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Distinction between surmountable and insurmountable selective AT1 receptor antagonists by use of CHO-K1 cells expressing human angiotensin II AT1 receptors

机译:通过使用表达人血管紧张素II AT1受体的CHO-K1细胞来区分可克服和不可克服的选择性AT1受体拮抗剂

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摘要

CHO-K1 cells that were stably transfected with the gene for the human AT1 receptor (CHO-AT1 cells) were used for pharmacological studies of non-peptide AT1 receptor antagonists.In the presence of 10 mM LiCl, angiotensin II caused a concentration-dependent and long-lasting increase of inositol phosphates accumulation with an EC50 of 3.4 nM. No angiotensin II responses are seen in wild-type CHO-K1 cells.[3H]-Angiotensin II bound to cell surface AT1 receptors (dissociates under mild acidic conditions) and is subject to rapid internalization.Non-peptide selective AT1 antagonists inhibited the angiotensin II (0.1 μM) induced IP accumulation and the binding of [3H]-angiotensin II (1 nM) with the potency order: candesartan > EXP3174 > irbesartan > losartan. Their potencies are lower in the presence of bovine serum albumin.Preincubation with the insurmountable antagonist candesartan decreased the maximal angiotensin II induced inositol phosphate accumulation up to 94% and, concomitantly, decreased the maximal binding capacity of the cell surface receptors. These inhibitory effects were half-maximal for 0.6 nM candesartan and were attenuated by simultaneous preincubation with 1 μM losartan indicating a syntopic action of both antagonists.Losartan caused a parallel rightward shift of the angiotensin II concentration-response curves and did not affect the maximal binding capacity. EXP3174 (the active metabolite of losartan) and irbesartan showed a mixed-type behavior in both functional and binding studies.Reversal of the inhibitory effect was slower for candesartan as compared with EXP3174 and irbesartan and it was almost instantaneous for losartan, suggesting that the insurmountable nature of selective AT1 receptor antagonists in functional studies was related to their long-lasting inhibition.
机译:稳定转染人类AT1受体基因的CHO-K1细胞(CHO-AT1细胞)用于非肽AT1受体拮抗剂的药理研究。在10μmMLiCl存在下,血管紧张素II引起浓度依赖性并长期增加肌醇磷酸盐的积累,EC50为3.4 nM。在野生型CHO-K1细胞中未观察到血管紧张素II反应。[3H]-血管紧张素II与细胞表面AT1受体结合(在弱酸性条件下解离)并迅速内在化。非肽选择性AT1拮抗剂抑制血管紧张素。 II(0.1?μM)诱导IP积累和[3H]-血管紧张素II(1 nM)的结合,其效力顺序为:坎地沙坦> EXP3174>厄贝沙坦>氯沙坦。在存在牛血清白蛋白的情况下,它们的效力较低。与不可克服的拮抗剂坎地沙坦的预温育可将最大的血管紧张素II诱导的肌醇磷酸酯积累降低至94%,并因此降低了细胞表面受体的最大结合能力。这些抑制作用对0.6 nM坎地沙坦而言是最大的一半,并通过与1μM氯沙坦同时预孵育而减弱,表明这两种拮抗剂具有同位作用.Losartan引起血管紧张素II浓度-反应曲线平行向右移动,但不影响最大结合容量。 EXP3174(氯沙坦的活性代谢产物)和厄贝沙坦在功能和结合研究中均表现出混合型行为,与EXP3174和厄贝沙坦相比,坎地沙坦的抑制作用逆转较慢,氯沙坦几乎是瞬时的,这表明不可克服功能研究中选择性AT1受体拮抗剂的性质与其持久抑制有关。

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