| Literature DB >> 33195069 |
Abstract
Polycyclic scaffolds are omnipresent in natural products and drugs, and the synthetic strategies and methods toward construction of these scaffolds are of particular importance. Compared to simple cyclic ring systems, polycyclic scaffolds have higher structure complexity and diversity, making them suitable for charting broader chemical space, yet bringing challenges for the syntheses. In this review, we surveyed progress in the past decade on synthetic methods for polycyclic natural product scaffolds, in which the key steps are one-pot reactions involving intermolecular or intramolecular alkyne annulation. Synthetic strategies of selectedEntities:
Keywords: alkynes; carbocycles; cascade cyclization; heterocycles; natural products; one-pot reaction; scaffold diversity; step economy
Year: 2020 PMID: 33195069 PMCID: PMC7596902 DOI: 10.3389/fchem.2020.580355
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
Figure 1Gold-catalyzed cascade cyclization for syntheses of fused carbocycles.
Figure 2Syntheses of polycyclic carbocycles via domino ring-closing metathesis.
Figure 3Syntheses of polycyclic carbocycles via cascade cyclization.
Figure 4One-pot syntheses of pyridine-fused polycyclic natural products.
Figure 5Rhodium-catalyzed one-pot syntheses of heterocycle-fused pyridines via C–H activation.
Figure 6Palladium-catalyzed one-pot synthesis of fused indoles.
Figure 7Gold- or copper-catalyzed one-pot synthesis of nitrogen-containing polyheterocycles.
Figure 8Synthesis of fused carbazoles via hexadehydro-Diels–Alder reaction.
Figure 9One-pot synthesis of hydroxycarbazoles.
Figure 10One-pot construction of polycyclic scaffolds for collective synthesis of alkaloids.
Figure 11Syntheses of polycyclic indolines from alkyne-tethered indoles.
Figure 12One-pot syntheses of oxa-bridged polycyclic indolines.
Figure 13One-pot syntheses of oxygen-rich polycyclic scaffolds.