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A Eis

Publications and source records attributed to A Eis.

4 recordsLinked to original sources

Role of peroxynitrite in altered fetal-placental vascular reactivity in diabetes or preeclampsia.

Oxidative stress may increase production of superoxide and nitric oxide, leading to formation of prooxidant peroxynitrite to cause vascular dysfunction. Having found nitrotyrosine residues, a marker of peroxynitrite action, in placental vessels of preeclamptic and diabetic pregnancies, we determined whether vasoreactivity is altered in these placentas and treatment with peroxynitrite produces vascular dysfunction. The responses of diabetic, preeclamptic, and normal placentas to increasing concentrations of the vasoconstrictors U-46619 (10(-9)-10(-7) M) and ANG II (10(-9)-10(-7) M) and the vasodilators glyceryl trinitrate (10(-9)-10(-7) M) and prostacyclin (PGI(2); 10(-8)-10(-6) M) were compared as were responses to these agents in normal placentas before and after treatment with 3.16 x 10(-4) M peroxynitrite for 30 min. Responses to both vasoconstrictors and vasodilators were significantly attenuated in diabetic and preeclamptic placentas compared with controls. Similarly, responses to U-46619, nitroglycerin, and PGI(2), but not ANG II, were significantly attenuated following peroxynitrite treatment. The presence of nitrotyrosine residues confirmed peroxynitrite interaction with placental vessels. Overall, our data suggest that peroxynitrite formation is capable of attenuating vascular responses in the human placenta.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

Transfer of aspirin across the perfused human placental cotyledon.

Pregnancy-induced hypertension is associated with a reduction in prostacyclin synthesis that is relative to normotensive pregnancy, whereas thromboxane A2 synthesis is unchanged or increased. The net effect is a decreased prostacyclin/thromboxane ratio that may result in the reduced fetal-placental blood flow seen in pregnancy-induced hypertension because thromboxane is known to constrict this circulation. Low-dose aspirin (acetylsalicylic acid), which is used to treat pregnancy-induced hypertension, selectively inhibits thromboxane synthesis and therefore may alter fetal-placental blood flow. We have investigated the transfer of acetylsalicylic acid in the perfused human placental cotyledon and its effects on fetal-placental perfusion pressure. Human placental cotyledons were perfused with tissue culture medium 199 plus 5% polyvinylpyrrolidone that was gassed with 95% oxygen/5% carbon dioxide at flow rates of 10 ml/min (maternal) and 4 ml/min (fetal). Acetylsalicylic acid (10(-5) mol/L) was added to the maternal circuit, and cotyledons were perfused for 1 hour with aliquots taken from a closed fetal circuit every 5 minutes. Acetylsalicylic acid was assayed by spectrofluorometry at 306/412 nm. Our data indicate an initial rapid transfer of acetylsalicylic acid during the first 5 minutes into the fetal-placental circulation, the concentration then decreased to a steady state at 0.4 x 10(-5) mol/L. Resting perfusion pressure of both maternal and fetal circulation did not change after the addition of acetylsalicylic acid to maternal perfusate and transfer to the fetal circulation.

Aspirin↗

Oxidative stress causes vascular dysfunction in the placenta.

Increased production of superoxide and nitric oxide may produce oxidative stress in the placenta by formation of the prooxidant peroxynitrite, which itself causes vascular dysfunction. Nitrotyrosine residues, which are a marker of peroxynitrite formation and action, are found in placental vessels of preeclamptic and diabetic pregnancies, indicating oxidative stress. Treatment of the placental vasculature with authentic peroxynitrite in vitro attenuates responses both to vasoconstrictors such as the thromboxane mimetic U46619 and to vasodilators, including glyceryl trinitrate and prostacyclin, indicating it has caused vascular dysfunction. Further, the responses of the fetal-placental vasculature of diabetic and preeclamptic placentae to these same vasoconstrictor and vasodilator agents are significantly attenuated when compared to responses in normal control placentae. Together these data suggest there may be a cause and effect relationship between formation and action of peroxynitrite and vascular dysfunction in the placenta of both preeclamptic and diabetic pregnancies. The presence of such attenuated vascular responses indicates that perhaps the placenta may not be able to adequately respond to demands for altered blood flow in situations where this is necessary in preeclamptic or diabetic pregnancies, thus leading to further fetal compromise.

Blood Vessels↗

Determination of non-bilayer phospholipid arrangements and their antibodies in placentae and sera of patients with hypertensive disorders of pregnancy.

Studies suggest that preeclampsia (PE) originates in the placenta and is associated with deficient trophoblast invasion of spiral arteries. The direct cause remains unknown, but preeclampsia is often associated with circulating factors that can induce generalized endothelial dysfunction. Antiphospholipid antibodies (APA) in circulation are also associated with vascular diseases. Although the quantification of APA is not currently used as a prognostic of the risk of PE, studies suggest that thrombophilias play a role in PE pathogenesis. In fact, the pathology of placentae from PE and Antiphospholipid syndrome patients is similar; atherosis, thrombosis and infarction, and endothelium activation represent the pathological mechanisms. We identified a new antibody which recognizes non-bilayer phospholipid arrangements (NPA) in membrane models and in cell membranes in vivo, and which triggered an autoimmune-like disease in mice. We evaluated the presence of NPA in the placentae and in sera, and whether NPA induced NPA antibodies in patients with hypertensive disorders of pregnancy (HDP). Results showed increased levels of NPA in the syncytiotrophoblast, extravillous cytotrophoblast, syncytial knots and the amnion epithelial cell membranes of the placenta, as well as increases in NPA and NPA antibodies in sera from HDP patients, when compared with controls. This suggests that NPA derived from placenta could be one of multiple factors associated with pregnancy pathologies.

Antibodies, Antiphospholipid↗