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Published in: Basic Research in Cardiology 1/2011

01-01-2011 | Original Contribution

Expression of IL-17A in human atherosclerotic lesions is associated with increased inflammation and plaque vulnerability

Authors: Christian Erbel, Thomas J. Dengler, Susanne Wangler, Felix Lasitschka, Florian Bea, Nadine Wambsganss, Maani Hakimi, Dittmar Böckler, Hugo A. Katus, Christian A. Gleissner

Published in: Basic Research in Cardiology | Issue 1/2011

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Abstract

A chronic (auto)immune response is the critical mechanism in atherosclerosis. Interleukin-17A is a pivotal effector cytokine, which modulates immune cell trafficking and initiates inflammation in (auto)immune and infectious diseases. However, expression of IL-17A in the context of human atherosclerosis has hardly been explored. Carotid artery plaques were collected from 79 patients undergoing endarterectomy. Patients were grouped according to their symptomatic status (TIA, stroke), plaque morphology and medication. Quantitative RT-PCR was used to analyze tissue inflammation and immunohistochemistry to assess cellular source of IL-17A expression and lesion morphology. Carotid plaques from patients with ischemic symptoms were characterized by a highly activated inflammatory milieu including accumulation of T cells (p = 0.04) and expression of IL-6 and VCAM1 (p = 0.02, 0.01). Expression of IL-17A and its positive regulators IL-21 and IL-23 was present in atherosclerotic lesions, significantly upregulated in atheromas of symptomatic patients (p = 0.005, 0.004, 0.03), and expression of IL-17A and IL-21 showed a strong correlation (p = 0.002, r = 0.52). The cellular sources of lesional IL-17A expression are T cells, macrophages, B cells and plasma cells. Vulnerable/ruptured (complicated) plaques were significantly associated with IL-17A expression levels (p = 0.003). In addition, IL-17A showed a marked negative correlation with the potent anti-inflammatory/atheroprotective cytokine IL-10 (p = 0.0006, r = −0.46). Furthermore, treatment with a HMG-CoA reductase inhibitor or acetylsalicylic acid showed reduced levels of IL-21, IL-23 and VCAM1 (all p < 0.05), but did not influence IL-17A. The association of IL-17A with ischemic symptoms and vulnerable plaque characteristics suggests that the pro-inflammatory cytokine IL-17A may contribute to atherosclerosis und plaque instability.
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Literature
1.
go back to reference Beckman JA, Ganz J, Creager MA, Ganz P, Kinlay S (2001) Relationship of clinical presentation and calcification of culprit coronary artery stenoses. Arterioscler Thromb Vasc Biol 21:1618–1622CrossRefPubMed Beckman JA, Ganz J, Creager MA, Ganz P, Kinlay S (2001) Relationship of clinical presentation and calcification of culprit coronary artery stenoses. Arterioscler Thromb Vasc Biol 21:1618–1622CrossRefPubMed
2.
go back to reference Bose D, von Birgelen C, Zhou XY, Schmermund A, Philipp S, Sack S, Konorza T, Mohlenkamp S, Leineweber K, Kleinbongard P, Wijns W, Heusch G, Erbel R (2008) Impact of atherosclerotic plaque composition on coronary microembolization during percutaneous coronary interventions. Basic Res Cardiol 103:587–597CrossRefPubMed Bose D, von Birgelen C, Zhou XY, Schmermund A, Philipp S, Sack S, Konorza T, Mohlenkamp S, Leineweber K, Kleinbongard P, Wijns W, Heusch G, Erbel R (2008) Impact of atherosclerotic plaque composition on coronary microembolization during percutaneous coronary interventions. Basic Res Cardiol 103:587–597CrossRefPubMed
3.
go back to reference Chapman MJ (2007) From pathophysiology to targeted therapy for atherothrombosis: a role for the combination of statin and aspirin in secondary prevention. Pharmacol Ther 113:184–196CrossRefPubMed Chapman MJ (2007) From pathophysiology to targeted therapy for atherothrombosis: a role for the combination of statin and aspirin in secondary prevention. Pharmacol Ther 113:184–196CrossRefPubMed
4.
go back to reference Cordell JL, Falini B, Erber WN, Ghosh AK, Abdulaziz Z et al (1984) Immunoenzymatic labeling of monoclonal antibodies using immune complexes of alkaline phosphatase and monoclonal anti-alkaline phosphatase (APAAP complexes). J Histochem Cytochem 32:219–229PubMed Cordell JL, Falini B, Erber WN, Ghosh AK, Abdulaziz Z et al (1984) Immunoenzymatic labeling of monoclonal antibodies using immune complexes of alkaline phosphatase and monoclonal anti-alkaline phosphatase (APAAP complexes). J Histochem Cytochem 32:219–229PubMed
5.
go back to reference Davies MJ (1990) A macro and micro view of coronary vascular insult in ischemic heart disease. Circulation 82:38–46 Davies MJ (1990) A macro and micro view of coronary vascular insult in ischemic heart disease. Circulation 82:38–46
6.
go back to reference de Boer OJ, van der Meer JJ, Teeling P, van der Loos CM, Idu MM et al (2010) Differential expression of interleukin-17 family cytokines in intact and complicated human atherosclerotic plaques. J Pathol 220:499–508PubMed de Boer OJ, van der Meer JJ, Teeling P, van der Loos CM, Idu MM et al (2010) Differential expression of interleukin-17 family cytokines in intact and complicated human atherosclerotic plaques. J Pathol 220:499–508PubMed
7.
go back to reference Erbel C, Chen L, Bea F, Wangler S, Celik S et al (2009) Inhibition of IL-17A attenuates atherosclerotic lesion development in ApoE-deficient mice. J Immunol 183:8167–8175CrossRefPubMed Erbel C, Chen L, Bea F, Wangler S, Celik S et al (2009) Inhibition of IL-17A attenuates atherosclerotic lesion development in ApoE-deficient mice. J Immunol 183:8167–8175CrossRefPubMed
8.
go back to reference Erbel C, Sato K, Meyer FB, Kopecky SL, Frye RL et al (2007) Functional profile of activated dendritic cells in unstable atherosclerotic plaque. Basic Res Cardiol 102:123–132CrossRefPubMed Erbel C, Sato K, Meyer FB, Kopecky SL, Frye RL et al (2007) Functional profile of activated dendritic cells in unstable atherosclerotic plaque. Basic Res Cardiol 102:123–132CrossRefPubMed
9.
go back to reference Fuster V, Badimon L, Badimon JJ, Chesebro JH (1992) The pathogenesis of coronary artery disease and the acute coronary syndromes (1). N Engl J Med 326:242–250CrossRefPubMed Fuster V, Badimon L, Badimon JJ, Chesebro JH (1992) The pathogenesis of coronary artery disease and the acute coronary syndromes (1). N Engl J Med 326:242–250CrossRefPubMed
10.
go back to reference Gravallese EM (2003) Osteopontin: a bridge between bone and the immune system. J Clin Invest 112:147–149PubMed Gravallese EM (2003) Osteopontin: a bridge between bone and the immune system. J Clin Invest 112:147–149PubMed
11.
go back to reference Hansson GK, Libby P (2006) The immune response in atherosclerosis: a double-edged sword. Nat Rev Immunol 6:508–519CrossRefPubMed Hansson GK, Libby P (2006) The immune response in atherosclerosis: a double-edged sword. Nat Rev Immunol 6:508–519CrossRefPubMed
12.
go back to reference Huang H, Virmani R, Younis H, Burke AP, Kamm RD et al (2001) The impact of calcification on the biomechanical stability of atherosclerotic plaques. Circulation 103:1051–1056PubMed Huang H, Virmani R, Younis H, Burke AP, Kamm RD et al (2001) The impact of calcification on the biomechanical stability of atherosclerotic plaques. Circulation 103:1051–1056PubMed
13.
go back to reference Jander S, Sitzer M, Schumann R, Schroeter M, Siebler M et al (1998) Inflammation in high-grade carotid stenosis: a possible role for macrophages and T cells in plaque destabilization. Stroke 29:1625–1630PubMed Jander S, Sitzer M, Schumann R, Schroeter M, Siebler M et al (1998) Inflammation in high-grade carotid stenosis: a possible role for macrophages and T cells in plaque destabilization. Stroke 29:1625–1630PubMed
14.
go back to reference Kamimura M, Viedt C, Dalpke A, Rosenfeld ME, Mackman N et al (2005) Interleukin-10 suppresses tissue factor expression in lipopolysaccharide-stimulated macrophages via inhibition of Egr-1 and a serum response element/MEK-ERK1/2 pathway. Circ Res 97:305–313CrossRefPubMed Kamimura M, Viedt C, Dalpke A, Rosenfeld ME, Mackman N et al (2005) Interleukin-10 suppresses tissue factor expression in lipopolysaccharide-stimulated macrophages via inhibition of Egr-1 and a serum response element/MEK-ERK1/2 pathway. Circ Res 97:305–313CrossRefPubMed
15.
go back to reference Kendrach MG, Kelly-Freeman M (2004) Approximate equivalent rosuvastatin doses for temporary statin interchange programs. Ann Pharmacother 38:1286–1292CrossRefPubMed Kendrach MG, Kelly-Freeman M (2004) Approximate equivalent rosuvastatin doses for temporary statin interchange programs. Ann Pharmacother 38:1286–1292CrossRefPubMed
16.
go back to reference Kleinbongard P, Heusch G, Schulz R (2010) TNFalpha in atherosclerosis, myocardial ischemia/reperfusion and heart failure. Pharmacol Ther 127:295–314CrossRefPubMed Kleinbongard P, Heusch G, Schulz R (2010) TNFalpha in atherosclerosis, myocardial ischemia/reperfusion and heart failure. Pharmacol Ther 127:295–314CrossRefPubMed
17.
go back to reference Konstandin MH, Aksoy H, Wabnitz GH, Volz C, Erbel C et al (2009) Beta2-integrin activation on T cell subsets is an independent prognostic factor in unstable angina pectoris. Basic Res Cardiol 104:341–351CrossRefPubMed Konstandin MH, Aksoy H, Wabnitz GH, Volz C, Erbel C et al (2009) Beta2-integrin activation on T cell subsets is an independent prognostic factor in unstable angina pectoris. Basic Res Cardiol 104:341–351CrossRefPubMed
18.
go back to reference Korn T, Bettelli E, Gao W, Awasthi A, Jager A et al (2007) IL-21 initiates an alternative pathway to induce proinflammatory T(H)17 cells. Nature 448:484–487CrossRefPubMed Korn T, Bettelli E, Gao W, Awasthi A, Jager A et al (2007) IL-21 initiates an alternative pathway to induce proinflammatory T(H)17 cells. Nature 448:484–487CrossRefPubMed
19.
go back to reference Langrish CL, Chen Y, Blumenschein WM, Mattson J, Basham B et al (2005) IL-23 drives a pathogenic T cell population that induces autoimmune inflammation. J Exp Med 201:233–240CrossRefPubMed Langrish CL, Chen Y, Blumenschein WM, Mattson J, Basham B et al (2005) IL-23 drives a pathogenic T cell population that induces autoimmune inflammation. J Exp Med 201:233–240CrossRefPubMed
20.
go back to reference Matsui Y, Rittling SR, Okamoto H, Inobe M, Jia N et al (2003) Osteopontin deficiency attenuates atherosclerosis in female apolipoprotein E-deficient mice. Arterioscler Thromb Vasc Biol 23:1029–1034CrossRefPubMed Matsui Y, Rittling SR, Okamoto H, Inobe M, Jia N et al (2003) Osteopontin deficiency attenuates atherosclerosis in female apolipoprotein E-deficient mice. Arterioscler Thromb Vasc Biol 23:1029–1034CrossRefPubMed
21.
go back to reference Naylor AR (2009) The importance of initiating “best medical therapy” and intervening as soon as possible in patients with symptomatic carotid artery disease: time for a radical rethink of practice. J Cardiovasc Surg (Torino) 50:773–782 Naylor AR (2009) The importance of initiating “best medical therapy” and intervening as soon as possible in patients with symptomatic carotid artery disease: time for a radical rethink of practice. J Cardiovasc Surg (Torino) 50:773–782
22.
go back to reference Stary HC (2000) Natural history and histological classification of atherosclerotic lesions: an update. Arterioscler Thromb Vasc Biol 20:1177–1178PubMed Stary HC (2000) Natural history and histological classification of atherosclerotic lesions: an update. Arterioscler Thromb Vasc Biol 20:1177–1178PubMed
23.
go back to reference Van Herck JL, De Meyer GR, Martinet W, Bult H, Vrints CJ, Herman AG (2010) Proteasome inhibitor bortezomib promotes a rupture-prone plaque phenotype in ApoE-deficient mice. Basic Res Cardiol 105:39–50CrossRefPubMed Van Herck JL, De Meyer GR, Martinet W, Bult H, Vrints CJ, Herman AG (2010) Proteasome inhibitor bortezomib promotes a rupture-prone plaque phenotype in ApoE-deficient mice. Basic Res Cardiol 105:39–50CrossRefPubMed
24.
go back to reference Van Herck JL, De Meyer GR, Martinet W, Salgado RA, Shivalkar B, De Mondt R, Van De Ven H, Ludwig A, Van Der Veken P, Van Vaeck L, Bult H, Herman AG, Vrints CJ (2010) Multi-slice computed tomography with N1177 identifies ruptured atherosclerotic plaques in rabbits. Basic Res Cardiol 105:51–59CrossRefPubMed Van Herck JL, De Meyer GR, Martinet W, Salgado RA, Shivalkar B, De Mondt R, Van De Ven H, Ludwig A, Van Der Veken P, Van Vaeck L, Bult H, Herman AG, Vrints CJ (2010) Multi-slice computed tomography with N1177 identifies ruptured atherosclerotic plaques in rabbits. Basic Res Cardiol 105:51–59CrossRefPubMed
25.
go back to reference Virmani R, Burke AP, Farb A, Kolodgie FD (2006) Pathology of the vulnerable plaque. J Am Coll Cardiol 47:C13–C18CrossRefPubMed Virmani R, Burke AP, Farb A, Kolodgie FD (2006) Pathology of the vulnerable plaque. J Am Coll Cardiol 47:C13–C18CrossRefPubMed
26.
go back to reference Waxman S, Ishibashi F, Muller JE (2006) Detection and treatment of vulnerable plaques and vulnerable patients: novel approaches to prevention of coronary events. Circulation 114:2390–2411CrossRefPubMed Waxman S, Ishibashi F, Muller JE (2006) Detection and treatment of vulnerable plaques and vulnerable patients: novel approaches to prevention of coronary events. Circulation 114:2390–2411CrossRefPubMed
27.
go back to reference Weaver CT, Hatton RD, Mangan PR, Harrington LE (2007) IL-17 family cytokines and the expanding diversity of effector T cell lineages. Annu Rev Immunol 25:821–852CrossRefPubMed Weaver CT, Hatton RD, Mangan PR, Harrington LE (2007) IL-17 family cytokines and the expanding diversity of effector T cell lineages. Annu Rev Immunol 25:821–852CrossRefPubMed
28.
go back to reference Zhang C (2008) The role of inflammatory cytokines in endothelial dysfunction. Basic Res Cardiol 103:398–406CrossRefPubMed Zhang C (2008) The role of inflammatory cytokines in endothelial dysfunction. Basic Res Cardiol 103:398–406CrossRefPubMed
Metadata
Title
Expression of IL-17A in human atherosclerotic lesions is associated with increased inflammation and plaque vulnerability
Authors
Christian Erbel
Thomas J. Dengler
Susanne Wangler
Felix Lasitschka
Florian Bea
Nadine Wambsganss
Maani Hakimi
Dittmar Böckler
Hugo A. Katus
Christian A. Gleissner
Publication date
01-01-2011
Publisher
Springer-Verlag
Published in
Basic Research in Cardiology / Issue 1/2011
Print ISSN: 0300-8428
Electronic ISSN: 1435-1803
DOI
https://doi.org/10.1007/s00395-010-0135-y

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