| Literature DB >> 30897348 |
Riyaz S Patel1,2, Amand F Schmidt1,3, Vinicius Tragante3, Raymond O McCubrey4, Michael V Holmes5,6,7, Laurence J Howe1, Kenan Direk1, Axel Åkerblom8,9, Karin Leander10, Salim S Virani11, Karol A Kaminski12,13, Jochen D Muehlschlegel14, Marie-Pierre Dubé15, Hooman Allayee16, Peter Almgren17, Maris Alver18, Ekaterina V Baranova19, Hassan Behlouli20, Bram Boeckx21,22, Peter S Braund23,24, Lutz P Breitling25, Graciela Delgado26, Nubia E Duarte27, Line Dufresne20,28, Niclas Eriksson8, Luisa Foco29, Crystel M Gijsberts30, Yan Gong31, Jaana Hartiala16,32, Mahyar Heydarpour33,14, Jaroslav A Hubacek34, Marcus Kleber26, Daniel Kofink3, Pekka Kuukasjärvi35, Vei-Vei Lee36, Andreas Leiherer37,38,39, Petra A Lenzini40, Daniel Levin41, Leo-Pekka Lyytikäinen42,43, Nicola Martinelli44, Ute Mons25, Christopher P Nelson23,24, Kjell Nikus45,46, Anna P Pilbrow47, Rafal Ploski48, Yan V Sun49,50, Michael W T Tanck51, W H Wilson Tang52,53, Stella Trompet54,55, Sander W van der Laan56, Jessica van Setten57, Ragnar O Vilmundarson58,59, Chiara Viviani Anselmi60, Efthymia Vlachopoulou61, Eric Boerwinkle62, Carlo Briguori63, John F Carlquist4,64, Kathryn F Carruthers65, Gavino Casu60,66, John Deanfield1,2, Panos Deloukas67,68, Frank Dudbridge69, Natalie Fitzpatrick70, Bruna Gigante71, Stefan James8,72, Marja-Liisa Lokki61, Paulo A Lotufo73, Nicola Marziliano66, Ify R Mordi41, Joseph B Muhlestein4,64, Chris Newton Cheh74, Jan Pitha34, Christoph H Saely70,37,38, Ayman Samman-Tahhan75, Pratik B Sandesara75, Andrej Teren76,77, Adam Timmis70,2, Frans Van de Werf78, Els Wauters79, Arthur A M Wilde80,81, Ian Ford82, David J Stott83, Ale Algra84, Maria G Andreassi85, Diego Ardissino86, Benoit J Arsenault87,88, Christie M Ballantyne11, Thomas O Bergmeijer89, Connie R Bezzina80, Simon C Body14,90, Peter Bogaty91,92,93, Gert J de Borst94, Hermann Brenner25, Ralph Burkhardt77,95, Clara Carpeggiani85, Gianluigi Condorelli96, Rhonda M Cooper-DeHoff31, Sharon Cresci40,97, Ulf de Faire10, Robert N Doughty98, Heinz Drexel37,38,99, James C Engert100,101,28, Keith A A Fox102, Domenico Girelli44, Emil Hagström8,9, Stanley L Hazen52,103, Claes Held8,9, Harry Hemingway70, Imo E Hoefer71, G Kees Hovingh104, Julie A Johnson31,105, Pim A de Jong106, J Wouter Jukema55,107,108, Marcin P Kaczor109, Mika Kähönen110,110, Jiri Kettner111, Marek Kiliszek112, Olaf H Klungel19, Bo Lagerqvist8,72, Diether Lambrechts21,22, Jari O Laurikka113,114, Terho Lehtimäki42,43, Daniel Lindholm8,9, Bakhtawar K Mahmoodi89, Anke H Maitland-van der Zee19,115, Ruth McPherson116,117, Olle Melander17,118, Andres Metspalu119,18, Witold Pepinski120, Oliviero Olivieri44, Grzegorz Opolski121, Colin N Palmer122, Gerard Pasterkamp123, Carl J Pepine105, Alexandre C Pereira27, Louise Pilote20,124, Arshed A Quyyumi75, A Mark Richards47,125, Marek Sanak109, Markus Scholz77,126, Agneta Siegbahn8,127, Juha Sinisalo128, J Gustav Smith129,130,131, John A Spertus132, Alexandre F R Stewart58,59, Wojciech Szczeklik109, Anna Szpakowicz13, Jurriën M Ten Berg89, George Thanassoulis120,101,28, Joachim Thiery77,133, Yolanda van der Graaf134, Frank L J Visseren135, Johannes Waltenberger136, Pim Van der Harst137, Jean-Claude Tardif138,139, Naveed Sattar83, Chim C Lang41, Guillaume Pare140,141, James M Brophy20,124, Jeffrey L Anderson4,64, Winfried März26,142,143, Lars Wallentin8,72, Vicky A Cameron47, Benjamin D Horne30,144, Nilesh J Samani23, Aroon D Hingorani1, Folkert W Asselbergs1,70,3,57.
Abstract
BACKGROUND: Genetic variation at chromosome 9p21 is a recognized risk factor for coronary heart disease (CHD). However, its effect on disease progression and subsequent events is unclear, raising questions about its value for stratification of residual risk.Entities:
Keywords: chromosome; genetic; myocardial infarction; risk factor; secondary prevention; variation
Mesh:
Year: 2019 PMID: 30897348 PMCID: PMC6625876 DOI: 10.1161/CIRCGEN.119.002471
Source DB: PubMed Journal: Circ Genom Precis Med ISSN: 2574-8300
Figure 1.Association between chromosome 9p21 and subsequent coronary heart disease (CHD) events in all participants with baseline CHD (GENIUS-CHD [Genetics of Subsequent Coronary Heart Disease]) compared with association in CHD cases and CHD-free controls (CARDIoGRAMPlusC4D). For the CARDIoGRAMPlusC4D consortium (Coronary Artery Disease Genome wide Replication and Meta-analysis [CARDIoGRAM] plus The Coronary Artery Disease [C4D] Genetics) meta-analysis estimate, 6 studies (LURIC, LIFE-Heart [The Leipzig Heart Study], GoDARTS [Genetics of Diabetes Audit and Research in Tayside Scotland], OHGS [Ottawa Heart Genomics Study], PROSPER [Prospective Study of Pravastatin in the Elderly at Risk], WTCCC [Welcome Trust Case Control Consortium]) were excluded as they were also included in GENIUS-CHD. Estimates for GENIUS-CHD are also presented by subtype of CHD at baseline, including acute coronary syndrome (ACS), stable coronary artery disease (CAD) without prior myocardial infarction (MI; CAD/no MI), and stable CAD with prior MI (CAD/MI). All estimates were adjusted for age and sex.
Figure 2.Association between chromosome 9p21 and secondary outcomes in participants with baseline CHD, within GENIUS-CHD (Genetics of Subsequent Coronary Heart Disease). All meta-analysis estimates were adjusted for age and sex. CHD indicates coronary heart disease; CVD, cardiovascular disease; MI, myocardial infarction; and OR, odds ratio.
Overview of Studies Contributing to Chromosome 9p21 Analysis and Participant Characteristics