The Iboga Alkaloids.
Catherine Lavaud, Georges Massiot
Progress in the chemistry of organic natural products January 1, 2017 DOI: 10.1007/978-3-319-49712-9_2 via PubMed
Summary
AI-generated from the abstractIboga alkaloids, a class of indolomonoterpenes with an isoquinuclidine nucleus, first appeared in the roots of the Gabonese sacred plant Tabernanthe iboga. Ibogaine, the main representative, has psychoactive properties and has been proposed for treating addiction to opioids, cocaine, and alcohol. Its development is hampered by legal restrictions, but 18-methoxycoronaridine is under evaluation for similar uses and for leishmaniasis. This chapter reviews biosynthesis (still a 'black box' for the key construction step), newly discovered monomeric and dimeric alkaloids, analytical tools, synthetic progress, and biological properties, focusing on ibogaine and 18-methoxycoronaridine.
Study at a glance
| Characteristics | Review Peer reviewed |
|---|---|
| Keywords | Cytotoxicity Drug cessation treatment Structural elucidation Iboga alkaloids ibogaine 18-methoxycoronaridine |
| Citations | 42 |
| Key finding | Iboga alkaloids, particularly ibogaine and 18-methoxycoronaridine, show potential for addiction treatment and leishmaniasis, but biosynthesis of the key construction step remains unknown. |
Abstract
Iboga alkaloids are a particular class of indolomonoterpenes most often characterized by an isoquinuclidine nucleus. Their first occurrence was detected in the roots of Tabernanthe iboga, a sacred plant to the people of Gabon, which made it cult object. Ibogaine is the main representative of this class of alkaloids and its psychoactive properties are well documented. It has been proposed as a drug cessation treatment and has a wide range of activities in targeting opioids, cocaine, and alcohol. The purpose of this chapter is to provide a background on this molecule and related compounds and to update knowledge on the most recent advances made. Difficulties linked to the status of ibogaine as a drug in several countries have hampered its development, but 18-methoxycoronaridine is currently under evaluation for the same purposes and for the treatment of leishmaniasis. The chapter is divided into six parts: an introduction aiming at defining what is called an iboga alkaloid, and this is followed by current knowledge on their biosynthesis, which unfortunately remains a "black box" as far as the key construction step is concerned. Many of these alkaloids are still being discovered and the third and fourth parts of the chapter discuss the analytical tools in use for this purpose and give lists of new monomeric and dimeric alkaloids belonging to this class. When necessary, the structures are discussed especially with regard to absolute configuration determinations, which remain a point of weakness in their assignments. Part V gives an account of progress made in the synthesis, partial and total, which the authors believe is key to providing solid solutions to the industrial development of the most promising molecules. The last part of the chapter is devoted to the biological properties of iboga alkaloids, with particular emphasis on ibogaine and 18-methoxycoronaridine.