| Literature DB >> 31645149 |
Adriana M das Neves1, Gabriele A Berwaldt1, Cinara T Avila1, Taís B Goulart1, Bruna C Moreira1, Taís P Ferreira1, Mayara S P Soares2, Nathalia S Pedra2, Luiza Spohr2, Anita A A dE Souza2, Roselia M Spanevello2, Wilson Cunico1.
Abstract
The present study describes the synthesis of a novel series of thiazolidin-4-one and thiazinan-4-one using 1-(2-aminoethyl)pyrrolidine as amine precursor. All compounds were synthesised by one-pot three component cyclocondensation reaction from the amine, a substituted benzaldehyde and a mercaptocarboxylic acid. The compounds were obtained in moderate to good yields and were identified and characterised by 1H, 13 C, 2 D NMR and GC/MS techniques. The compounds also were screened for their in vitro acetylcholinesterase (AChE) activity in hippocampus and cerebral cortex on Wistar rats. The six most potent compounds have been investigated for their cytotoxicity by cell viability assay of astrocyte primary culture, an important cell of central nervous system. We highlighted two compounds (6a and 6k) that had the lowest IC50 in hippocampus (5.20 and 4.46 µM) and cerebral cortex (7.40 and 6.83 µM). These preliminary and important results could be considered a starting point for the development of new AChE inhibitory agents.Entities:
Keywords: Thiazolidin-4-ones; acetylcholinesterase inhibitors; astrocytes; pyrrolidine; thiazinan-4-ones
Mesh:
Substances:
Year: 2020 PMID: 31645149 PMCID: PMC6818106 DOI: 10.1080/14756366.2019.1680659
Source DB: PubMed Journal: J Enzyme Inhib Med Chem ISSN: 1475-6366 Impact factor: 5.051
Figure 1.Similarity at chemical structure of acetylcholine, thiazolidin-4-ones (5) and thiazinan-4-ones (6).
Scheme 1.Synthetic pathway to the obtention of thiazolidinones and thiazinanones.
Figure 2.In vitro effect of compounds 5j, 6a, 6 h, 6j, 6k and 6n on the activity of AChE in cerebral cortex of rats. *p < .05, **p < .01, ***p < .001 when compared to control group (water or MeOH).
Figure 3.In vitro effect of compounds 5j, 6a, 6 h, 6j, 6k and 6n on the activity of AChE in cerebral hippocampus of rats. *p < .05, **p < .01, ***p < .001 when compared to control group (water or MeOH).
Figure 4.In vitro cytotoxicity activity of compounds 5j, 6a, 6 h, 6j, 6k and 6n to cell viability of the primary astrocyte culture at 100 μM, after for 48 h (A) and 72 h (B) the treatment.
IC50 of AChE inhibition for thiazolidin-4-ones 5 and thiazinan-4-ones 6.
| IC50 (µM) | R | IC50 (µM) | ||||
|---|---|---|---|---|---|---|
| Hippocampus | Cortex | Hippocampus | Cortex | |||
| 30.92 | >250 | H | 5.20 | 7.40 | ||
| >250 | >250 | 4-Cl | 50.48 | 57.16 | ||
| 105.40 | >250 | 2-NO2 | 92.80 | 11.03 | ||
| 81.59 | 10.25 | 3-NO2 | 29.42 | 50.55 | ||
| 8.68 | 28.15 | 4-NO2 | 9.32 | 40.06 | ||
| >250 | >250 | 4-CH3 | 4.46 | 6.83 | ||
| nd | nd | 2-OCH3 | 84.90 | >250 | ||
| nd | nd | 3-OCH3 | 90.30 | 24.01 | ||
| >250 | >250 | 4-OCH3 | 17.02 | 22.20 | ||
| 30.58 | 27.63 | 3-OH | 69.60 | 25.65 | ||
(nd) not determinated.