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  • Arginine-vasotocin  (1)
  • Diabetic embryopathy  (1)
  • 1
    ISSN: 1432-0428
    Keywords: Diabetic embryopathy ; myo-inositol ; prostaglandins ; neural tube ; mouse embryos
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary Neural tube defects in infants of diabetic mothers constitute an important and frequent cause of neonatal mortality/morbidity and long-term chronic handicaps. The mechanism by which normal neural tube fusion occurs is not known. The failure of rostral neural tube fusion seen in mouse embryos incubated in the presence of excess-D-glucose can be significantly prevented by the supplementation of myo-inositol to the culture medium. This protective effect of myo-inositol is reversed by indomethacin, an inhibitor of arachidonic acid metabolism leading to prostaglandin synthesis. Prostaglandin E2 added to the culture medium completely protects against the glucose-induced neural tube defect. These data suggest that the failure of neural tube fusion seen in diabetic embryopathy is mediated through a mechanism involving abnormalities in both the myo-inositol and arachidonic acid pathways, resulting in a functional deficiency of prostaglandins at a critical time of neural tube fusion.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-2013
    Keywords: Arginine-vasotocin ; Radioimmunoassay ; Avian osmoregulation
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract A radioimmunoassay for arginine-vasotocin (AVT), the antidiuretic principle in birds, was developed using the high cross-reactivity of AVT with an AVP antiserum raised in rabbits. This assay is specific for the measurement of AVT in serum of birds. The sensitivity and precision is such that serum AVT concentrations above 0.5 fmol/ml can be measured quantitatively. A serum AVT concentration of 5.1±1.4 fmol/ml was found in normally hydrated, fresh water adapted ducks with a serum osmolality of 293.7±2.2 mosmol/kg. When the same animals were acutely hydrated, no or〈0.5 fmol/ml AVT was present at an osmolality of 289.9±2.4 mosmol/kg. In salt water adapted ducks with a serum osmolality of 333.0±7.6 mosmol/kg, a serum AVT of 22.7±3.0 fmol/ml was found. When fresh water adapted ducks were hydrated and infused with different doses of AVT, a linear relationship between serum AVT and the amount infused was obtained. During AVT infusions, serum osmolality and urine flow rate were negatively correlated and urine osmolality was positively correlated with serum AVT.
    Type of Medium: Electronic Resource
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