| Literature DB >> 28144354 |
Dimpee Gogoi1, Runjun Devi1, Pallab Pahari2, Bipul Sarma1, Sajal Kumar Das1.
Abstract
We have synthesized a series of cis-6a,7,8,12b-tetrahydro-6H-naphtho[2,1-c]chromen-6a-ols as B-ring-modified analogues of (±)-brazilin. A completely regio- and cis-diastereoselective intramolecular Friedel-Crafts epoxy-arene cyclization of 1-tetralone-derived glycidyl ethers catalyzed by Brønsted acids was used as the key step. Our worries concerning the formation of cis-trans product mixtures and their probable conversion to naphthopyran derivatives via dehydration of the tertiary hydroxy group were laid to rest. Additionally, the angular hydroxy group of one of the synthesized products has been reductively removed by a diastereoselective method which should be useful in future for preparing libraries of chroman-fused tetralins with trans-stereochemistry at the ring junction.Entities:
Keywords: brazilin; chroman; epoxy-arene cyclization; natural-product-like molecules; tetralin
Year: 2016 PMID: 28144354 PMCID: PMC5238543 DOI: 10.3762/bjoc.12.280
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Figure 1Chroman-based tetracyclic natural products 1–4 of the brazilin family and our designed, B-ring-modified analogues of brazilin 5.
Scheme 1Retrosynthetic analysis of the designed B-ring-modified analogues of brazilin.
Scheme 2The synthetic challenge associated with the synthesis of 5 by IFCEA of 6 (above) and recent literature reports of cis-diastereoselective synthesis of related tetracyclic molecules via intramolecular Friedel–Crafts cyclization.
Screening of reaction conditions on the IFCEA cyclization of (±)-6a leading to (±)-5aa.
| entry | catalyst | solvent | temp | time | yieldb |
| 1 | – | HFIP | reflux | 4 h | 50 |
| 2 | TsOH·H2O (20) | toluene | 80 | 45 min | 81 |
| 3 | TsOH·H2O (20) | toluene | 115 | 45 min | 75 |
| 4 | TsOH·H2O (20) | toluene | 50 | 2 h | 65 |
| 5 | TsOH·H2O (20) | MeCN | 80 | 45 min | 79 |
| 6 | TsOH·H2O (20) | DCE | 80 | 45 min | 70 |
| 7 | TsOH·H2O (20) | MeNO2 | 80 | 45 min | 75 |
| 8 | TFA (20) | toluene | rt | 45 min | 74 |
| 9 | TfOH (20) | toluene | rt | 45 min | 70 |
| 10 | H2SO4 (20) | toluene | rt | 45 min | 75 |
| 11 | Sc(OTf)2 (20) | DCM | rt | 60 min | 78 |
| 12 | BF3·Et2O (100) | DCM | 0 | 30 min | 81 |
| 13 | FeBr3 (20) | DCM | rt | 60 min | 78 |
| 14 | AgSbF6 (20) | DCM | reflux | 60 min | 79 |
| 15 | TiCl4 (20) | DCM | reflux | 60 min | 78 |
aReaction conditions: (±)-6a (0.4 mmol), acid catalyst, solvent (8 mL). bIsolated yields after silica gel column chromatography.
Figure 2Assessment of the IFCEA cyclization on additional substrates (±)-6b–n leading to (±)-5b–n. Reaction conditions: (±)-6b–h (0.4 mmol), TsOH·H2O (20 mol %), toluene (8 mL), 80 °C, 45 min. The numbers in parentheses represent isolated yields after silica gel column chromatography. aYield of isolated mixture of the inseparable regioisomers.
Figure 3ORTEP diagram of 5k.
Scheme 3Stereoselective conversion of (±)-5k into (±)-14.