, M., N. Nuzziello, A. Introna, A. Consiglio, F. Licciulli, E. D’Errico, A. Scarafino, E. Distaso, and I.L. Simone. 2018. Dysregulation of MicroRNAs and target genes networks in peripheral blood of patients with sporadic amyotrophic lateral sclerosis. Frontiers in Molecular Neuroscience 11: 288.CrossRef Liguori, M., N. Nuzziello, A. Introna, A. Consiglio, F. Licciulli, E. D’Errico, A. Scarafino, E. Distaso, and I.L. Simone. 2018. Dysregulation of MicroRNAs and target genes networks in peripheral blood of patients with sporadic amyotrophic lateral sclerosis. Frontiers in Molecular Neuroscience 11: 288.CrossRef
24.
Zurück zum Zitat Hou, Z., X. Qin, Y. Hu, X. Zhang, G. Li, J. Wu, J. Li, J. Sha, J. Chen, J. Xia, L. Wang, and F. Gao. 2019. Longterm exercise-derived exosomal miR-342-5p: a novel exerkine for cardio-protection. Circulation Research 124 (9): 1386–1400.CrossRef Hou, Z., X. Qin, Y. Hu, X. Zhang, G. Li, J. Wu, J. Li, J. Sha, J. Chen, J. Xia, L. Wang, and F. Gao. 2019. Longterm exercise-derived exosomal miR-342-5p: a novel exerkine for cardio-protection. Circulation Research 124 (9): 1386–1400.CrossRef
25.
Zurück zum Zitat Youle, R.J., and A. Strasser. 2008. The BCL-2 protein family: opposing activities that mediate cell death. Nature Reviews. Molecular Cell Biology 9: 47–59.CrossRef Youle, R.J., and A. Strasser. 2008. The BCL-2 protein family: opposing activities that mediate cell death. Nature Reviews. Molecular Cell Biology 9: 47–59.CrossRef
26.
Zurück zum Zitat Liu, Q., T. Si, X. Xu, F. Liang, L. Wang, and S. Pan. 2015. Electromagnetic radiation at 900 MHz induces sperm apoptosis through bcl-2, bax and caspase-3 signaling pathways in rats. Reproductive Health 12: 65.CrossRef Liu, Q., T. Si, X. Xu, F. Liang, L. Wang, and S. Pan. 2015. Electromagnetic radiation at 900 MHz induces sperm apoptosis through bcl-2, bax and caspase-3 signaling pathways in rats. Reproductive Health 12: 65.CrossRef
27.
Zurück zum Zitat Koo, D.J., I.H. Chaudry, and P. Wang. 1999. Kupffer cells are responsible for producing inflammatory cytokines and hepatocellular dysfunction during early sepsis. The Journal of Surgical Research 83 (2): 151–157.CrossRef Koo, D.J., I.H. Chaudry, and P. Wang. 1999. Kupffer cells are responsible for producing inflammatory cytokines and hepatocellular dysfunction during early sepsis. The Journal of Surgical Research 83 (2): 151–157.CrossRef
28.
Zurück zum Zitat Gaddam, R.R., R. Fraser, A. Badiei, S. Chambers, V.C. Cogger, D.G. Le Couteur, and M. Bhatia. 2017. Differential Effects of Kupffer cell inactivation on inflammation and the liver sieve following caecal-ligation and puncture-induced sepsis in mice. Shock 47 (4): 480–490.CrossRef Gaddam, R.R., R. Fraser, A. Badiei, S. Chambers, V.C. Cogger, D.G. Le Couteur, and M. Bhatia. 2017. Differential Effects of Kupffer cell inactivation on inflammation and the liver sieve following caecal-ligation and puncture-induced sepsis in mice. Shock 47 (4): 480–490.CrossRef
29.
Zurück zum Zitat Zhang, P., Q. Zhao, K. Gong, Y. Long, J. Zhang, Y. Li, and X. Guo. 2019. Downregulation of miR-103a-3p contributes to endothelial progenitor cell dysfunction in deep vein thrombosis through PTEN targeting. Annals of Vascular Surgery 19: 30894–30895. Zhang, P., Q. Zhao, K. Gong, Y. Long, J. Zhang, Y. Li, and X. Guo. 2019. Downregulation of miR-103a-3p contributes to endothelial progenitor cell dysfunction in deep vein thrombosis through PTEN targeting. Annals of Vascular Surgery 19: 30894–30895.
Metadaten
Titel
miR-103a-3p Could Attenuate Sepsis-Induced Liver Injury by Targeting HMGB1
verfasst von
Leifeng Chen
Qiang Lu
Fumou Deng
Shengliang Peng
Jiajia Yuan
Chunfang Liu
Xiaohong Du
Publikationsdatum
17.06.2020
Verlag
Springer US
Erschienen in
Inflammation / Ausgabe 6/2020
Print ISSN: 0360-3997
Elektronische ISSN: 1573-2576
DOI
https://doi.org/10.1007/s10753-020-01275-0

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