The dragmacidins are an emerging class of bis(indole) natural products isolated from deep-water marine organisms. Although there has been a substantial effort to prepare the simple piperazine dragmacidins, little synthetic work has been done in the area of the pyrazinone-containing family members, dragmacidins D, E, and F. These compounds are particularly interesting due to their complex structures and broad range of biological activity. A highly convergent strategy to access dragmacidin D has been developed. In this approach, sequential halogen-selective Suzuki couplings were used to assemble the carbon scaffold of the natural product. After executing a highly optimized sequence of final events, the first completed total synthesis o...
Described in this thesis are four projects related to the development of synthetic methodologies fo...
The first asymmetric total synthesis of the bis-indole marine alkaloid (+)-dragmacidin D (1) has bee...
1,2-oxazine natural products are a small closely related family of highly oxidized compounds. Herein...
The first total synthesis of (+)-dragmacidin F has been accomplished, establishing the absolute conf...
The first total synthesis of the biologically significant bis-indole alkaloid dragmacidin D (5) has ...
This review describes recent developments from our laboratory involving the synthesis of the structu...
The Stoltz group, and moreover the synthetic community at large, has long been interested in the dev...
Dragmacidin D, an emerging biologically active marine natural product, has attracted attention as a ...
Our lab. is deeply interested in the discovery and development of new reaction methodol. en route to...
The de novo synthesis of bioactive natural products provides an opportunity to learn more about the ...
An enantiodivergent strategy for the total chemical synthesis of both (+)- and (−)-dragmacidin F beg...
The first total synthesis of (–)-lemonomycin has been accomplished. The synthesis features a novel,...
The development of efficient strategies for the synthesis of complex organic molecular architectures...
Presented herein are three projects, all unified by the use of palladium-catalyzed, enantioconvergen...
Tetrahydroxanthones are a family of natural products with chemically interesting functional groups a...
Described in this thesis are four projects related to the development of synthetic methodologies fo...
The first asymmetric total synthesis of the bis-indole marine alkaloid (+)-dragmacidin D (1) has bee...
1,2-oxazine natural products are a small closely related family of highly oxidized compounds. Herein...
The first total synthesis of (+)-dragmacidin F has been accomplished, establishing the absolute conf...
The first total synthesis of the biologically significant bis-indole alkaloid dragmacidin D (5) has ...
This review describes recent developments from our laboratory involving the synthesis of the structu...
The Stoltz group, and moreover the synthetic community at large, has long been interested in the dev...
Dragmacidin D, an emerging biologically active marine natural product, has attracted attention as a ...
Our lab. is deeply interested in the discovery and development of new reaction methodol. en route to...
The de novo synthesis of bioactive natural products provides an opportunity to learn more about the ...
An enantiodivergent strategy for the total chemical synthesis of both (+)- and (−)-dragmacidin F beg...
The first total synthesis of (–)-lemonomycin has been accomplished. The synthesis features a novel,...
The development of efficient strategies for the synthesis of complex organic molecular architectures...
Presented herein are three projects, all unified by the use of palladium-catalyzed, enantioconvergen...
Tetrahydroxanthones are a family of natural products with chemically interesting functional groups a...
Described in this thesis are four projects related to the development of synthetic methodologies fo...
The first asymmetric total synthesis of the bis-indole marine alkaloid (+)-dragmacidin D (1) has bee...
1,2-oxazine natural products are a small closely related family of highly oxidized compounds. Herein...