| Literature DB >> 36234711 |
Luzhen Jiao1, Dawei Teng1, Zixuan Wang1, Guorui Cao1.
Abstract
Sulfamates are widespread in numerous pharmacologically active molecules. In this paper, Silver/Bathophenanthroline catalyzed the intramolecular selective amination of primary C(sp3)-H bonds and secondary C(sp3)-H bonds of sulfamate esters, to produce cyclic sulfamates in good yields and with a high site-selectivity. DFT calculations revealed that the interaction between sulfamates and L10 makes the molecule more firmly attached to the catalyst, benefiting the catalysis reaction. The in vitro anticancer activity of the final products was evaluated in MCF-7 breast cancer cells.Entities:
Keywords: cyclic sulfamate derivatives; intramolecular selective amination; primary C(sp3)−H bond; silver-catalyzed nitrene
Mesh:
Substances:
Year: 2022 PMID: 36234711 PMCID: PMC9571442 DOI: 10.3390/molecules27196174
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.927
Figure 1Representative examples of bioactive sulfamates.
Scheme 1Representative examples of selective amination reactions.
Optimization of Ag/ligand a.
|
| ||||||
| Entry | Ligand | Silver Salts | Ag:L | Yield b (%) | 1a:1b c | dr(1a) |
|---|---|---|---|---|---|---|
| 1 |
| AgOTf | 1:3 | Trace | - | - |
| 2 |
| AgOTf | 1:3 | ND | - | - |
| 3 |
| AgOTf | 1:3 | 30 | 2.5:1 | 4.4:1 |
| 4 |
| AgOTf | 1:3 | 29 | 3.7:1 | 4.7:1 |
| 5 |
| AgOTf | 1:3 | 47 | 5.6:1 | 3.7:1 |
| 6 |
| AgOTf | 1:1 | Trace | - | - |
| 7 |
| AgOTf | 1:1 | ND | - | - |
| 8 |
| AgOTf | 1:3 | Trace | - | - |
| 9 |
| AgOTf | 1:3 | 30 | 6.3:1 | 3.3:1 |
| 10 |
| AgOTf | 1:3 | 53 | >15:1 | 5.1:1 |
| 11 |
| AgOTf | 1:3 | 33 | 8.1:1 | 4.4:1 |
| 12 |
| AgOTf | 1:3 | ND | - | - |
| 13 |
| AgOTf | 1:3 | 35 | 5:1 | 3.2:1 |
| 14 |
| AgOTf | 1:3 | ND | - | - |
a Reaction condition: L (0.117 mmol), AgOTf (0.039 mmol), 2-methyl-2-phenylpropyl sulfamate ester 1 (0.39 mmol), dry CH2Cl2 (9.75 mL), PhIO (1.365 mmol), and 4 Å MS (0.37 g), rt, 24 h. b Isolated yield. c Determined by crude NMR.
The effects of reaction conditions on selective amination a.
|
| ||||||
| Entry | Ligand | Silver Salt | Temperature (°C) | Yield b (%) | 1a:1b c | dr(1a) |
|---|---|---|---|---|---|---|
| 1 |
| AgOTf | 75 | 58 | >15:1 | 3.4:1 |
| 2 |
| AgOTf | 65 | 68 | >15:1 | 3.8:1 |
| 3 |
| AgOTf | 55 | 72 | >15:1 | 4.1:1 |
| 4 |
| AgOTf | 45 | 59 | >15:1 | 4.3:1 |
| 5 |
| AgOTf | 35 | 55 | >15:1 | 4.4:1 |
| 6 |
| AgOTf | 25 | 53 | >15:1 | 4.7:1 |
| 7 |
| AgOTf | 0 | 25 | >15:1 | 4.8:1 |
| 8 |
| AgBF4 | 55 | Trace | - | - |
| 9 |
| AgClO4 | 55 | 76 | >15:1 | 5.1:1 |
| 10 |
| AgN(SO2CF3)2 | 55 | 35 | >15:1 | 4.9:1 |
| 11 |
| AgSbF6 | 55 | ND | - | - |
| 12 |
| AgOAc | 55 | 32 | >15:1 | 4.8:1 |
a Reaction condition: L3 (0.117 mmol), silver salt (0.039 mmol), 2-methyl-2-phenylpropyl sulfamate ester 1 (0.39 mmol), dry CH2Cl2 (9.75 mL), PhIO (1.365 mmol), and 4 Å MS (0.37 g), temperature, 24 h. b Isolated yield. c Determined by NMR.
The effects of metals on the reaction a.
|
| ||||
| Entry | Catalyst | Oxidant | Yield b (%) | 1a:1b c |
|---|---|---|---|---|
| 1 | AgClO4/L10 | PhIO | 76 | >15:1 |
| 2 | Fe(OTf)2/bipyridine | PhI(OCOCF3)2 | 75 | 2.5:1 |
| 3 | [FeIII(Pc)]SbF6 | PhI(OPiv)2 | Trace | - |
| 4 | [Rh(OAc)2]2 | PhI(OAc)2 | 80 | 3:1 |
| 5 | Cu(OTf)2/bipyridine | - | Trace | - |
a Reaction condition: L (10%), 2-methyl-2-phenylpropyl sulfamate ester 1 (0.39 mmol), dry CH2Cl2 (9.75 mL), Oxidant (1.365 mmol) and 4 Å MS (0.37 g). b Isolated yield. c Determined by NMR.
Figure 2Selective amination of unactivated substrates a.
Figure 3Exploration of electronic effects a.
Figure 4Proposed reaction pathway.
Figure 5Reactant structure of the catalytic agent and molecule.
Cell survival rate of tested cyclic sulfamates (10 μM) against MCF-7 cells.
| Entry | Products | Survival (%) |
|---|---|---|
| 1 | - | 100% |
| 2 |
| 8.83% |
| 3 |
| 6.69% |
| 4 |
| 9.38% |
| 5 |
| 8.34% |
| 6 |
| 6.51% |
| 7 |
| 8.10% |
| 8 |
| 13.07% |
| 9 |
| 17.71% |
| 10 |
| 17.46% |