| Literature DB >> 32120931 |
Elisa Bonandi1, Giada Tedesco1, Dario Perdicchia1, Daniele Passarella1.
Abstract
The piperidine ring is a widespread motif in several natural bioactive alkaloids of both vegetal and marine origin. In the last years, a diversity-oriented synthetic (DOS) approach, aimed at the generation of a library of piperidine-based derivatives, was developed in our research group, employing commercially available 2-piperidine ethanol as a versatile precursor. Here, we report the exploration of another ramification of our DOS approach, that led us to the stereoselective total synthesis of (-)-anaferine, a bis-piperidine alkaloid present in Withania somnifera extract. This natural product was obtained in 9% overall yield over 13 steps, starting from a key homoallylic alcohol previously synthesised in our laboratory. Therefore, the collection of piperidine-derivatives accessible from 2-piperidine ethanol was enriched with a new, diverse scaffold.Entities:
Keywords: 2-piperidine ethanol; anaferine; bis-piperidine alkaloids; diversity-oriented synthesis
Mesh:
Substances:
Year: 2020 PMID: 32120931 PMCID: PMC7179133 DOI: 10.3390/molecules25051057
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Structures of some representative natural piperidine alkaloids, from vegetal and marine origin. The fundamental α-substituted piperidine scaffold, shared by some of them, is highlighted in pink.
Figure 2Structures of the representative members of our piperidine-based library, obtained through the DOS approach starting from 2-piperidine ethanol.
Figure 3(A) Retrosynthetic pathway for the synthesis of (-)-anaferine, reported by Stapper and Blechert; (B) Retrosynthetic pathway for the synthesis of (+)-anaferine, reported by del Pozo and co-workers.
Scheme 1(A) Forward synthetic pathway for the generation of the key intermediates 3 and 5, starting from 2-piperidine ethanol. (B) Planning of (-)-anaferine forward synthetic pathway.
Figure 41H-NMR determination of the d.r. for the asymmetric allylation of aldehyde 7 (400 MHz, deuterated benzene). (a) 1H-NMR spectra of the reaction mixture for the asymmetric allylation (in blue) and of the two single diastereomers 8 and 8b (green and red). In the first spectrum the presence of a major and a minor diastereomers is appreciable, as indicated by the two arrows. (b) elaboration of the blue spectrum of Figure 4a, showing the integrals exploited for the d.r. determination.
Scheme 2Reagents and conditions: (a) TBSCl, imidazole, CH2Cl2, 0 °C to r.t., 5 h, 90%; (b) O3, PPh3, CH2Cl2, −78 °C, to r.t., 3 h, 60%; (c) (–)-allyl-BIpc2, THF, −78 °C to r.t., 16 h, then H2O2, NaH2PO4, MeOH, 0.5 h, 92%, (d) PPh3, DIAD, DPPA, THF, r.t., 16 h, 85%; (e) PPh3, THF/H2O, 40 °C, 8 h, 80%; (f) acryloyl chloride, TEA, CH2Cl2, 0 °C to r.t., 5 h, 88%; (g) M73 SIMes cat. (1 mol %) CH2Cl2, 50 °C, 5 h, 71%; (h) H2, Pd/C (10% wt), MeOH, r.t., 16h, quant.; (i) Boc2O, TEA, DMAP, CH2Cl2, r.t., 48 h, 82%; (j) BH3 SMe2, THF, 0 °C, 5 h, 76%; (k) TBAF, THF, −15 °C to 0 °C, 16 h, 71%; (l) DMP, CH2Cl2, r.t., 16 h, quant.; (m) HCl 4M in dioxane, CH2Cl2, 0 °C to r.t., 16 h, quant.