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  2. Bisindole Alkaloids from the Alstonia Species: Recent Isolation, Bioactivity, Biosynthesis, and Synthesis

Bisindole Alkaloids from the Alstonia Species: Recent Isolation, Bioactivity, Biosynthesis, and Synthesis

  • Molecules. 2021 Jun 7;26(11):3459. doi: 10.3390/molecules26113459.
Kamal P Pandey 1 Md Toufiqur Rahman 2 James M Cook 1
Affiliations

Affiliations

  • 1 Department of Chemistry and Biochemistry, University of Wisconsin Milwaukee, Milwaukee, WI 53211, USA.
  • 2 RTI International, Center for Drug Discovery, Research Triangle Park, Durham, NC 27709, USA.
Abstract

Bisindoles are structurally complex dimers and are intriguing targets for partial and total synthesis. They exhibit stronger biological activity than their corresponding monomeric units. Alkaloids, including those containing C-19 methyl-substitution in their monomeric units, their synthetic derivatives, and their mismatched pairs can be attractive targets for synthesis and may unlock better drug targets. We herein discuss the isolation of bisindoles from various Alstonia species, their bioactivity, putative biosynthesis, and synthesis. The total synthesis of macralstonidine, macralstonine, O-acetylmacralstonine, and dispegatrine, as well as the partial synthesis of alstonisidine, villalstonine, and macrocarpamine are also discussed in this review. The completion of the total synthesis of pleiocarpamine by Sato et al. completes the formal synthesis of the latter two bisindoles.

Keywords

Alstonia; Apocynaceae; ajmaline; bioactivity; biomimetic or total synthesis; biosynthesis; bisindole synthesis; macroline; partial; pleiocarpamine; sarpagine.

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