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Mycobacterium tuberculosis and cholinesterase inhibitors from Voacanga globosa.

机译:Voacanga globosa的结核分枝杆菌和胆碱酯酶抑制剂。

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Globospiramine (1), a new spirobisindole alkaloid possessing an Aspidosperma-Aspidosperma skeleton, together with deoxyvobtusine (2), deoxyvobtusine lactone (3), vobtusine lactone (4) and lupeol (5), were isolated and identified from Voacanga globosa through a bioassay-guided purification. The gross structure and absolute stereochemistry of 1 were established by circular dichroism spectroscopy, HR-MS and unambiguous NMR spectroscopic experiments. In addition, a new biogenetic pathway for the formation of the spiro-Aspidosperma-Aspidosperma skeleton is proposed. Alkaloid 1 showed potent antituberculosis activity against Mycobacterium tuberculosis H(37)Rv as evidenced in microplate Alamar blue assay (MIC = 4 mug/mL) and low-oxygen recovery assay (LORA (MIC = 5.2 mug/mL). The bisindole alkaloids also exhibited promising activity against acetylcholinesterase and, especially butyrylcholinesterase, with deoxyvobtusine (2) (IC(50) = 6.2 muM) as the most strongly inhibiting compound. This study extends the variety of alkaloid structural platforms which exhibit antimycobacterial and anticholinesterase activity.
机译:通过生物测定从球藻Voacanga globosa中分离并鉴定了Globospiramine(1),它是一种新的具有双孢霉-Aspidosperma骨架的螺双吲哚生物碱,以及脱氧伏丁星(2),脱氧伏丁星内酯(3),伏他汀内酯(4)和羽扇豆酚(5)引导纯化。 1的总体结构和绝对立体化学是通过圆二色光谱,HR-MS和明确的NMR光谱实验确定的。此外,提出了一种新的形成螺-曲霉-曲霉骨架的生物遗传途径。生物碱1对结核分枝杆菌H(37)Rv表现出有效的抗结核活性,微板Alamar蓝测定法(MIC = 4杯/毫升)和低氧回收率测定法(LORA(MIC = 5.2杯/毫升)证明了这一点。脱氧伏丁星(2)(IC(50)= 6.2μM)是抑制性最强的化合物,对乙酰胆碱酯酶,尤其是丁酰胆碱酯酶具有很好的抑制作用,这项研究扩展了具有抗分枝杆菌和抗胆碱酯酶活性的生物碱结构平台。

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