| Literature DB >> 30925657 |
Valeria P Sülsen1,2, Emilio F Lizarraga3, Orlando G Elso4,5, Natacha Cerny6, Andrés Sanchez Alberti7,8,9, Augusto E Bivona10,11,12, Emilio L Malchiodi13,14,15, Silvia I Cazorla16,17, César A N Catalán18.
Abstract
Sesquiterpene lactones are naturally occurring compounds mainly found in the Asteraceae family. These types of plant metabolites display a wide range of biological activities, including antiprotozoal activity and are considered interesting structures for drug discovery. Four derivatives were synthesized from estafietin (1), isolated from Stevia alpina (Asteraceae): 11βH,13-dihydroestafietin (2), epoxyestafietin (3a and 3b), 11βH,13-methoxyestafietin, (4) and 11βH,13-cianoestafietin. The antiprotozoal activity against Trypanosoma cruzi and Leishmania braziliensis of these compounds was evaluated. Epoxyestafietin was the most active compound against T. cruzi trypomastigotes and amastigotes (IC50 values of 18.7 and 2.0 µg/mL, respectively). Estafietin (1) and 11βH,13-dihydroestafietin (2) were the most active and selective compounds on L. braziliensis promastigotes (IC50 values of 1.0 and 1.3 μg/mL, respectively). The antiparasitic activity demonstrated by estafietin and some of its derivatives make them promising candidates for the development of effective compounds for the treatment of Chagas disease and leihsmaniasis.Entities:
Keywords: Leishmania braziliensis; Stevia alpina; Trypanosoma cruzi; sesquiterpene lactones
Mesh:
Substances:
Year: 2019 PMID: 30925657 PMCID: PMC6479983 DOI: 10.3390/molecules24071209
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Chemical structures of estafietin (1) and its derivatives (2–5).
Figure 2Trypanocidal activity of estafietin (1) and estafietin derivatives (2–5) against T. cruzi bloodstream trypomastigotes. Bloodstream trypomastigotes were assayed in duplicate in the presence of 0 to 100 µg/mL of estafietin (1), 11βH,13-dihydroestafietin (2), α- (3a) and β-epoxyestafietin (3b) (1:4 mixture), 11βH,13-methoxyestafietin (4) and 11βH,13-cianoestafietin (5). Cultures were done in 96-well plates with 1.5 × 106 parasites/mL over 24 h. The living parasites were then counted in a Neubauer chamber. Symbols represent mean ± SEM. Each treatment was compared to controls: parasites incubated with culture medium only. * p < 0.05, ** p < 0.01 and *** p < 0.005.
Figure 3Inhibition of T. cruzi amastigotes replication by estafietin (1) and estafietin derivatives (2–5). Mammalian cells (5 × 103 cells/well) were seeded in 96-well plates and infected 24 h later with transfected trypomastigotes expressing β-galactosidase. After 24 h of co-culture, plates were washed and compounds were added at 0–100 µg/mL in 150 µL medium. On day 6 post-infection, the assays were developed by the addition of CPRG (100 mM) and Nonidet P-40 (1%). Plates were incubated for 6 h and the optical density was read at 570 nm. Infected untreated mammalian cells were used as 100% infection control. The percentage of inhibition was calculated as 100 − {[(Absorbance of treated infected cells)/(Absorbance of untreated infected cells)] × 100}. Symbols represent mean ± SEM. Each treatment was compared to controls: parasites incubated with culture medium only. * p < 0.05, ** p < 0.01 and *** p < 0.005.
Figure 4Leishmanicidal activity of estafietin (1) and estafietin derivatives (2–5) on L. braziliensis promastigotes. Parasites were cultured for 72 h in the presence of each compound (0–50 µg/mL). The inhibition of parasite growth was evaluated by a [3H] thymidine uptake assay. The percentage of inhibition was calculated as 100 − [(cpm of treated parasites)/(cpm of untreated parasites)] × 100. Values represent mean ± SEM from three independent experiments carried out in triplicate. Each treatment was compared to controls: parasites incubated with culture medium only. * p < 0.05, ** p < 0.01 and *** p < 0.005.
Cytotoxicity on Vero cells and selectivity indexes of estafietin (1) and estafietin derivatives (2–5).
| Compounds | CC50
| Selectivity Index | ||
|---|---|---|---|---|
| Trypomastigotes | Amastigotes | Promastigotes | ||
|
| 240.4 | 9.5 | 8.3 | 240.4 |
|
| 164.6 | 1.7 | 2.0 | 126.6 |
|
| 8.1 | 0.4 | 4.0 | 1.0 |
|
| 315.6 | 3.1 | 10.3 | 6.1 |
|
| 133.6 | 1.7 | 1.3 | 2.7 |
1H-NMR data of compounds 1–5 in CDCl3 (600 MHz; TMS as internal standard).
| H | 1 | 2 | 3b | 4 | 5 |
|---|---|---|---|---|---|
| δ (J in Hz) | δ (J in Hz) | δ (J in Hz) | δ (J in Hz) | δ (J in Hz) | |
|
| 2.98 ddd | 2.90 ddd | 2.22 ddd | 2.91 ddd | 2.93 ddd |
| (10.5, 8.5, 7.5) | (10.5, 8.5, 7.3) | (10.5, 8.3, 8) | (10.5, 8.5, 7.3) | (10.5, 8, 7.3) | |
|
| 2.07 dd | 2.10 dd | 2.10 dd | 2.10 dd | 2.15 dd |
| (14, 7.5) | (14, 7) | (13.8, 8) | (13.9, 7.3) | (13.9, 7.3) | |
|
| 1.81 ddd | 1.80 ddd | 1.80 ddd | 1.80 ddd | 1.80 ddd |
| (14, 10.5, 1.2) | (14, 10.5, 1.2) | (13.8, 10.5, 1.5) | (13.9, 10.5, 1.2) | (13.9, 10.5, 0.7) | |
|
| 3.38 s br | 3.36 s br | 3.36 s br | 3.36 s br | 3.37 s br |
|
| 2.32 dd | 2.28 dd | 2.43 dd | 2.32 dd | 2.35 dd |
| (11, 8.5) | (10.7, 8.4) | (11, 8.3) | (10.7, 8.5) | (10.7, 8) | |
|
| 4.08 dd | 3.96 dd | 4.12 dd | 3.99 dd | 4.09 dd |
| (11, 8.8) | (10.5, 9.7) | (11, 9) | (10.7, 9.4) | (10.7, 9.5) | |
|
| 2.87 ddddd | 1.91 m | 2.83 m | 2.36 m | 2.27 m |
| (11.5, 8.8, 5.2, 3.6, 3.2) | |||||
|
| 2.22 m | 2.09 m | 2.10 m | 2.17 m | 2.34 m |
|
| 1.53m | 1.35 m | 1.60 m | 1.38 m | 1.51 m |
|
| 2.28 m | 2.29 m | 2.00 m | 2.26 m | 2.32 m |
|
| 2.19 m | 2.12 m | 1.60m | 2.14 m | 2.20m |
|
| --- | 2.22 dq | --- | 2.41ddd | 2.58 ddd |
| (12, 7) | (11.7, 4.7, 3.4) | (11.8, 7.8, 4.4) | |||
|
| 6.21 d | 1.22 ʘ d | 6.23 d | 3.66 * dd | 2.87 * dd |
| (3.6) | (3.5) | (9.7, 4.7) | (17.2, 4.4) | ||
|
| 5.48 d | 5.51 d | 3.63 * dd | 2.63 * dd | |
| (3.2) | (3.1) | (9.7, 3.4) | (17.2, 7.8) | ||
|
| 4.95 s br | 4.88 s br | 2.64 * d | 4.89 s br | 4.93 s br |
| (4.8) | |||||
|
| 4.86 d | 4.83 s br | 2.61 * d | 4.84 s br | 4.88 s br |
| (1.7) | (4.8) | ||||
|
| 1.62 s | 1.59 s | 1.63 s | 1.58 s | 1.58 s |
|
| --- | --- | --- | 3.36 s (OMe) | --- |
ʘ Intensity three protons; * AB system; s = singlet; d = doublet; t = triplet; q = quartet; m = multiplet; br = broad.
13C-NMR data of compounds 1–5 in CDCl3 (600 MHz; TMS as internal standard).
| C | 1 | 2 | 3b (*) | 4 | 5 |
|---|---|---|---|---|---|
| δ | δ | δ | δ | δ | |
|
| 44.9 d | 44.2 d | 42.5 d | 44.3 d | 44.2 d |
|
| 33.0 t | 32.7 t | 28.5 t | 32.8 t | 32.6 t |
|
| 63.2 d | 63.1 d | 62.8 d | 63.2 d | 63.0 d |
|
| 65.8 s | 66.0 s | 65.7 s | 66.1 s | 65.8 s |
|
| 50.8 d | 50.4 d | 50.3 d | 50.3 d | 50.2 d |
|
| 80.5 d | 80.8 d | 79.9 d | 80.8 d | 81.1 d |
|
| 44.1 d | 50.0 d | 47.3 d | 44.7 d | 47.5 d |
|
| 29.2 t | 30.9 t | 24.2 t | 31.2 t | 31.0 t |
|
| 28.6 t | 31.0 t | 24.2 t | 30.9 t | 30.4 t |
|
| 146.1 s | 147.3 s | 57.1 s | 147.2 s | 146.3 s |
|
| 139.6 s | 41.9 d | 139.2 s | 47.9 d | 43.6 d |
|
| 169.7 s | 178.4 s | 169.5 s | 175.8 s | 174.1 s |
|
| 120.2 t | 13.2 q | 120.2 t | 69.2 t | 17.1 t |
|
| 115.3 t | 114.1 t | 53.1 t | 114.2 t | 114.9 t |
|
| 18.5 q | 18.7 q | 19.0 q | 18.7 q | 18.6 q |
|
| --- | --- | --- | 53.9 (q; OMe) | 116.7 (s; CN) |
(*): 125 MHz.