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多巴胺转运体上(S)-2β-取代的3α-(双[4-氟苯基]甲氧基)托烷和(R)-2β-取代的3β-(3,4-二氯苯基)托烷的构效关系比较

Structure-activity relationship comparison of (S)-2beta-substituted 3alpha-(bis[4-fluorophenyl]methoxy)tropanes and (R)-2beta-substituted 3beta-(3,4-dichlorophenyl)tropanes at the dopamine transporter.

作者信息

Zou Mu-Fa, Kopajtic Theresa, Katz Jonathan L, Newman Amy Hauck

机构信息

Medicinal Chemistry and Psychobiology Sections, Intramural Research Program, National Institute on Drug Abuse, National Institutes of Health, 5500 Nathan Shock Drive, Baltimore, Maryland 21224, USA.

出版信息

J Med Chem. 2003 Jul 3;46(14):2908-16. doi: 10.1021/jm0300375.

DOI:10.1021/jm0300375
PMID:12825932
Abstract

Extensive structure-activity relationships at the dopamine transporter (DAT) have been developed around two classes of tropane-based ligands. Opposing stereoselectivity and divergent structural requirements for optimal DAT binding suggest that these tropane-based DAT inhibitors may not access identical binding domains. To further investigate this hypothesis, a series of (S)-2beta-carboalkoxy-3alpha-(bis[4-fluorophenyl]methoxy)tropanes (11a-f, 13-16) and their identically (R)-2beta-substituted 3beta-(3,4-dichlorophenyl)tropanes (3, 5a-d) were prepared and evaluated for binding at the DAT and for inhibition of [(3)H]dopamine uptake in rat brain. These studies showed that most of the identically 2-carboalkoxy-substituted analogues, within the two classes of compounds, bind with high affinity to DAT (K(i) = 5.5-100 nM), albeit with opposite stereochemistry. However, the larger azido- (15) and isothiocyanato- (16) (S)-2beta-carbophenylethoxy-3alpha-(bis[4-fluorophenyl]methoxy)tropanes demonstrated a significant decrease in DAT binding potency (IC(50) = 210 and 537 nM, respectively), suggesting that the DAT does not tolerate 2-position steric bulk in the benztropine class, as it does with the 2-substituted 3-aryltropanes. In addition, binding affinities at the serotonin transporter, norepinephrine transporter, and muscarinic receptors were evaluated and compared for compounds 2, 3, 11a-e, and 13. Together, the binding profiles across these systems demonstrated significant differences between these two classes of tropane-based ligands, which may be exploited toward the discovery of a cocaine-abuse pharmacotherapeutic.

摘要

围绕两类基于托烷的配体,已经建立了多巴胺转运体(DAT)广泛的构效关系。相反的立体选择性以及对最佳DAT结合不同的结构要求表明,这些基于托烷的DAT抑制剂可能无法作用于相同的结合域。为了进一步研究这一假设,制备了一系列(S)-2β-烷氧羰基-3α-(双[4-氟苯基]甲氧基)托烷(11a-f,13-16)及其对应的(R)-2β-取代的3β-(3,4-二氯苯基)托烷(3, 5a-d),并评估它们在DAT上的结合情况以及对大鼠脑内[³H]多巴胺摄取的抑制作用。这些研究表明,在这两类化合物中,大多数相同的2-烷氧羰基取代类似物,尽管具有相反的立体化学结构,但都以高亲和力结合DAT(Kᵢ = 5.5 - 100 nM)。然而,较大的叠氮基-(15)和异硫氰酸酯基-(16)(S)-2β-苯乙氧羰基-3α-(双[4-氟苯基]甲氧基)托烷的DAT结合效力显著降低(IC₅₀分别为210和537 nM),这表明DAT不像对2-取代的3-芳基托烷那样,能耐受苯扎托品类中2-位的空间位阻。此外,还评估并比较了化合物2、3、11a-e和13在5-羟色胺转运体、去甲肾上腺素转运体和毒蕈碱受体上的结合亲和力。总之,这些系统的结合谱表明这两类基于托烷的配体之间存在显著差异,这可能有助于发现治疗可卡因成瘾的药物。

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