Do alpha 2-adrenoceptors and imidazoline binding sites coexist in the human term placenta? Evidence from direct binding studies
Krisztina Bagaméry, Levente Kovács, Tibor Nyári, György Falkay
Abstract
Krisztina Bagaméry, Levente Kovács, Tibor Nyári, György Falkay
Abstract
Alpha2-Adrenergic receptors and non-adrenergic imidazoline binding sites (IBS) in human placental membranes were investigated by means of the radioligands [3H]-RX 821002 and [3H]-RX 781094 (idazoxan) respectively. Human term placentae (38-40 weeks) were obtained immediately after vaginal delivery. The specific binding of the alpha2-subtype-selective [3H]-RX 821002 confirms the presence of alpha2-adrenoceptors in the human placenta, while [3H]-idazoxan binds to non-adrenergic IBS. The sites were characterized by displacement analyses with various imidazoline and non-imidazoline drugs. The presence of an endogenous ligand for IBS has not yet been demonstrated. Clonidine displacing substance (CDS) was recently identified as agmatine; it recognizes both alpha2 and imidazoline receptors. This phenomenon was studied in crude placental membranes. The studies revealed that: (i) alpha2-adrenoceptors coexist with non-adrenergic IBS in human placental membranes; (ii) there is a strong probability that alpha2-adrenoceptors and IBS are pharmacologically distinct; and (iii) agmatine binds to placental alpha2 and imidazoline receptors with different affinities.
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Alpha2-Adrenergic receptors and non-adrenergic imidazoline binding sites (IBS) in human placental membranes were investigated by means of the radioligands [3H]-RX 821002 and [3H]-RX 781094 (idazoxan) respectively. Human term placentae (38-40 weeks) were obtained immediately after vaginal delivery. The specific binding of the alpha2-subtype-selective [3H]-RX 821002 confirms the presence of alpha2-adrenoceptors in the human placenta, while [3H]-idazoxan binds to non-adrenergic IBS. The sites were characterized by displacement analyses with various imidazoline and non-imidazoline drugs. The presence of an endogenous ligand for IBS has not yet been demonstrated. Clonidine displacing substance (CDS) was recently identified as agmatine; it recognizes both alpha2 and imidazoline receptors. This phenomenon was studied in crude placental membranes. The studies revealed that: (i) alpha2-adrenoceptors coexist with non-adrenergic IBS in human placental membranes; (ii) there is a strong probability that alpha2-adrenoceptors and IBS are pharmacologically distinct; and (iii) agmatine binds to placental alpha2 and imidazoline receptors with different affinities.
Key concepts: Imidazoline receptor, Agmatine, Idazoxan, Receptor, Guanabenz, Endocrinology, Adrenergic receptor, Internal medicine