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首页> 外文期刊>Journal of Pharmacy and Pharmacology >Cell‐based, animal and H 1 1 receptor binding studies relative to the sedative effects of ketotifen and norketotifen atropisomers
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Cell‐based, animal and H 1 1 receptor binding studies relative to the sedative effects of ketotifen and norketotifen atropisomers

机译:基于细胞的,动物和H11 1受体结合研究相对于Ketotifen和NorketotIfen Atropisomers的镇静作用

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Abstract Objectives Ketotifen (K) and its active metabolite norketotifen (N) exist as optically active atropisomers. They both have antihistaminic and anti‐inflammatory properties but the S‐atropisomer of N (SN) causes less sedation than K and RN in rodents. This study investigated whether this could be related to a lower concentration of SN in brain or a lower affinity of SN for rat brain H 1 receptors. Methods Ketotifen and norketotifen atropisomers were quantified using a validated chiral HPLC assay. RBE4 and Caco‐2 cell monolayers were used in uptake and permeability studies, respectively. Free and total brain‐to‐plasma (B/P) ratios were determined after injecting racemic K and N into rat tail veins. Affinity for rat brain H 1 receptors (K I ) was determined using the [ 3 H]mepyramine binding assay. Key findings Uptake and permeation studies indicate no stereoselective transport for K or N. B/P ratios reveal the brain concentration of N is lower than K with no stereoselective transport into brain. Finally, the [ 3 H]mepyramine binding assay shows SN has the lowest affinity for rat brain H 1 receptors. Conclusion The lower sedative effect of SN in rodents is probably due to a combination of a lower uptake of N than K into the brain and less affinity of SN for CNS H 1 receptors.
机译:摘要目标Ketotifen(k)及其活性代谢物Norketotifen(n)作为光学活性的阿托比单体存在。它们都具有抗炎性和抗炎性质,但是N(Sn)的S-与诱拐的S-二均聚物比K和RN在啮齿动物中较少。本研究调查了这是否可能与大脑脑中的较低浓度或对大鼠脑H1受体的较低亲和力有关。方法使用经过验证的手性HPLC测定量定量ketotifen和Norketototifen定性剂。 RBE4和CACO-2细胞单层分别用于摄取和渗透性研究。在将外消旋K和N注入大鼠尾静脉后,测定自由和总脑血浆(B / P)比率。使用[3 H]梅哌胺结合测定法测定对大鼠脑H1的亲和力(K i)。关键发现摄取和渗透性研究表明,K或N的立体选择性转运。B / P比率显示N的脑浓度低于K,没有立体选择性输送到脑中。最后,[3 h]甲嘧胺结合测定显示Sn具有对大鼠脑H1受体的最低亲和力。结论Sn在啮齿动物中的Sn的较低镇静效应可能是由于N比k的较低摄取到大脑中的组合,并且对于CNS H1受体的较少的亲和力。

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