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Hui-Yuen JS, Duong TT, Yeung RS 
TNF-alpha is necessary for induction of coronary artery inflammation and aneurysm formation in an animal model of Kawasaki disease. [Journal Article]
J Immunol 2006 May 15; 176(10):6294-301.
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Chan WC, Duong TT, Yeung RS 
Presence of IFN-gamma does not indicate its necessity for induction of coronary arteritis in an animal model of Kawasaki disease. [Journal Article]
J Immunol 2004 Sep 1; 173(5):3492-503.
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Lau AC, Duong TT, Ito S, et al. 
Matrix metalloproteinase 9 activity leads to elastin breakdown in an animal model of Kawasaki disease. [Journal Article]
Arthritis Rheum 2008 Mar; 58(3):854-63.
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Duong TT, Silverman ED, Bissessar MV, et al. 
Superantigenic activity is responsible for induction of coronary arteritis in mice: an animal model of Kawasaki disease. [Journal Article]
Int Immunol 2003 Jan; 15(1):79-89.
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Lehman TJ, Warren R, Gietl D, et al. 
Variable expression of Lactobacillus casei cell wall-induced coronary arteritis: an animal model of Kawasaki's disease in selected inbred mouse strains. [Journal Article]
Clin Immunol Immunopathol 1988 Jul; 48(1):108-18.
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Adewuya O, Irie Y, Bian K, et al. 
Mechanism of vasculitis and aneurysms in Kawasaki disease: role of nitric oxide. [Journal Article]
Nitric Oxide 2003 Feb; 8(1):15-25.
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Nakamura T, Yamamura JI, Sato H, et al. 
Vasculitis induced by immunization with Bacillus Calmette-Guérin followed by atypical mycobacterium antigen: a new mouse model for Kawasaki disease. [JOURNAL ARTICLE]
FEMS Immunol Med Microbiol 2007 Feb 12.
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Rosenkranz ME, Schulte DJ, Agle LM, et al. 
TLR2 and MyD88 contribute to Lactobacillus casei extract-induced focal coronary arteritis in a mouse model of Kawasaki disease. [Journal Article]
Circulation 2005 Nov 8; 112(19):2966-73.
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Yeung RS 
Lessons learned from an animal model of Kawasaki disease. [JOURNAL ARTICLE]
Clin Exp Rheumatol 2007 Jan-Feb; 25 Suppl 44(1):69-71.
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