47. Van der Mooren MJ, Wouters MG, Blom HJ, Schellekens LA, Eskes TK, Rolland R. Hormone replacement therapy may reduce high serum homocysteine in postmenopausal women. Eur J Clin Invest 24: 733-736, 1994.
48. Aronow WS, Ahn C. Association between plasma homocysteine and coronary artery disease in older persons. Am J Cardiol 80: 1216-1218, 1997.
49. Mager A, Lalezari S, Shohat T, Birnbaum Y, Adler Y, Magal N, Shohat M. Methylenetetrahydrofolate reductase genotypes and early-onset coronary artery disease. Circulation 100: 2406-2410, 1999.
50. Jensen T, Borch-Johnsen K, Kofoed-Enevoldsen A, Deckert T. Coronary heart disease in young type 1 (insulin-dependent) diabetic patients with and without diabetic nephropathy: incidence and risk factors. Diabetologia 30: 144-148, 1987.
51. Jacques PF, Bostom AG, Wilson PW, Rich S, Rosenberg IH, Selhub J. Determinants of plasma total homocysteine concentration in the Framingham Offspring cohort. Am J Clin Nutr 73: 613-621, 2001.
52. Guinotte CL, Burns MG, Axume JA, Hata H, Urrutia TF, Alamilla A, McCabe D, Singgih A, Cogger EA, Caudill MA. Methylenetetrahydrofolate reductase 677C–>T variant modulates folate status response to controlled folate intakes in young women. J Nutr 133: 1272-1280, 2003.
53. Chao CL, Tsai HH, Lee CM, Hsu SM, Kao JT, Chien KL, Sung FC, Lee YT. The graded effect of hyperhomocysteinemia on the severity and extent of coronary atherosclerosis. Atherosclerosis 147: 379-386, 1999.
54. Yilmaz H, Isbir S, Agachan B, Ergen A, Farsak B, Isbir T. C677T mutation of methylenetetrahydrofolate reductase gene and serum homocysteine levels in Turkish patients with coronary artery disease. Cell Biochem Funct 24: 87-90, 2006.
55. Temel İ, Özerol E. Homosistein metabolizma bozuklukları ve vasküler hastalıklarla ilişkisi. İnönü Ün Tıp Fak Derg 9, 149-157. 2002.
56. Nygard O, Vollset SE, Refsum H, Stensvold I, Tverdal A, Nordrehaug JE, Ueland M, Kvale G. Total plasma homocysteine and cardiovascular risk profile. The Hordaland Homocysteine Study. JAMA 274: 1526-1533, 1995.
57. Stamler J, Vaccaro O, Neaton JD, Wentworth D. Diabetes, other risk factors, and 12-yr cardiovascular mortality for men screened in the Multiple Risk Factor Intervention Trial. Diabetes Care 16: 434-444, 1993.
44 – 44 –



57. SAYFAYA BENZER SAYFALAR

Erişkin dikkat eksikliği hiperaktivite bozukluğu hastalarında kan homosistein düzeyleri - Sayfa 69
140. Hademenos J, Lberts MJ, Awad I, et al. Advances in the genetics of cerebrovascular diseases and stroke. Neurology 2001;56:997-1008. 141. Kim Y. Methylenetetrahydrofolate reductase polymorphisms, folate, and cancer risk: A paradigm of gene-nutrient interactions in carcinogenesis. Nutrition Reviews 2000; 58:205-17. 142. Kostulas K, Crisby M, Huang WX. A Methylenetetrahydrofolate reductase...
Homosisteinin yağ dokusunda okside LDL (OxLDL) reseptörü gen ekspresyonu üzerine etkisi - Sayfa 75
75 97. Kang, S., Wong, P.W.K., Susmano, A., et al.: Thermolabile methylenetetrahydrofolate reductase: An inherited risk factor for coronary artery disease. J Hum Genet, 48:536-545,1991. 98. Kang, S., Passen, E.L., Ruggie, N., et al.:Thermolabile defect of methylenetetrahydrofolate reductase in coronary artery disease. Circulation, 88:14631469, 1993. 99. Perna, A.F., Castaldo, P., Ingrosso, D., ...
Konjenital kalp hastalıkları ve homosistein metabolizması - Sayfa 58
53. Nelen WL, Blom HJ, Thomas CM, Steegers EA, Eskes T. Methylenetetrahydrofolate reductase polymorphism affects the change in homocysteine and folate concentrations resulting from low dose folic acid supplementation in women with unexplained recurrent miscarriages. J Nutr 1998; 128: 1336-1341. 54. Hague WM. Homocysteine and pregnancy. Best Pract Res Clin Obstet Gynaecol 2003; 17: 459-469. 55. S...

57. SAYFADAKI ANAHTAR KELIMELER

plasma
risk
with
coronary
clin
folate


57. SAYFA ICERIGI

47. Van der Mooren MJ, Wouters MG, Blom HJ, Schellekens LA, Eskes TK, Rolland R. Hormone replacement therapy may reduce high serum homocysteine in postmenopausal women. Eur J Clin Invest 24: 733-736, 1994.
48. Aronow WS, Ahn C. Association between plasma homocysteine and coronary artery disease in older persons. Am J Cardiol 80: 1216-1218, 1997.
49. Mager A, Lalezari S, Shohat T, Birnbaum Y, Adler Y, Magal N, Shohat M. Methylenetetrahydrofolate reductase genotypes and early-onset coronary artery disease. Circulation 100: 2406-2410, 1999.
50. Jensen T, Borch-Johnsen K, Kofoed-Enevoldsen A, Deckert T. Coronary heart disease in young type 1 (insulin-dependent) diabetic patients with and without diabetic nephropathy: incidence and risk factors. Diabetologia 30: 144-148, 1987.
51. Jacques PF, Bostom AG, Wilson PW, Rich S, Rosenberg IH, Selhub J. Determinants of plasma total homocysteine concentration in the Framingham Offspring cohort. Am J Clin Nutr 73: 613-621, 2001.
52. Guinotte CL, Burns MG, Axume JA, Hata H, Urrutia TF, Alamilla A, McCabe D, Singgih A, Cogger EA, Caudill MA. Methylenetetrahydrofolate reductase 677C–>T variant modulates folate status response to controlled folate intakes in young women. J Nutr 133: 1272-1280, 2003.
53. Chao CL, Tsai HH, Lee CM, Hsu SM, Kao JT, Chien KL, Sung FC, Lee YT. The graded effect of hyperhomocysteinemia on the severity and extent of coronary atherosclerosis. Atherosclerosis 147: 379-386, 1999.
54. Yilmaz H, Isbir S, Agachan B, Ergen A, Farsak B, Isbir T. C677T mutation of methylenetetrahydrofolate reductase gene and serum homocysteine levels in Turkish patients with coronary artery disease. Cell Biochem Funct 24: 87-90, 2006.
55. Temel İ, Özerol E. Homosistein metabolizma bozuklukları ve vasküler hastalıklarla ilişkisi. İnönü Ün Tıp Fak Derg 9, 149-157. 2002.
56. Nygard O, Vollset SE, Refsum H, Stensvold I, Tverdal A, Nordrehaug JE, Ueland M, Kvale G. Total plasma homocysteine and cardiovascular risk profile. The Hordaland Homocysteine Study. JAMA 274: 1526-1533, 1995.
57. Stamler J, Vaccaro O, Neaton JD, Wentworth D. Diabetes, other risk factors, and 12-yr cardiovascular mortality for men screened in the Multiple Risk Factor Intervention Trial. Diabetes Care 16: 434-444, 1993.
44 – 44 –

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