Page 144 - 2021_06-Haematologica-web
P. 144
A.B. Arroyo et al.
16. Jonas S, Izaurralde E. Towards a molecular
understanding of microRNA-mediated gene silencing. Nat Rev Genet. 2015;16(7):421- 433.
17. Bartel DP. MicroRNAs: target recognition and regulatory functions. Cell. 2009;136(2): 215-233.
18. Barwari T, Joshi A, Mayr M. MicroRNAs in cardiovascular disease. J Am Coll Cardiol. 2016;68(23):2577-2584.
19. Essandoh K, Fan G-C. Role of extracellular and intracellular microRNAs in sepsis. Biochim Biophys Acta. 2014;1842(11):2155- 2162.
20. Chen J-Q, Papp G, Szodoray P, Zeher M. The role of microRNAs in the pathogenesis of autoimmune diseases. Autoimmun Rev. 2016;15(12):1171-1180.
21. Taganov KD, Boldin MP, Chang KJ, Baltimore D. NF-kappaB-dependent induc- tion of microRNA miR-146, an inhibitor tar- geted to signaling proteins of innate immune responses. Proc Natl Acad Sci U S A. 2006;103(33):12481-12486.
22. Saba R, Sorensen DL, Booth SA. MicroRNA- 146a: a dominant, negative regulator of the innate immune response. Front Immunol. 2014;5:578.
23. Boldin MP, Taganov KD, Rao DS, et al. miR- 146a is a significant brake on autoimmunity, myeloproliferation, and cancer in mice. J Exp Med. 2011;208(6):1189-1201.
24. Roldan V, Arroyo AB, Salloum-Asfar S, et al. Prognostic role of MIR146A polymorphisms for cardiovascular events in atrial fibrillation. Thromb Haemost. 2014;112(4):781-788.
25. Arroyo AB, de los Reyes-García AM, Rivera- Caravaca JM, et al. MiR-146a regulates neu- trophil extracellular trap formation that pre- dicts adverse cardiovascular events in patients with atrial fibrillation. Arterioscler Thromb Vasc Biol. 2018;38(4):892-902.
26. del Monte A, Arroyo AB, Andrés-Manzano MJ, et al. miR-146a deficiency in hematopoi- etic cells is not involved in the development of atherosclerosis. PLoS One. 2018;13(6): e0198932.
27. Buckley CD, Ross EA, McGettrick HM, et al. Identification of a phenotypically and functionally distinct population of long-lived neutrophils in a model of reverse endothelial migration. J Leukoc Biol. 2006;79(2):303- 311.
28. Hu N, Westra J, Rutgers A, et al. Decreased
CXCR1 and CXCR2 expression on neu- trophils in anti-neutrophil cytoplasmic autoantibody-associated vasculitides poten- tially increases neutrophil adhesion and impairs migration. Arthritis Res Ther. 2011;13(6):R201.
29. Xu R, Bao C, Huang H, et al. Low expression of CXCR1/2 on neutrophils predicts poor survival in patients with hepatitis B virus- related acute-on-chronic liver failure. Sci Rep. 2016;6:38714.
30.Zhang D, Chen G, Manwani D, et al. Neutrophil ageing is regulated by the micro- biome. Nature. 2015;525(7570):528-532.
31. Wang J, Cui Z, Liu L, et al. MiR-146a mimic attenuates murine allergic rhinitis by down- regulating TLR4/TRAF6/NF-κB pathway. Immunotherapy. 2019;11(13):1095-1105.
32. Stavrou EX, Fang C, Bane KL, et al. Factor XII and uPAR upregulate neutrophil func- tions to influence wound healing. J Clin Invest. 2018;128(3):944-959.
33.Hashiba M, Huq A, Tomino A, et al. Neutrophil extracellular traps in patients with sepsis. J Surg Res. 2015;194(1):248-254.
34. Hirose T, Hamaguchi S, Matsumoto N, et al. Presence of neutrophil extracellular traps and citrullinated histone H3 in the blood- stream of critically ill patients. PLoS One. 2014;9(11):e111755.
35. Bonaventura A, Montecucco F, Dallegri F, et al. Novel findings in neutrophil biology and their impact on cardiovascular disease. Cardiovasc Res. 2019;115(8):1266-1285.
36. Jiménez-Alcázar M, Kim N, Fuchs T. Circulating extracellular DNA: cause or con- sequence of thrombosis? Semin Thromb Hemost. 2017;43(06):553-561.
37. Khan MA, Palaniyar N. Transcriptional fir- ing helps to drive NETosis. Sci Rep. 2017;7:41749.
38. Franck G, Mawson TL, Folco EJ, et al. Roles of PAD4 and NETosis in experimental ather- osclerosis and arterial injury. Circ Res. 2018;123(1):33-42.
39. Massberg S, Grahl L, von Bruehl M-L, et al. Reciprocal coupling of coagulation and innate immunity via neutrophil serine pro- teases. Nat Med. 2010;16(8):887-896.
40. Knight JS, Luo W, O’Dell AA, et al. Peptidylarginine deiminase inhibition reduces vascular damage and modulates innate immune responses in murine models of atherosclerosis. Circ Res. 2014;114(6):
947-956.
41. Liew PX, Kubes P. The neutrophil’s role dur-
ing health and disease. Physiol Rev.
2019;99(2):1223-1248.
42. Ebrahimi F, Giaglis S, Hahn S, et al. Markers
of neutrophil extracellular traps predict adverse outcome in community-acquired pneumonia: secondary analysis of a ran- domised controlled trial. Eur Respir J. 2018;51(4):1701389.
43. Xie J, Zhang L, Fan X, Dong X, Zhang Z, Fan W. MicroRNA-146a improves sepsis- induced cardiomyopathy by regulating the TLR-4/NF-κB signaling pathway. Exp Ther Med. 2019;18(1):779-785.
44. Gao M, Wang X, Zhang X, et al. Attenuation of cardiac dysfunction in polymicrobial sep- sis by microRNA-146a is mediated via tar- geting of IRAK1 and TRAF6 expression. J Immunol. 2015;195(2):672-682.
45. Nakada T, Takahashi W, Nakada E, Shimada T, Russell JA, Walley KR. Genetic polymor- phisms in sepsis and cardiovascular disease. Chest. 2019;155(6):1260-1271.
46. Montecucco F, Liberale L, Bonaventura A, Vecchiè A, Dallegri F, Carbone F. The role of inflammation in cardiovascular outcome. Curr Atheroscler Rep. 2017;19(3):11.
47. Ayoub KF, Pothineni NVK, Rutland J, Ding Z, Mehta JL. Immunity, inflammation, and oxidative stress in heart failure: emerging molecular targets. Cardiovasc Drugs Ther. 2017;31(5-6):593-608.
48. Uhl B, Vadlau Y, Zuchtriegel G, et al. Aged neutrophils contribute to the first line of defense in the acute inflammatory response. Blood. 2016;128(19):2327-2337.
49. Rosales C. Neutrophil: a cell with many roles in inflammation or several cell types? Front Physiol. 2018;9:113.
50. Ortmann W, Kolaczkowska E. Age is the work of art? Impact of neutrophil and organism age on neutrophil extracellular trap formation. Cell Tissue Res. 2018;371(3):473-488.
51. Davalli P, Mitic T, Caporali A, Lauriola A, D’Arca D. ROS, cell senescence, and novel molecular mechanisms in aging and age- related diseases. Oxid Med Cell Longev. 2016; 2016:3565127.
52.Fuchs TA, Abed U, Goosmann C, et al. Novel cell death program leads to neutrophil extracellular traps. J Cell Biol. 2007;176(2): 231-241.
1646
haematologica | 2021; 106(6)