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Fluorinated Quinine Alkaloids: Synthesis, X-ray Structure Analysis and Antimalarial Parasite Chemotherapy

机译:氟化奎宁生物碱:合成,X射线结构分析和抗疟原虫化学疗法

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摘要

Herein we report the synthesis of a series of C9-fluorinated quinine alkaloids by direct nucleophilic deoxyfluorination. This transformation gives rise to products bearing both S- and Rconfigured monofluoromethylene functionalities, consistent with an SN1-like mechanism. Furthermore, a series of ring-expanded 1-azabicycloACHTUNGTRENUNG[3.2.2]non- ACHTUNGTRENUNGane systems were generated by a skeletal rearrangement of the quinuclidine core. The modified alkaloids were converted to the corresponding hydrochloride salts and characterised by singlecrystal X-ray diffraction analysis. The preference of the benzylic fluorine atom to adopt a gauche conformation relative to the protonated quinuclidine nitrogen atom was consistently observed throughout the cage-conserved compounds. Conversely, the molecular architecture of the 1-azabicyclo- ACHTUNGTRENUNG[3.2.2]nonane systems enforced an anti relationship between the fluorine atom and the protonated tertiary amine. This constitutes the first X-ray evidence of a vicinal fluorine atom at a stereogenic centre positioned anti to a substituted ammonium cation. The pharmacological efficacy of these compounds was assessed in vitro against the NF54 strain of Plasmodium falciparum (sensitive to all known antimalarial drugs). IC50 values of as low as 267 nm were observed; this highlights the potential of these materials in developing novel agents for parasite chemotherapy.
机译:本文中,我们报道了通过直接亲核脱氧氟化作用合成一系列C9氟化的奎宁生物碱。这种转变产生了带有S和R构型的一氟亚甲基官能团的产物,这与SN1样机理一致。此外,通过奎宁环素核的骨架重排产生了一系列环扩展的1-氮杂双环ACHTUNGTRENUNG [3.2.2]非-ACHTUNGTRENUNGANE系统。将修饰的生物碱转化为相应的盐酸盐,并通过单晶X射线衍射分析进行表征。在整个保持笼状的化合物中,始终观察到苄基氟原子相对于质子化的奎宁环氮原子采用树状构象的偏好。相反,1-氮杂双环-ACHTUNGTRENUNG [3.2.2]壬烷体系的分子结构在氟原子和质子化叔胺之间建立了反关系。这构成了立体立体中心的邻位氟原子的首个X射线证据,该中心位于与取代的铵阳离子相反的位置。在体外评估了这些化合物对恶性疟原虫的NF54菌株(对所有已知的抗疟药敏感)的药理功效。观察到低至267 nm的IC50值;这突出了这些材料在开发用于寄生虫化学治疗的新型药物方面的潜力。

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