Efficient Access to the Iboga Skeleton: Optimized Procedure to Obtain Voacangine from Voacanga africana Root Bark.
Bruno González, Catherine Fagúndez, Alejandro Peixoto de Abreu Lima, Leopoldo Suescun, Diver Sellanes, Gustavo A Seoane, Ignacio Carrera
ACS omega July 6, 2021 DOI: 10.1021/acsomega.1c00745 via PubMed
Summary
AI-generated from the abstractAn optimized process extracts voacangine from Voacanga africana root bark using a direct acetone-based procedure, yielding approximately 0.8% of the dried root bark weight. The major alkaloids isolated are iboga-vobasinyl dimers, such as voacamine and voacamidine, which constitute about 3.7% of the bark. Because these dimers contain the voacangine moiety, a further optimized cleavage step produces additional voacangine at about 50% isolated molar yield. Applying both extraction and dimer cleavage nearly doubles the total voacangine obtained from the plant material compared to direct extraction alone.
Study at a glance
| Characteristics | Process optimization study Peer reviewed |
|---|---|
| Population | Voacanga africana root bark |
| Interventions | acetone-based extraction dimer cleavage |
| Keywords | Voacangine *voacanga africana* extract Iboga alkaloid precursor Natural product extraction Plant extraction |
| Citations | 18 |
| Key finding | Combining direct acetone extraction with optimized dimer cleavage nearly doubles the yield of voacangine from Voacanga africana root bark. |
Abstract
Iboga alkaloids are a group of monoterpenoid indole alkaloids with promising and intriguing biological activities. Ibogaine is the representative member of the series and has become widely known as a potent atypical psychedelic with promising effects to treat substance use disorder. Nowadays, an efficient and scalable enantioselective total synthesis of ibogaine and related iboga alkaloids is still lacking, so direct extraction from natural sources or semi-synthetic schemes are the methods of choice to obtain them in a preparative scale. In particular, ibogaine can be obtained either by a low yielding direct isolation from Tabernanthe iboga or using a semi-synthetic procedure from voacangine, an iboga alkaloid occurring in a higher yield in the root bark of Voacanga africana. In this work, we describe an optimized process to obtain voacangine from V. africana root bark as a precursor of the iboga scaffold. Using a direct acetone-based extraction procedure (0.5 kg of root bark), voacangine was isolated in ∼0.8% of root bark dried weight, while the major alkaloids isolated from the bark were identified as iboga-vobasinyl dimers (∼3.7%) such as voacamine and voacamidine. Since these alkaloids contain the voacangine moiety in their structure, the cleavage of the dimers was further optimized, affording an extra amount of voacangine in ∼50% isolated molar yield. In this manner, the total amount of voacangine obtained by application of the whole procedure to the plant material (extraction and dimer cleavage) could almost duplicate the content originally found in the root bark.