Miller, Ashley M; Purves, David; McConnachie, Alex; Asquith, Darren L; Batty, David G; Burns, Harry; Cavanagh, Jonathan; Ford, Ian; McLean, Jennifer S; Packard, Chris J; Shiels, Paul G; Turner, Helen; Velupillai, Yoga N; Deans, Kevin A; Welsh, Paul; McInnes, Iain B; Sattar, Naveed
(Public Library of Science, 2012)
Preliminary data mostly from animal models suggest the sST2/IL-33 pathway may have causal relevance for vascular disease and diabetes and thus point to a potential novel inflammatory link to cardiometabolic disease. However, ...