| Literature DB >> 34086156 |
Roman N Vydzhak1, Svitlana Ya Panchishin1, Maryna V Kachaeva1, Stepan G Pilyo1, Viktoriia S Moskvina2,3, Olga V Shablykina1,4, Andriy V Kozytskiy5,6, Volodymyr S Brovarets1.
Abstract
An efficient and practical synthetic procedure for libraries of diversified 1,2-dihydrochromeno[2,3-c]pyrrole-3,9-diones using a multicomponent process is presented. A convenient synthetic procedure for obtaining functionalized 3-(2-hydroxyphenyl)-4,5-dihydropyrrolo[3,4-c]pyrazol-6(1H)-ones via ring-opening strategy has also been developed. This protocol was found to be compatible with a wide range of substituents and paves the way for the practical synthesis of title compounds with a broad range of substituents under mild condition. The products can be easily isolated by crystallization without the use of chromatography.Entities:
Keywords: Chromeno[2,3-c]pyrroles; Combinatorial library; Dihydrochromeno[2,3-c]pyrrole-3,9-diones; Dihydropyrrolo[3,4-c]pyrazol-6(1H)-ones; Multicomponent cyclization
Mesh:
Substances:
Year: 2021 PMID: 34086156 PMCID: PMC8175933 DOI: 10.1007/s11030-021-10234-2
Source DB: PubMed Journal: Mol Divers ISSN: 1381-1991 Impact factor: 3.364
Fig. 1Examples of the natural and useful pyrano[2,3-c]pyrroles
Scheme 1Investigation of one-pot three-component reaction of 4-(2-hydroxyphenyl)-2,4-dioxobutanoate 1{1}, benzaldehyde 2{1} and benzylamine 3{16} as a model reaction
Optimization of the reaction conditions on the example of compound 4{1–1-16} synthesisa
| Entry | Solvent | Temperature (°C) | Reaction time (h) | Yield of product (%)b |
|---|---|---|---|---|
| 1 | MeOH | r.t | 1.5 | 24 |
| 2 | MeOH | 40 | 1 | 36 |
| 3 | EtOH | 40 | 1 | 26 |
| 4 | EtOH + MeC(O)OH (1 mL) | 40 | 0.3 | 74 |
| 5 | 40 | 1 | 42 | |
| 6 | THF | 40 | 2 | 17 |
| 7 | acetic acid | 40 | 2 | 22 |
| 8 | acetic acid | 120 | 0.5 | traces |
aReaction conditions: 4-(2-hydroxyphenyl)-2,4-dioxobutanoate (1.0 eq.), benzaldehyde (1.0 eq.) and benzylamine (1.0 eq.), appropriate solvent (10 mL), r. t. or heating
bYields of isolated compound 4{1–1-16}
Scheme 2Mechanism of compound 4 synthesis
Scheme 31-aryl-1,2-dihydrochromeno[2,3-c]pyrrole-3,9-diones 4 library generation
Fig. 2Scope of 4-(2-hydroxyphenyl)-2,4-dioxobutanoates 1{1–9}, aryl aldehydes 2{1–26} and primary amines 3{1–27}
Scheme 4Investigation of recyclization of model compound (4{3–1-2}) with hydrazine hydrate
Optimization of the reaction conditions on the example of compound 5{3–1-2} synthesisa
| Entry | Molar ratio of reagents | Solvent | Temperature (°C) | Reaction time (h) | Yield of product (%)b |
|---|---|---|---|---|---|
| 1 | 1:3 | EtOH | r. t | 6 | 18 |
| 2 | 1:3 | EtOH | 80 | 6 | 30 |
| 3 | 1:5 | EtOH | 80 | 4 | 42 |
| 4 | 1:7 | EtOH | 80 | 3 | 31 |
| 5 | 1:3 | Dioxane | r. t | 4 | 32 |
| 6 | 1:3 | Dioxane | 40 | 4 | 34 |
| 7 | 1:5 | Dioxane | 40 | 4 | 64 |
| 8 | 1:7 | Dioxane | 40 | 4–5 | 38 |
| 9 | 1:5 | Dioxane | 80 | 4–6 | 56 |
| 10 | 1:5 | Dioxane | 80 | 20 | 78 |
aReaction conditions: 2-methyl-1-phenyl-1,2-dihydrochromeno[2,3-c]pyrrole-3,9-dione (1.0 eq.) with hydrazine hydrate (3.0 eq. or 5 eq., or 7 eq.), appropriate solvent (10 mL), heating
bYields of isolated compound 5{3–1-2}
Scheme 53-(2-hydroxyphenyl)-4,5-dihydropyrrolo[3,4-c]pyrazol-6(1H)-ones 5 library generation
Fig. 3Important HMBC and NOESY correlations for 4{3–1-2} (CF3COOD)
Fig. 4Important HMBC and NOESY correlations for 5{3–1-2} (DMSO-d6)