切换至 "中华医学电子期刊资源库"

中华产科急救电子杂志 ›› 2013, Vol. 02 ›› Issue (03) : 168 -171. doi: 10.3877/cma.j.issn.2095-3259.2013.03.004

所属专题: 文献

专家论坛

子痫前期脂质代谢异常
沈虹1, 程蔚蔚1,()   
  1. 1. 200030 上海交通大学医学院附属国际和平妇幼保健院
  • 收稿日期:2013-06-16 出版日期:2013-08-18
  • 通信作者: 程蔚蔚

Abnormal lipid metabolism in preeclampsia

Hong SHEN1, Wei­wei CHENG1()   

  • Received:2013-06-16 Published:2013-08-18
  • Corresponding author: Wei-wei CHENG
引用本文:

沈虹, 程蔚蔚. 子痫前期脂质代谢异常[J]. 中华产科急救电子杂志, 2013, 02(03): 168-171.

Hong SHEN, Wei­wei CHENG. Abnormal lipid metabolism in preeclampsia[J]. Chinese Journal of Obstetric Emergency(Electronic Edition), 2013, 02(03): 168-171.

[1]
Shahzya SH, Naveed S, Dilys JF. Lipoprotein metabolism and vascular complications in pregnancy. Clin Lipidol, 2009, 4(1):91-102.
[2]
Herrera E, Ortega-Senovilla H. Maternal lipid metabolism during normal pregnancy and its implications to fetal development. Clin Lipidol, 2010, 5(6):899-911.
[3]
Wiznitzer A, Mayer A, Novack V, et al. Association of lipid levels during gestation with preeclampsia and gestational diabetes mellitus: a population-based study. Am J Obstet Gynecol, 2009, 201(5):482.e1-e8.
[4]
Ray JG, Diamond P, Singh G, et al. Brief overview of maternal triglycerides as a risk factor for pre-eclampsia. BJOG, 2006, 113(4):379-386.
[5]
Lima VJ, Andrade CR, Ruschi GE, et al. Serum lipid levels in pregnancies complicated by preeclampsia. Sao Paulo Med J, 2011, 129(2):73-76.
[6]
Kashinakunti SV, Sunitha H, Gurupadappa K, et al. Lipid profile in preeclampsia-a case control study. journal of clinical and diagnostic research [serial online] 2010, 4:2748-2751.

URL    
[7]
Sattar N, Bendomir A, Berry C, et al. Lipoprotein subfraction concentrations in preeclampsia: pathogenic parallels to atherosclerosis. Obstet Gynecol,1997, 89(3): 403-408.
[8]
Catarino C, Rebelo I, Belo L, et al. Fetal lipoprotein changes in pre-eclampsia. Acta Obstet Gynecol Scand, 2008, 87(6): 628-634.
[9]
Pushparaj JL, Subramanyam G. Dyslipidemia in preeclampsia-risk factor for future maternal cardiovascular diseases. Journal of Evolution of Medical and Dental Sciences, 2012, 1(4):487-495.

URL    
[10]
Endresen MJ, Lorentzen B, Henriksen T. Increased lipolytic activity and high ratio of free fatty acids to albumin in sera from women with preeclampsia leads to triglyceride accumulation in cultured endothelial cells. Am J Obstet Gynecol, 1992, 167(2):440-447.
[11]
Viñals M, Martínez-González J, Badimon JJ, et al. HDL-induced prostacyclin release in smooth muscle cells is dependent on cyclooxygenase-2 (COX-2). Arterioscler Thromb Vasc Biol, 1997, 17(12):3481-3488.
[12]
Shaaban YH, Aletebi F, Helal M, et al. Evaluation of the atherogenic role of lipoproteins and oxidized low-density lipoprotein in pre-eclampsia. Evidence Based Women′s Health Journal, 2012, 2(4):142-146.
[13]
Endresen MJ, Tøsti E, Heimli H, et al. Effects of free fatty acids found increased in women who develop pre-eclampsia on the ability of endothelial cells to produce prostacyclin, cGMP and inhibit platelet aggregation. Scand J Clin Lab Invest, 1994, 54(7):549-557.
[14]
Magnussen EB, Vatten LJ, Lund-Nilsen TI, et al. Prepregnancy cardiovascular risk factors as predictors of pre-eclampsia: population based cohort study. BMJ, 2007, 335(7627):978.
[15]
Haukkamaa L, Moilanen L, Kattainen A, et al. Pre-eclampsia is a risk factor of carotidartery atherosclerosis. Cerebrovasc Dis, 2009, 27(6):599-607.
[16]
Bellamy L, Casas JP, Hingorani AD, et al. Pre-eclampsia and risk of cardiovascular disease and cancer in later life: systematic review and meta-analysis. BMJ, 2007, 335(7627):974.
[17]
Portelinha A, Belo L, Cerdeira AS, et al. Lipid levels including oxidized LDL in women with history of preeclampsia. Hypertens Pregnancy, 2010, 29(1):93-100.
[18]
Hubel CA, Snaedal S, Ness RB, et al. Dyslipoproteinaemia in postmenopausal women with a history of eclampsia. BJOG, 2000, 107(6):776-784.
[19]
Qiu C, Coughlin KB, Frederick IO, et al. Dietary fiber intake in early pregnancy and risk of subsequent preeclampsia. Am J Hypertens, 2008, 21(8):903-909.
[20]
Brantsaeter AL, Haugen M, Samuelsen SO, et al. A dietary pattern characterized by high intake of vegetables, fruits, and vegetable oils is associated with reduced risk of preeclampsia in nulliparous pregnant Norwegian women. J Nutr, 2009, 139(6):1162-1168.
[21]
Costantine MM, Tamayo E, Lu F, et al. Using pravastatin to improve the vascular reactivity in a mouse model of soluble fms-like tyrosine kinase-1-induced preeclampsia. Obstet Gynecol, 2010, 116(1):114-120.
No related articles found!
阅读次数
全文


摘要