| Literature DB >> 31151304 |
Mohammad Reza Youssefi1, Elham Moghaddas2, Mohaddeseh Abouhosseini Tabari3, Ali Akbar Moghadamnia4, Seyed Mohammad Hosseini5, Bibi Razieh Hosseini Farash6,7, Mohammad Amin Ebrahimi8, Niki Nabavi Mousavi9, Abdolmajid Fata10,11, Filippo Maggi12, Riccardo Petrelli13, Stefano Dall'Acqua14, Giovanni Benelli15, Stefania Sut16.
Abstract
BACKGROUND: One of the most important causative agents of visceral leishmaniasis (VL) is Leishmania infantum, which is mainly spread by Phlebotomus and Lutzomyia sandflies in the Old and New World, respectively. Novel and effective drugs to manage this neglected vector-borne disease are urgently required. In this study, we evaluated the toxicity of carvacrol, thymol and linalool, three common essential oil constituents, on amastigotes and promastigotes of L. infantum.Entities:
Keywords: insect vectors; neglected tropical diseases; protozoan parasites; sandflies; visceral leishmaniasis
Mesh:
Substances:
Year: 2019 PMID: 31151304 PMCID: PMC6600403 DOI: 10.3390/molecules24112072
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1In vitro growth inhibition of Leishmania infantum promastigotes exposed to different concentrations of carvacrol, thymol and linalool in MTT assay lasting 24 h. Values are means ± SD; above each column, different letters indicate significant differences among treatments (ANOVA followed by Tukey’s HSD test, p < 0.05).
Probit analysis showing the efficacy of carvacrol and thymol against Leishmania infantum promastigotes.
| Treatment | Concentration (µg/mL) | Growth Inhibition after 24 h (%) ± SE a | IC50 (µg/mL) |
|
|---|---|---|---|---|
| Carvacrol | 10 | 50.3 ± 10.7 | 9.8 (65 μM) | 1.29 |
| 5 | 25.6 ± 2.4 | |||
| 2.5 | 15.76 ± 1.6 | |||
| 1.25 | 6.66 ± 5.2 | |||
| Thymol | 10 | 62.76 ± 5.09 | 7.22 (48 μM) | 3.37 |
| 5 | 41.13 ± 4.02 | |||
| 2.5 | 30.83 ± 2.24 | |||
| 1.25 | 14.93 ± 5.92 |
SE standard error, LCL 95% lower confidence limit, UCL 95% upper confidence limit, n.s. not significant (p ˃ 0.05). a values are mean ± SE of three replicates. b Chi-square value.
Figure 2Liver tissue. A, B, C: control group; D, E, F: carvacrol group; G, H, I: glucantime group; J, K, L: thymol group; vacuolar degeneration (1), parasites in hepatocytes (2), inflammatory cells infiltration, hyperemia (3), bill duct hyperplasia (4); H&E staining, 40×, 100× magnification.
Histological alteration of hamster livers in the groups treated with carvacrol, thymol and glucantime in comparison with the control group.
| Necrosis | Infiltration of Inflammatory Cells | Hyperemia | Vacuolar Degeneration of the Liver | Kupffer’s Cell Hyperplasia | Bile Duct Hyperplasia | Presence of Parasite | |
|---|---|---|---|---|---|---|---|
| Control | ++ | +++ | - | + | ++ | - | +++ |
| Carvacrol | ++ | ++ | ++ | ++ | ++ | - | +++ |
| Thymol | + | +++ | ++ | + | ++ | ++ | + |
| Glucantime | ++ | ++ | + | +++ | ++ | + | +++ |
(-) none, (+) mild, (++) moderate, and (+++) severe.
Figure 3Spleen tissue. A, B, C: control group; D, E, F: carvacrol group; G, H, I: glucantime group; J, K, L: thymol group; (1), parasites in spleen cell (2), hemosiderin (3), H&E staining, 40×, 100× magnification.
Histological alteration of hamster spleens in the groups treated with carvacrol, thymol, and glucantime in comparison with the control group.
| Necrosis | Neutrophil Infiltration | Presence of Hemosiderin | Presence of the Parasite | |
|---|---|---|---|---|
| Control | + | ++ | + | ++ |
| Carvacrol | + | + | + | + |
| Thymol | + | + | ++ | + |
| Glucantime | + | ++ | + | + |
(+) mild, (++) moderate.