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Coumarin-Annulated Ferrocenyl 13-Oxazine Derivatives Possessing In Vitro Antimalarial and Antitrypanosomal Potency

机译:具有体外抗疟疾和抗核糖体效力的香豆素预期的13-氧嗪衍生物

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摘要

A tailored series of coumarin-based ferrocenyl 1,3-oxazine hybrid compounds was synthesized and investigated for potential antiparasitic activity, drawing inspiration from the established biological efficacy of the constituent chemical motifs. The structural identity of the synthesized compounds was confirmed by common spectroscopic techniques: NMR, HRMS and IR. Biological evaluation studies reveal that the compounds exhibit higher in vitro antiparasitic potency against the chemosensitive malarial strain (3D7 P. falciparum) over the investigated trypanosomiasis causal agent (T. b. brucei 427) with mostly single digit micromolar IC50 values. When read in tandem with the biological performance of previously reported structurally similar non-coumarin, phenyl derivatives (i.e., ferrocenyl 1,3-benzoxazines and α-aminocresols), structure-activity relationship analyses suggest that the presence of the coumarin nucleus is tolerated for biological activity though this may lead to reduced efficacy. Preliminary mechanistic studies with the most promising compound (11b) support hemozoin inhibition and DNA interaction as likely mechanistic modalities by which this class of compounds may act to produce plasmocidal and antitrypanosomal effects.
机译:合成并研究了一定定制的基于香豆素的杂交化合物1,3-氧杂交化合物,并研究了潜在的抗遗传性活性,从构成化学基序的建立的生物学效果中汲取灵感。通过常见的光谱技术证实了合成化合物的结构特性:NMR,HRMS和IR。生物学评价研究表明,通过较多单位数微摩尔IC50值,化合物对化学过敏疟疾菌株(3D7 P. Falciparum)的体外抗疟疾效力较高,对化学过敏性疟疾菌株(3D7 P. falciparum)表现出更高的体外抗疟原虫效力。当涉及先前报道的结构相似的非香豆素的生物学性能时,苯基衍生物(即,二茂茂烯基1,3-苯并恶嗪和α-氨基甲酰胺),结构 - 活性关系分析表明,耐受香豆素核的存在生物活动虽然这可能导致有效性降低。具有最有前途的化合物(11B)的初步机械研究支持血液血素抑制和DNA相互作用,这类化合物可能用于产生疟原虫和抗糖基质作用。

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