Beck T R, Hassid A, Dunn M J
J Pharmacol Exp Ther. 1980 Oct;215(1):15-9.
Arginine vasopressin (AVP) stimulates renal prostaglandin (PG) production which is thought to inhibit vasopressins' antidiuretic action. Using rat renal medullary cells in culture (RMIC), we compared the ability of the following peptides which possess different biological activities to stimulate prostaglandin biosynthesis: AVP (high antidiuretic and pressor activities); 1-desamino-8-D-arginine vasopressin (a synthetic peptide with high antidiuretic and no pressor activity); and oxytocin (intermediate pressor, low antidiuretic activity). Radiometric thin-layer chromatography of supernatant media from cells incubated with octatritiated or [14C]arachidonic acid revealed only one radiolabeled peak which co-migrated with PGE2. Radioimmunoassay confirmed that PGE2 was the only prostaglandin synthesized by RMIC. Incubation of cells with AVP (1 nM to 3 microM) increased PGE2 synthesis measured by radioimmunoassay in a concentration-dependent fashion up to 2 1/2-fold over control; 1-desamino-8-D-arginine did not increase PGE2 synthesis. Oxytocin stimulated PGE2 synthesis, but was less potent than AVP. Preincubation of RMIC with [1-(beta-mercapto-beta, beta-cyclopentamethylene propionic acid)-4-valine, 8-D-arginine]vasopressin, a synthetic nonpressor, nonantidiuretic antagonists of AVP's pressor activity, completely blocked the ability of AVP to stimulate PGE2 synthesis. We conclude that the ability of AVP to stimulate PGE2 synthesis in RMIC is related to its pressor, not its antidiuretic, activity.
精氨酸加压素(AVP)可刺激肾脏前列腺素(PG)生成,而这被认为会抑制加压素的抗利尿作用。我们使用培养的大鼠肾髓质细胞(RMIC),比较了以下具有不同生物学活性的肽刺激前列腺素生物合成的能力:AVP(高抗利尿和升压活性);1-去氨基-8-D-精氨酸加压素(一种具有高抗利尿活性且无升压活性的合成肽);以及催产素(中等升压、低抗利尿活性)。用八氚化或[14C]花生四烯酸孵育细胞后,对上清培养基进行放射性薄层色谱分析,结果显示只有一个放射性标记峰,其迁移位置与PGE2相同。放射免疫测定证实PGE2是RMIC合成的唯一前列腺素。用AVP(1 nM至3 microM)孵育细胞,通过放射免疫测定发现,PGE2合成以浓度依赖方式增加,最高可达对照的2.5倍;1-去氨基-8-D-精氨酸不会增加PGE2合成。催产素可刺激PGE2合成,但效力低于AVP。用[1-(β-巯基-β,β-环戊亚甲基丙酸)-4-缬氨酸,8-D-精氨酸]加压素(一种合成的无升压、无抗利尿活性的AVP升压活性拮抗剂)对RMIC进行预孵育,可完全阻断AVP刺激PGE2合成的能力。我们得出结论,AVP刺激RMIC中PGE2合成的能力与其升压活性有关,而非抗利尿活性。