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1.
Chem Commun (Camb) ; 50(84): 12652-5, 2014 Oct 28.
Article in English | MEDLINE | ID: mdl-25204815

ABSTRACT

Described is a continuous, divergent synthesis system which is coupled to continuous purification and is capable of producing four anti-malarial APIs. The system is comprised of three linked reaction modules for photooxidation/cyclization, reduction, and derivatization. A fourth module couples the crude reaction stream with continuous purification to yield pure API.


Subject(s)
Antimalarials/chemical synthesis , Artemisinins/chemistry , Antimalarials/chemistry , Artemisia annua/chemistry , Artemisia annua/metabolism , Artemisinins/chemical synthesis , Cyclization , Oxidation-Reduction , Yeasts/chemistry
2.
Org Lett ; 16(6): 1794-7, 2014 Mar 21.
Article in English | MEDLINE | ID: mdl-24611474

ABSTRACT

Photolabile linkers are an attractive alternative for solid-phase synthesis because they can be cleaved using light. However, irradiation in a classical batch photoreactor results in incomplete cleavage of the photolabile linkers. It is demonstrated that a continuous flow photoreactor is superior to a batch photoreactor for the cleavage of a linker from polystyrene resin.

3.
Angew Chem Int Ed Engl ; 53(2): 557-61, 2014 Jan 07.
Article in English | MEDLINE | ID: mdl-24288288

ABSTRACT

Primary and secondary amines can be rapidly and quantitatively oxidized to the corresponding imines by singlet oxygen. This reactive form of oxygen was produced using a variable-temperature continuous-flow LED-photoreactor with a catalytic amount of tetraphenylporphyrin as the sensitizer. α-Aminonitriles were obtained in good to excellent yields when trimethylsilyl cyanide served as an in situ imine trap. At 25°C, primary amines were found to undergo oxidative coupling prior to cyanide addition and yielded secondary α-aminonitriles. Primary α-aminonitriles were synthesized from the corresponding primary amines for the first time, by an oxidative Strecker reaction at -50 °C. This atom-economic and protecting-group-free pathway provides a route to racemic amino acids, which was exemplified by the synthesis of tert-leucine hydrochloride from neopentylamine.


Subject(s)
Amines/chemistry , Cyanides/chemistry , Imines/chemistry , Nitriles/chemical synthesis , Singlet Oxygen/chemistry , Molecular Structure , Nitriles/chemistry , Oxidation-Reduction , Photochemistry , Porphyrins/chemistry
4.
Chemistry ; 19(17): 5450-6, 2013 Apr 22.
Article in English | MEDLINE | ID: mdl-23520059

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.


Subject(s)
Antimalarials/chemical synthesis , Artemisinins/chemical synthesis , Africa , Antimalarials/chemistry , Antimalarials/pharmacology , Artemisia/chemistry , Artemisinins/chemistry , Artemisinins/pharmacology , Singlet Oxygen
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