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一种连续流工艺合成青蒿素。

A continuous-flow process for the synthesis of artemisinin.

机构信息

Department for Biomolecular Systems, Max Planck Institute of Colloids and Interfaces, 14424 Potsdam, Germany.

出版信息

Chemistry. 2013 Apr 22;19(17):5450-6. doi: 10.1002/chem.201204558. Epub 2013 Mar 20.

Abstract

Isolation of the most effective antimalarial drug, artemisinin, from the plant sweet wormwood, does not yield sufficient quantities to provide the more than 300 million treatments needed each year. The high prices for the drug are a consequence of the unreliable and often insufficient supply of artemisinin. Large quantities of ineffective fake drugs find a market in Africa. Semisynthesis of artemisinin from inactive biological precursors, either dihydroartemisinic acid (DHAA) or artemisinic acid, offers a potentially attractive route to increase artemisinin production. Conversion of the plant waste product, DHAA, into artemisinin requires use of photochemically generated singlet oxygen at large scale. We met this challenge by developing a one-pot photochemical continuous-flow process for the semisynthesis of artemisinin from DHAA that yields 65 % product. Careful optimization resulted in a process characterized by short residence times. A method to extract DHAA from the mother liquor accumulated during commercial artemisinin extractions, a material that is currently discarded as waste, is also reported. The synthetic continuous-flow process described here is an effective means to supplement the limited availability of artemisinin and ensure increased supplies of the drug for those in need.

摘要

从植物青蒿中分离出最有效的抗疟药物青蒿素,但产量不足以提供每年超过 3 亿次的治疗量。该药物价格高昂的原因是青蒿素供应不可靠且常常不足。大量无效的假药在非洲找到了市场。青蒿素的半合成,使用的是无活性的生物前体二氢青蒿酸(DHAA)或青蒿酸,为增加青蒿素的产量提供了一条有吸引力的途径。将植物废弃物 DHAA 转化为青蒿素需要在大规模下使用光化学产生的单线态氧。我们通过开发一种从 DHAA 半合成青蒿素的一锅光化学连续流工艺来应对这一挑战,该工艺的产率为 65%。通过仔细优化,得到了一个具有短停留时间的工艺特征。还报告了一种从商业青蒿素提取过程中积累的母液中提取 DHAA 的方法,目前这种材料被当作废物丢弃。这里描述的合成连续流工艺是一种有效的方法,可以补充有限的青蒿素供应,并确保为有需要的人提供更多的药物供应。

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