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Synthesis and biological activities of petrosiols B and D

机译:石蜡B和D的合成及其生物活性

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摘要

A divergent total synthesis of natural diacetylenic tetraols, petrosiol B and petrosiol D, was accomplished by taking advantage of a carbohydrate chiral template. In particular, petrosiol B, which is the first total synthesis so far, was achieved in 13 linear steps with a 10% overall yield applying Ohira–Bestmann homologation, NaH-mediated dehydrobromination, and Cu( I )-catalyzed Cadiot–Chodkiewicz coupling as the key reaction steps. The synthetic petrosiols B and D were subjected to the study on differentiation activities toward neuronal progenitor PC12 cells. Our results suggested that both petrosiol B and petrosiol D could induce the differentiation of neuronal progenitor PC12 cells via the enhancement of Nrf2 activity. By comparing petrosiols B, D and their natural homologue E, petrosiol B displayed the most intensive cell differentiation activity and the highest Nrf2 activity enhancement as well.
机译:通过利用碳水化合物手性模板,完成了天然二炔四醇,石油甾醇B和石油甾醇D的不同总合成。尤其是,使用Ohira–Bestmann同源性,NaH介导的脱氢溴化和Cu(I)催化的Cadiot–Chodkiewicz偶联,通过13个线性步骤以总产率10%的总产率,获得了迄今为止最大的合成石油醚B。关键的反应步骤。研究了合成石油B和D对神经元祖细胞PC12细胞的分化活性。我们的结果表明,石油醚B和石油醚D均可通过增强Nrf2活性来诱导神经元祖PC12细胞的分化。通过比较石蜡酚B,D及其天然同源物E,石蜡酚B表现出最强的细胞分化活性和最高的Nrf2活性增强。

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