DataSheet1_Studies toward synthesis of the core skeleton of spiroaspertrione A.PDF
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Bioassay-guided isolation of spiroaspertrione A from cultures of Aspergillus sp. TJ23 in 2017 demonstrated potent resensitization of oxacillin against methicillin-resistant Staphylococcus aureus by lowering the oxacillin minimal inhibitory concentration up to 32-fold. To construct this unique spiro[bicyclo[3.2.2]nonane-2,1′-cyclohexane] system, a protocol for ceric ammonium nitrate-induced intramolecular cross-coupling of silyl enolate is disclosed.
2017年,研究人员通过生物测定引导分离(bioassay-guided isolation)策略,从曲霉属(Aspergillus sp.)菌株TJ23的发酵培养物中分离得到螺曲霉酮A(spiroaspertrione A);实验结果表明,该化合物可将奥沙西林(oxacillin)对耐甲氧西林金黄色葡萄球菌(methicillin-resistant Staphylococcus aureus,MRSA)的最低抑菌浓度(minimal inhibitory concentration,MIC)最高降低32倍,从而强效恢复奥沙西林的抗菌活性。为构建该独特的螺[双环[3.2.2]壬烷-2,1′-环己烷]骨架,本研究公开了一种由硝酸铈铵(ceric ammonium nitrate)诱导的硅烯醇盐(silyl enolate)分子内交叉偶联反应方案。



