| Literature DB >> 35424956 |
Prasanta Das1, Cord Carter1, Gulrukh Shaheen1, Ashton T Hamme1.
Abstract
Spiro-heterocycles containing natural products and synthetic analogues have a broader biomedicinal application due to their rigid 3D conformation and structural implications. In this context, constructing spiro-isoxazoline systems have continued our interest in natural products and synthetic units to investigate their novel biological activities. Herein, a bromo-lactamization mediated neighboring group participation approach has been utilized on various isoxazole-amides to construct an array of spiro-isoxazoline-lactams. The easy synthesis with diverse functionalization in the periphery of a novel 3D framework could be interesting for biomedical investigation. This journal is © The Royal Society of Chemistry.Entities:
Year: 2022 PMID: 35424956 PMCID: PMC8985116 DOI: 10.1039/d2ra01070d
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Fig. 1Spiro-lactam containing natural products and synthetic compounds.
Scheme 1Previous and current approach towards spiro-isoxazoline-lactams.
Scheme 2General scheme for the synthesis of spiro-isoxazoline-lactam.
Optimization of bromo-lactamizationa
|
| ||||||
|---|---|---|---|---|---|---|
| Entryy | Br+ Source | Additive | Solvent | Temp (°C) | Time (h) | Yield (%) |
| 1 | DBDMH | — | CH2Cl2 | 0 | 24 | 30 |
| 2 | DBDMH | — | CH2Cl2 | rt | 24 | 85 |
| 3 | DBDMH | — | CH2Cl2 | 50 | 6 | 80 |
| 4 | DBDMH | K2CO3 | CH2Cl2 | rt | 24 | 75 |
| 5 | DBDMH | — | CHCl3 | rt | 24 | 84 |
| 6 | DBDMH | — | Cl(CH2)2Cl | rt | 24 | 82 |
| 7 | DBDMH | — | Toluene | 120 | 6 | 75 |
| 8 | DBDMH | — | Ether | rt | 24 | 50 |
| 9 | DBDMH | K2CO3 | DME | rt | 24 | 40 |
| 10 | DBDMH | K2CO3 | MeOH | rt | 24 | 45 |
| 11 | NBS | — | CH2Cl2 | rt | 24 | 80 |
| 12 | PTB | — | CH2Cl2 | rt | 24 | 30 |
| 13 | BTMATB | — | CH2Cl2 | rt | 24 | 10 |
| 14 | Br2 | — | CH2Cl2 | rt | 24 | 50 |
| 15 | BDMS | — | CH2Cl2 | rt | 24 | 65 |
|
| ||||||
The reactions were carried out with substrate 3c (0.25 mmol) and Br+-source (0.3 mmol) in solvent (2.0 mL) at rt for 24h.
Isolated yield based on 3c.
K2CO3 (0.24 mmol) for entries 4, 9, and 10.
Reaction carried out at reflux temperature for entries 3 and 7.
Synthesis of spiro-isoxazoline-lactams (±)-4(a–r)
|
|
Synthesis of isoxazole-lactams 3(a–r)aa
|
| ||||
|---|---|---|---|---|
| Entry | Acids (R1) | Amines (R2) | Time (h) | Yield (%) |
| 1 | Me (2a) | 4-Ts | 24 | 78 (3a) |
| 2 | nPr (2b) | 4-Ts | 24 | 80 (3b) |
| 3 | Ph (2c) | 4-Ts | 18 | 82 (3c) |
| 4 | 4-MeC6H4 (2d) | 4-Ts | 12 | 82 (3d) |
| 5 | 4-OMeC6H4 (2e) | 4-Ts | 12 | 79 (3e) |
| 6 | 4-FC6H4 (2f) | 4-Ts | 12 | 85 (3f) |
| 7 | 4-ClC6H4 (2g) | 4-Ts | 12 | 88 (3g) |
| 8 | 2,6-di-Cl-C6H3 (2h) | 4-Ts | 12 | 80 (3h) |
| 9 | 4-BrC6H4 (2i) | 4-Ts | 12 | 86 (3i) |
| 10 | 4-lC6H4 (2j) | 4-Ts | 12 | 79 (3j) |
| 11 | 4-CF3C6H4 (2k) | 4-Ts | 12 | 88 (3k) |
| 12 | CO2Et (2l) | 4-Ts | 24 | 78 (3l) |
| 13 | Me (2a) | PMB | 18 | 80 (3m) |
| 14 | Ph (2c) | PMB | 18 | 85 (3n) |
| 15 | Ph (2o) | PMB | 18 | 87 (3o) |
| 16 | Me (2a) | 4-Cs | 24 | 89 (3p) |
| 17 | nPr (2b) | 4-Cs | 24 | 89 (3q) |
| 18 | Ph (2c) | 4-Cs | 12 | 88 (3r) |
DMAP (1.4 equiv.) was added to a suspension of EDC (1.3 equiv.) in DCM (1 M). The corresponding carboxylic acid (1 equiv.) and amine (1.2 equiv.) were then added at 0 °C. The mixture was stirred at room temperature for (12–24) hours.
Isolated yield based on 2.
n = 2.
(4-Cs = 4-ClC6H4SO2).
Scheme 3Plausible mechanism for bromo-lactamization.