| Literature DB >> 33968894 |
John V Anyam1, Priscilla E Daikwo1, Marzuq A Ungogo2,3, Nwakaego E Nweze4, Ngozichukwuka P Igoli5, Alexander I Gray6, Harry P De Koning2, John O Igoli1.
Abstract
The powdered roots of the medicinal plant Acacia nilotica were extracted with hexane and ethyl acetate, and the extracts were subjected to column chromatography for the isolation of potentially bioactive compounds and their screening against kinetoplastid pathogens. NMR and HREI mass spectrometric analyses identified two new diterpenes, characterized as 16, 19-dihydroxycassa-12-en-15-one (Sandynone, 1) and (5S, 7R, 8R, 9R, 10S, 13Z, 17S)-7,8:7,17:16,17-triepoxy-7,8-seco-cassa-13-ene (niloticane B, 2). The previously reported (5S,7R,8R,9R,10S) -(-)-7,8-seco-7, 8-oxacassa-13,15-diene-7,17-diol (3), (5S,7R,8R,9R,10S) -(-)-7,8-seco-7, 8-oxacassa-13,15-dien-7-ol-17-al (4), and (5S,7R,8R,9R,10S) -(-)-7,8-seco-7, 8-oxacassa-13,15-dien-7-ol (5) a, mixture of stigmasterol (6a) and sitosterol (6b), and lupeol (7) were also isolated. Several column fractions displayed significant activity against a panel of Trypanosoma and Leishmania spp., and from the most active fraction, compound 4 was isolated with high purity. The compound displayed high activity, particularly against T. brucei, T. evansi, and L. mexicana (0.88-11.7 µM) but only a modest effect against human embryonic kidney cells and no cross-resistance with the commonly used melaminophenyl arsenical and diamidine classes of trypanocides. The effect of compound 4 against L. mexicana promastigotes was irreversible after a 5-h exposure, leading to the sterilization of the culture between 24 and 48 h.Entities:
Keywords: Acacia nilotica; Leishmania; Nigeria; diterpenes; seco-oxocassanes; spectroscopy; trypanosomiasis
Year: 2021 PMID: 33968894 PMCID: PMC8097170 DOI: 10.3389/fchem.2021.624741
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.221
1H NMR data for compounds 1 (at 500 MHz) and 2 (at 400 MHz) in CDCl3.
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| 1 | 0.97, 1.62 | 38.9 (CH2) | 0.98, 1.97 | 40.9 (CH2) | 0.94, 1.94 | 40.7 |
| 2 | 0.82 (m) | 18.0 (CH) | 1.44, 1.51 | 18.9 (CH2) | 1.40, 1.47 | 18.7 |
| 3 | 1.41, 1.30 | 35.4 (CH2) | 1.16, 1.42 | 41.8 (CH2) | 1.14, 1.43 | 41.6 |
| 4 | — | 37.7 (C) | — | 34.5 (C) | — | 34.3 |
| 5 | 1.22 | 48.4 (CH) | 1.23 (br d) | 47.8 (CH) | 1.28 | 47.6 |
| 6 | 1.57 (m) | 21.3 (CH2) | 1.83, 1.61 | 31.6 (CH2) | 1.65, 1.87 | 31.4 |
| 7 | 1.67 (m) | 30.5 (CH2) | 5.21 (dd, 10.4,5.2) | 95.1 (CH) | 5.26 | 94.9 |
| 8 | 1.51 | 34.9 (CH) | 4.47 (d, 8.9) | 67.4 (CH) | 4.52 | 67.2 |
| 9 | 1.38 (d, 3.7) | 43.9 (CH) | 1.23 (d, 4.0) | 56.6 (CH) | 1.21 | 56.4 |
| 10 | — | 36.7 (C) | — | 39.2 (C) | — | 39.0 |
| 11 | 2.23 (d,4.3), 2.08 | 26.1 (CH2) | 1.74, 1.21 (d, 4.0) | 21.4 (CH2) | 1.76, 1.30 | 21.2 |
| 12 | 6.74 (t, 4.0) | 141.0 (CH) | 1.78 (m), 2.04 (d, 2.1) | 32.0 (CH2) | 2.09, 1.83 | 31.8 |
| 13 | — | 142.0 (C) | — | 135.9 (C) | — | 135.8 |
| 14 | 2.70 (q, 6.2) | 31.4 (CH) | — | 129.9 (C) | — | 129.6 |
| 15 | — | 198.0 (C) | 2.31 (d, 7.1), 1.64 (d. 5.3) | 30.4 (CH2) | 2.37, 1.30 | 30.2 |
| 16 | 4.44 (d, 17.6), 4.56 (d, 17.6) | 64.4 (CH2) | 3.84 (td, 11.4, 3.8), 3.69 (dd, 11.0, 5.7) | 56.4 (CH2) | 3.66, 3.82 | 56.2 |
| 17 | 0.86 (d, 6.2) | 15.1 (CH3) | 5.72 (br s) | 88.6 (CH) | 5.70 | 88.4 |
| 18 | 3.12, 3.42 | 72.1 (CH2) | 0.89 (s) | 33.2 (CH3) | 0.87 | 33.0 |
| 19 | 0.80 | 18.0 (CH3) | 0.87 (s) | 22.5 (CH3) | 0.85 | 22.3 |
| 20 | 0.88 | 22.5 (CH3) | 0.90 (s) | 15.7 (CH3) | 0.88 | 15.5 |
Manríquez-Torres et al. (2013).
FIGURE 1Structure of compounds 1 and 2, including their selected COSY and HMBC correlations (1A and 1B).
FIGURE 2Structures of other isolated compounds: oxacassadienes (3, 4 and 5); stigmasterol 6a and β-sitosterol 6b and lupeol 7.
EC50 of two mixtures and compound 4 against Trypanosoma and Leishmania species (n = 3).
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| PAN-76 compounds 1 and 3 (µg/ml) | 10.1 ± 1.0 | 44.1 ± 3.2 | 7.2 ± 0.6 | 4.3 ± 0.1 | 34.1 ± 11.2 |
| HEAN-18 compounds 2 and 5 (µg/ml) | 25.9 ± 2.6 | 194.8 ± 98.9 | 17.2 ± 2.6 | ND | 51.9 ± 3.8 |
| HEAN 1 crude extract containing compound 4 (µg/ml) | 5.7 ± 0.1 | 35.8 ± 4.3 | 7.3 ± 1.7 | 5.4 ± 0.1 | 10.1 ± 0.6 |
| HEAN 19b compound 4 (µg/ml) | 0.45 ± 0.02 (1.41 µM) | 3.72 ± 0.54 (11.7 µM) | 1.39 ± 0.27 (4.36 µM) | 0.33 ± 0.05 (1.04 µM) | 0.28 ± 0.05 (0.88 µM) |
| Diminazene (µM) | 0.0878 ± 0.0355 | 0.228 ± 0.0446 | 0.0382 ± 0.0050 | 0.0438 ± 0.0005 | ND |
| Suramin (µM) | 0.0189 ± 0.0004 | 8.74 ± 1.634 | 0.021 ± 0.006 | ND | ND |
| Pentamidine (µM) | ND | ND | ND | ND | 0.786 ± 0.022 |
ND, not done.
Cross-resistance of two mixtures and compound 4 with existing drugs.
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| PAN-76 compounds 1 and 3 | 1.05 | 0.83 | 0.94 | 0.63 |
| HEAN -18 compounds 2 and 5 | 1.2 | 0.10 | 1.23 | 0.77 |
| HEAN 1 crude extract | 1.05 | 0.83 | 0.94 | 0.76 |
| HEAN 19b compound 4 | 1.38 | 0.27 | 1.12 | 0.69 |
| Diminazene | 5.70 | 0.19 | 6.96 | 0.014 |
| Suramin | 0.62 | 0.50 | 0.87 | 0.74 |
RF, resistance factor, being the ratio of the EC50 values of the resistant and control strains. p value was obtained using unpaired Student’s test between the EC50 values of the resistant line and control, obtained in parallel (n = 3).
Toxicity of mixtures and compound 4 to HEK cells.
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| PAN-76 compound 1 and 3 (µg/ml) | 56.8 ± 2.7 | 5.65 | 1.29 | 7.92 | 13.3 | 1.67 |
| HEAN-1 crude (µg/ml) | 75.5 ± 6.6 | 13.6 | 2.11 | 10.4 | 13.9 | 7.45 |
| HEAN -19b compound 4 (µg/ml) | 9.39 ± 1.37 (29.5 µM) | 21.1 | 2.53 | 6.75 | 28.1 | 33.8 |
| PAO (µM) | 2.8 ± 0.08 | — | — | — | — | — |
FIGURE 3Manual cell count of L. mexicana cultures grown in the presence or absence of compound 4 and pentamidine at 5 × EC50, with or without wash after 5 or 48 h of incubation. (A) Compound 4. (B) Pentamidine. The dotted brown line indicates the detection limit, being 104 cells/ml. For convenience, where no cells were observed in the counting chamber, the values of 5,000, 4,000, or 3,000 cells/ml were entered to facilitate a graphical representation.