Dipartimento di Scienze del Farmaco, Università di Catania , Viale A. Doria 6, 95125 Catania, Italy.
Institute of Neuroscience and Department of Pharmacology, Faculty of Medicine, University of Granada , Avenida de Madrid 11, E-18012 Granada, Spain.
J Med Chem. 2018 Jan 11;61(1):372-384. doi: 10.1021/acs.jmedchem.7b01584. Epub 2017 Dec 20.
Methoxycarbonyl-1-phenyl-2-cyclopropylmethyl based derivatives cis-(+)-1a [cis-(+)-MR200], cis-(-)-1a [cis-(-)-MR201], and trans-(±)-1a [trans-(±)-MR204], have been identified as new potent sigma (σ) receptor ligands. In the present paper, novel enantiomerically pure analogues were synthesized and optimized for their σ receptor affinity and selectivity. Docking studies rationalized the results obtained in the radioligand binding assay. Absolute stereochemistry was unequivocally established by X-ray analysis of precursor trans-(+)-5a as camphorsulfonyl derivative 9. The most promising compound, trans-(+)-1d, showed remarkable selectivity over a panel of more than 15 receptors as well as good chemical and enzymatic stability in human plasma. An in vivo evaluation evidenced that trans-(+)-1d, in contrast to trans-(-)-1d, cis-(+)-1d, or cis-(-)-1d, which behave as σ antagonists, exhibited a σ agonist profile. These data clearly demonstrated that compound trans-(+)-1d, due to its σ agonist activity and favorable receptor selectivity and stability, provided an useful tool for the study of σ receptors.
基于甲氧羰基-1-苯基-2-环丙基甲基的衍生物顺式-(+)-1a[顺式-(+)-MR200]、顺式-(-)-1a[顺式-(-)-MR201]和反式-(±)-1a[反式-(±)-MR204]已被确定为新型有效的σ(σ)受体配体。在本论文中,合成了新型对映体纯类似物,并对其σ受体亲和力和选择性进行了优化。对接研究解释了放射性配体结合测定中获得的结果。通过对前体反式-(+)-5a作为樟脑磺酰衍生物 9 的 X 射线分析,明确确定了绝对立体化学。最有前途的化合物反式-(+)-1d 对超过 15 个受体表现出显著的选择性,并且在人血浆中具有良好的化学和酶稳定性。体内评估表明,与反式-(-)-1d、顺式-(+)-1d 或顺式-(-)-1d 相比,反式-(+)-1d 表现出 σ 激动剂特性,而后者表现为 σ 拮抗剂。这些数据清楚地表明,化合物反式-(+)-1d 由于其 σ 激动剂活性以及有利的受体选择性和稳定性,为 σ 受体的研究提供了有用的工具。