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DOI: 10.1055/s-0037-1615028
Polymorphism of the Platelet Glycoprotein IIIa Gene in Patients with Coronary Stenosis
Publikationsverlauf
Received
13. November 1997
Accepted after resubmission
24. Februar 1998
Publikationsdatum:
07. Dezember 2017 (online)
Summary
Based on genetic variability, structural differences in the glycoprotein IIb/IIIa platelet receptor for adhesive proteins result in individual differences in the thrombogenicity of platelets. Recent studies suggest a controversial association between a genetic polymorphism of the glycoprotein IIIa gene (PlA2) and the risk of coronary artery disease. In our study, the prevalence of the PlA2 allele in a group of patients undergoing percutaneous coronary revascularization was 37%, a value significantly higher than in controls [13%, odds ratio (OR) = 3.93, 95% CI, 1.84 to 8.53] suggesting a significant association between this polymorphism and documented coronary stenosis, which is strongest among <60 years old patients (OR = 12.30, 95% CI, 2.98 to 70.93). This polymorphism represents an inherited risk factor for severe cardiovascular disease due to coronary occlusion.
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References
- 1 Scharf RE, Torner A, Marzec UM, Teirstein PS, Ruggeri ZM, Herker LA. Activation of platelets in blood perfusing angioplasty-damaged coronary arteries. Flow cytometric detection. Arterioscler Thromb 1992; 12: 1475-87.
- 2 Hantgan RR, Hindriks G, Taylor RG, Sixma JJ, de Groot PG. Glycoprotein IIb, von Willebrand factor, and glycoprotein IIb/IIIa are all involved in platelet adhesion to fibrin in flowing whole blood. Blood 1990; 76: 345-53.
- 3 Lages B, Weiss HJ. Evidence for a role of glycoprotein IIb/IIIa, distinct from its ability to support aggregation, in platelet activation by ionophores in the presence of extracellular divalent cations. Blood 1994; 83: 2549-59.
- 4 Coller BS, Kutok JL, Scudder LE, Galanakis DK, West SM, Rudomen GS, Springer KT. Studies of activated GP IIb/IIIa receptors on the luminal surface of adherent platelets. Paradoxical loss of luminal receptors when platelets adhere to high density fibrinogen. J Clin Invest 1993; 92: 2796-806.
- 5 Ruggeri ZM. Mechanism of shear-induced platelet adhesion and aggregation. Thromb Haemost 1993; 70: 119-23.
- 6 Shattil SJ. Regulation of platelet anchorage and signaling for integrin by integrin αIIb/βIIIa. Thromb Haemost 1993; 70: 224-8.
- 7 Kunicki TJ. Biochemistry of platelet-associated isoantigens. In: Platelet immunobiology: molecular and clinical aspects. Kunicki TJ, George JN. eds. Philadelphia: Lippincott; 1989. pp 99-120.
- 8 Weiss EJ, Bray PF, Tayback M, Schulman SP, Kickler TS, Becker LC, Weiss JL, Gerstenblith G, Goldschmidt-Clermont PJ. A polymorphism of a platelet glycoprotein receptor as an inherited risk factor for coronary thrombosis. N Engl J Med 1996; 334: 1090-4.
- 9 Carter AM, Ossei-Gerning N. Platelet glycoprotein IIIa PlA polymorphism and myocardial infarction [letter]. N Engl J Med 1996; 335: 1071.
- 10 Bray PF, Weiss EJ, Tayback M, Goldschmidt-Clermont PJ. PlA1/A2 polymorphism of platelet glycoprotein IIIa and risk of cardiovascular disease [letter]. Lancet 1997; 349: 1100-1.
- 11 Carter AM, Ossei-Gerning N, Grant PJ. Platelet glycoprotein IIIa PlA polymorphism in young men with myocardial infarction. Lancet 1996; 348: 485-6.
- 12 Carter AM, Ossei-Gerning N, Wilson IJ, Grant PJ. Association of the platelet PlA polymorphism of glycoprotein IIb/IIIa and the fibrinogen Bβ448 polymorphism with myocardial infarction and extent of coronary artery disease. Circulation 1997; 96: 1424-31.
- 13 Marian AJ, Brugada R, Kleiman NS. Platelet glycoprotein IIIa PlA polymorphism and myocardial infarction [letter]. N Engl J Med 1996; 335: 1071.
- 14 Ridker PM, Hennekens CH, Schmitz C, Stampfer MJ, Lindpaintner K. PlA1/A2 polymorphism of platelet glycoprotein IIIa and risk of myocardial infarction, stroke, and venous thrombosis. Lancet 1997; 349: 385-9.
- 15 Samani NJ, Lodwick D. Glycoprotein IIIa polymorphism and risk of myocardial infarction. Cardiovasc Res 1997; 33: 693-7.
- 16 Fuster V, Lewis A. Conner Memorial Lecture. Mechanism leading to myocardial infarction: insights from studies of vascular biology. Circulation 1994; 90: 2126-46.
- 17 Fuster V, Braunwald E. Unstable Angina. Definition, pathogenesis, and classification. In: Atherosclerosis and coronary artery disease. Fuster V, Ross R, Topol EJ. eds. Philadelphia: Lippincott-Raven Publishers; 1996. pp 1285-97.
- 18 Miller SA, Dykes DD, Polesky HF. A simple salting out procedure for extracting DNA for human nucleated cell. Nucleic Acids Res 1988; 16: 1215.
- 19 Mickey RM, Greenland S. The impact of confounder selection criteria on effect estimation. Am J Epidemiol 1989; 129: 125-37.
- 20 Von der Borne AEG, Decary F. Nomenclature of platelet specific antigen. Transfusion 1990; 30: 477.
- 21 Simsek S, Faber NM, Bleeker PM. Determination of human platelet antigen frequencies in the Dutch population by immunophenotyping and DNA (allele-specific restriction enzyme) analysis. Blood 1993; 81: 835-40.
- 22 Kim HO, Jin Y, Kickler TS, Blakemore K, Kwon OH, Bray PF. Gene frequencies of the five major human platelet antigens in African American, white and Korean populations. Transfusion 1995; 35: 963-7.
- 23 Wacholder S, McLaughlin JK, Silverman DT, Mandel JS. Selection of controls in case-controls studies. I. Principles. Am J Epidemiol 1992; 135: 1019-28.
- 24 Fuster V, Badimon L, Badimon JJ, Chesebro JH. The pathogenesis of coronary artery disease and the acute coronary syndromes. N Engl J Med 1992; 326: 242-250 310-8.
- 25 Lefkovits J, Plow EF, Topol EJ. Platelet glycoprotein IIb/IIIa receptors in cardiovascular medicine. N Engl J Med 1995; 332: 1553-9.