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Preeclampsia
LE WE PMID CA
Preeclampsia2270Praeeklampsie

Acute fatty liver of pregnancy

Aminopeptidase A

Autoantibodies Anti Angiotensin II Receptor 1

Eclampsia

Endoglin

Endothelial dysfunction

FLT1

Fms like tyrosine kinase1

HELLP syndrome

Neurokinin B

Pappalysin2

Placenta (BASKET)

Placental leucine aminopeptidase

Preeclampsia

Pregnancy (Diseases)

Pregnancy (Hyperemesis gravidarum)

Relaxin

Siglec6

2006  
1
Management of pre-eclampsia.
[16497761] BMJ 332(7539): 463-8 (2006)
2003  
2
Preeclampsia and eclampsia revisited.
[14513987] South Med J 96(9): 891-9 (2003)
2003  
3
Pre-eclampsia--still a disease of theories.
[15065637] Fukushima J Med Sci 49(2): 69-115 (2003)
1980  
4
Aetiology of pre-eclampsia: a review.
[7005440] J R Soc Med 73(12): 871-5 (1980)
2009  
5
The diagnosis and treatment of hypertensive disorders of pregnancy: new findings for antenatal and inpatient care.
[19997586] Dtsch Arztebl Int 106(45): 733-8 (2009)
2008  
6
Methods of prediction and prevention of pre-eclampsia: systematic reviews of accuracy and effectiveness literature with economic modelling.
[18331705] Health Technol Assess 12(6): iii-iv, 1-270 (2008)
2007  
7
Pathophysiology of the clinical manifestations of preeclampsia.
[17699462] Clin J Am Soc Nephrol 2(3): 543-9 (2007)
2009  
8
Vascular biology of preeclampsia.
[19087223] J Thromb Haemost 7(3): 375-84 (2009)
2008  
9
Pathophysiology of hypertension during preeclampsia: linking placental ischemia with endothelial dysfunction.
[18055511] Am J Physiol Heart Circ Physiol 294(2): H541-50 (2008)
2005  
10
Role of the renin-angiotensin system in the pathogenesis of preeclampsia.
[15753325] Am J Physiol Renal Physiol 288(4): F614-25 (2005)
2008  
11
Placental origins of preeclampsia: challenging the current hypothesis.
[18259009] Hypertension 51(4): 970-5 (2008)
2008  
12
Recent progress toward the understanding of the pathophysiology of hypertension during preeclampsia.
[18259004] Hypertension 51(4): 982-8 (2008)
2007  
13
Potential roles of angiotensin receptor-activating autoantibody in the pathophysiology of preeclampsia.
[17576854] Hypertension 50(2): 269-75 (2007)
2007  
14
The glomerular injury of preeclampsia.
[17634433] J Am Soc Nephrol 18(8): 2281-4 (2007)
2004  
15
New aspects in the pathophysiology of preeclampsia.
[15339993] J Am Soc Nephrol 15(9): 2440-8 (2004)
1998  
16
The structure-function relationship in preeclampsia.
[9773683] Kidney Int 54(4): 1394-5 (1998)
2006  
17
Soluble endoglin (sEng) joins the soluble fms-like tyrosine kinase (sFlt) receptor as a pre-eclampsia molecule.
[16870672] Nephrol Dial Transplant 21(11): 3052-4 (2006)
1997  
18
Postpartum renal lesions in women with pre-eclampsia.
[9430839] Nephrol Dial Transplant 12(12): 2488-93 (1997)
1984  
19
Interaction of renal disease and pregnancy.
[6376910] Kidney Int 25(3): 579-87 (1984)
2001  
20
Preeclampsia: from epidemiological observations to molecular mechanisms.
[11593296] Braz J Med Biol Res 34(10): 1227-35 (2001)
2007  
21
Preeclampsia and the kidney: footprints in the urine.
[17403396] Am J Obstet Gynecol 196(4): 287-8 (2007)
2009  
22
Preeclampsia: the role of angiogenic factors in its pathogenesis.
[19509125] Physiology (Bethesda) 24(-): 147-58 (2009)
2010  
23
Progress toward identifying potential markers for preeclampsia: role of agonistic autoantibody to the angiotensin II type I receptor.
[19996067] Hypertension 55(2): 236-7 (2010)
2005  
24
Preeclampsia: recent insights.
[16230510] Hypertension 46(6): 1243-9 (2005)
2008  
25
Preeclampsia pathogenesis: "triple a rating"-autoantibodies and antiangiogenic factors.
[18259040] Hypertension 51(4): 991-2 (2008)
2009  
26
2009  
27
Low catechol-O-methyltransferase and 2-methoxyestradiol in preeclampsia: more than a unifying hypothesis.
[19039028] Nephrol Dial Transplant 24(1): 31-3 (2009)
2007  
28
Soluble endoglin is an accurate predictor and a pathogenic molecule in pre-eclampsia.
[17210583] Nephrol Dial Transplant 22(3): 712-4 (2007)
2011  
29
Placental leucine aminopeptidase- and aminopeptidase A- deficient mice offer insight concerning the mechanisms underlying preterm labor and preeclampsia.
[21188170] J Biomed Biotechnol 2011(-): 286947 (2011)
2009  
30
Preeclampsia and soluble fms-like tyrosine kinase 1.
[19584199] J Clin Endocrinol Metab 94(7): 2252-4 (2009)
2010  
31
An immunological insight into the origins of pre-eclampsia.
[20388637] Hum Reprod Update 16(5): 510-24 (2010)
2010  
32
Combining biochemical and ultrasonographic markers in predicting preeclampsia: a systematic review.
[20044446] Clin Chem 56(3): 361-75 (2010)
2003  
33
Endothelial dysfunction in preeclampsia and eclampsia: current etiology and future non-invasive assessment.
[14719469] Isr Med Assoc J 5(10): 724-6 (2003)
2005  
34
The role of apoptosis in preeclampsia.
[15792265] Isr Med Assoc J 7(3): 178-81 (2005)
2006  
35
Endothelial dysfunction in pre-eclampsia.
[17332674] Pharmacol Rep 58 Suppl(-): 69-74 (2006)
2007  
36
A review of 93 cases of severe preeclampsia in Singapore: are there risk factors for complications?
[17728960] Singapore Med J 48(9): 808-12 (2007)
2006  
37
Immunology and genetic of preeclampsia.
[17162362] Clin Dev Immunol 13(2-4): 197-201 (2006)
2011  
38
Angiogenic factors and preeclampsia.
[21266263] Semin Nephrol 31(1): 33-46 (2011)
2004  
39
2009  
40
Severe preeclampsia-related changes in gene expression at the maternal-fetal interface include sialic acid-binding immunoglobulin-like lectin-6 and pappalysin-2.
[18818296] Endocrinology 150(1): 452-62 (2009)
2011  
41
Prevention of pre-eclampsia with low-dose aspirin.
[21654127] J Postgrad Med 57(2): 89-90 (2011)
2011  
42
A meta-analysis of low-dose aspirin for prevention of preeclampsia.
[21654128] J Postgrad Med 57(2): 91-5 (2011)
2009  
43
Estimation of proteinuria as a predictor of complications of pre-eclampsia: a systematic review.
[19317889] BMC Med 7(): 10 (2009)
2009  
44
Proteinuria as a predictor of complications of pre-eclampsia.
[19317890] BMC Med 7(-): 11 (2009)
2004  
45
The placental problem: linking abnormal cytotrophoblast differentiation to the maternal symptoms of preeclampsia.
[15236649] Reprod Biol Endocrinol 2(-): 53 (2004)
2010  
46
Neurokinin B and pre-eclampsia: a decade of discovery.
[20074343] Reprod Biol Endocrinol 8(-): 4 (2010)
2009  
47
Potential markers of preeclampsia--a review.
[19602262] Reprod Biol Endocrinol 7(-): 70 (2009)
2008  
48
Liver diseases unique to pregnancy.
[18541949] Medicina (Kaunas) 44(5): 337-45 (2008)
2009  
49
Role of the syncytium in placenta-mediated complications of preeclampsia.
[19535132] Thromb Res 124(4): 389-92 (2009)
2008  
50
Molecular mechanisms of preeclampsia.
[17553534] Microvasc Res 75(1): 1-8 (2008)
2010  
51
Dysregulated complement activation as a common pathway of injury in preeclampsia and other pregnancy complications.
[20427084] Placenta 31(7): 561-7 (2010)
2006  
52
New insights into the biology of preeclampsia.
[16421233] Biol Reprod 74(5): 772-6 (2006)
2009  
53
Preeclamptic toxemia: a disease ripe for proteomic discovery.
[19385936] Expert Rev Proteomics 6(2): 107-10 (2009)
2007  
54
Preeclampsia: a view through the danger model.
[17482268] J Reprod Immunol 76(1-2): 68-74 (2007)
2007  
55
Angiogenic factors and natural killer (NK) cells in the pathogenesis of preeclampsia.
[17490755] J Reprod Immunol 76(1-2): 23-9 (2007)
2009  
56
Novel approaches for mechanistic understanding and predicting preeclampsia.
[19836839] J Reprod Immunol 83(1-2): 134-8 (2009)

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