| Literature DB >> 24580778 |
Laychiluh Bantie, Solomon Assefa, Tilahun Teklehaimanot, Ephrem Engidawork1.
Abstract
BACKGROUND: The issue of resistance in malarial infection makes development of novel drugs a necessity. An alternative source for discovering such drugs is natural products. Croton macrostachyus H. (Euphorbiaceae) is used in Ethiopian folklore medicine for the treatment of malaria and found to possess antimalarial activity in vitro. However, no further scientific investigations have been carried out to substantiate the claim. This study therefore aimed at investigating the in vivo antiplasmodial activity of 80% methanol extract and solvent fractions of the leaves of Croton macrostachyus H. in rodent model of malaria.Entities:
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Year: 2014 PMID: 24580778 PMCID: PMC3943266 DOI: 10.1186/1472-6882-14-79
Source DB: PubMed Journal: BMC Complement Altern Med ISSN: 1472-6882 Impact factor: 3.659
Parasitemia and survival time of infected mice treated with crude extract and solvent fractions of in the 4 day suppressive test
| Crude extract | CON | 32±0.97 | - | 7±0.36 |
| CM200 | 18±1.73 | 44a3,b3,c3 | 10±0.33a1,b3,c3 | |
| CM400 | 7±0.31 | 78a3,b1,c3 | 14±0.42a3,b3,c3 | |
| CM600 | 3±0.40 | 91a3 | 18±0.60a3,c3 | |
| CQ25 | 0.0a3 | 100 | 30±0a3 | |
| Chloroform fraction | CON | 30.43±0.61 | - | 7.34±0.42 |
| CF200 | 15.40±0.43 | 49.4a3,c3 | 9.00±0.68c3 | |
| CF400 | 10.30±0.58 | 66.2a3,c3,e3 | 13.34±1.25a3,c3,e1 | |
| CF600 | 7.34±0.15 | 75.9a3,c3,d3,e3 | 16.50±1.08a3,c3,e3 | |
| CQ25 | 0.00±0.00 | 100.00a3 | 29.67±0.34a3 | |
| Methanol fraction | CON | 34.33±1.62 | - | 6.84±0.17 |
| MF200 | 21.61±0.54 | 37.1a3,c3 | 8.83±1.14c3 | |
| MF400 | 16.30±0.71 | 52.5a3,c3,e2 | 8.50±0.56c3 | |
| MF600 | 12.28±0.52 | 64.2a3,c3,d1,e3 | 10.00±1.15a1,c3 | |
| CQ25 | 0.00±0.00 | 100.00a3 | 30.00±0.00a3 | |
| Aqueous fraction | CON | 37.47±0.84 | - | 7.00±0.25 |
| AF200 | 33.03±0.94 | 11.8a2,c3 | 7.84±0.60c3 | |
| AF400 | 26.27±0.69 | 29.9a3,c3,e3 | 8.34±0.42c3 | |
| AF600 | 22.94±0.79 | 38.8a3,c3,d3,e3 | 9.17±0.31a2,c3 | |
| CQ25 | 0.00±0.00 | 100.00a3 | 30.00±0.00a3 |
Data are expressed as mean ± SEM; n = 6; a, compared to control; b, to 600 mg/kg; c, to CQ25mg/kg; d, to 400 mg/kg; e, 200 mg/kg: 1p<0.05, 2p<0.01, 3p<0.001; CF = Chloroform fraction, CQ = chloroquine, MF, methanol fraction, AF, aqueous fraction, CON = Control, CM, crude extract of Croton macrostachys. Numbers refer to dose in mg/kg.
Temperature, weight and packed cell volume of infected animals treated with crude extract and solvent fractions of in the 4 day suppressive test
| Crude extract | CON | 37.2±0.19 | 37.2±0.19 | −2 | 26.0±0.18 | 24.0±0.43 | −15.5 | 55±0.33 | 53±0.26 | −3.6 |
| CM200 | 37.5±0.08 | 37.2±0.07 | −0.8a2 | 26.1±0.12 | 25.3±0.34 | −5.2a1 | 53±1.34 | 53±1.48 | 0.0 | |
| CM400 | 37.1±0.11 | 37.1±0.11 | 0.5a2 | 26.2±0.11 | 25.9±0.15 | −0.6a3 | 54±0.50 | 55±0.70 | 1.8 | |
| CM600 | 37.0±0.15 | 37.0±0.15 | 1.3a3 | 26.2±0.17 | 25.7±0.22 | −2.8a2 | 54±0.55 | 56±0.84 | 3.5 | |
| CQ25 | 37.2±0.08 | 37.2±0.08 | 0.2a2 | 26.1±0.09 | 25.5±0.05 | −2.4a2 | 53±0.55 | 55±0.42 | 3.8 | |
| Chloroform fraction | CON | 37.3±0.42 | 32.9±0.21 | −11.76 | 27.9±0.82 | 26.8±1.15 | −4.00 | 53.3±1.46 | 49.7±1.61 | −6.73 |
| CF200 | 36.9±0.37 | 36.3±0.47 | −1.59a3 | 27.17±0.64 | 25.15±1.16 | −7.43b3 | 51.7±1.78 | 51.1±1.1 | −1.14a1 | |
| CF400 | 37.5±0.32 | 37.4±0.23 | −0.48a3 | 27.7±1.16 | 26.8±1.08 | −3.82b2 | 52.2±1.25 | 52.2±1.16 | 0.00a2 | |
| CF600 | 37.7±0.49 | 37.4±0.39 | −0.93a3 | 28.1±1.20 | 27.9±1.12 | −0.89b1 | 51.7±1.82 | 53.3±1.90 | 3.23a3 | |
| CQ25 | 37.4±0.27 | 37.5±0.26 | 0.32a3 | 26.7±0.51 | 27.3±0.83 | 2.36a2 | 53.2±0.48 | 53.9±0.62 | 1.35a2 | |
| Methanol fraction | CON | 37.3±0.21 | 35.4±0.17 | −5.15 | 31.6±0.47 | 30.3±0.89 | −3.83 | 53.8±1.61 | 52.3±1.05 | −2.80 |
| MF200 | 37.7±0.29 | 35.2±0.71 | −6.63b3 | 26.6±0.47 | 27.2±0.54 | 2.44a3 | 53.2±0.98 | 50.4±0.70 | −5.17b3 | |
| MF400 | 37.9±0.36 | 34.4±0.48 | −9.24b3 | 26.8±0.55 | 28.1±0.59 | 4.43a3 | 52.8±0.96 | 51.2±0.90 | −3.00b2 | |
| MF600 | 38.0±0.15 | 34.7±0.23 | −8.73b3 | 28.1±0.89 | 29.4±0.81 | 4.52a3 | 50.9±1.28 | 51.1±1.47 | 0.25 | |
| CQ25 | 36.9±0.25 | 37.2±0.60 | 0.68a3 | 30.1±0.93 | 30.5±0.83 | 1.33a2 | 54.8±1.16 | 55.7±0.98 | 1.68a1 | |
| Aqueous fraction | CON | 37.7±0.13 | 34.2±0.28 | −9.30 | 31.7±0.57 | 30.4±0.65 | −3.94 | 55.8±1.17 | 53.9±1.25 | −3.40 |
| AF200 | 37.1±0.46 | 34.9±0.32 | −5.90b2 | 30.8±0.79 | 30.7±0.54 | −0.39b1 | 56.8±0.96 | 55.3±0.54 | −2.64b1 | |
| AF400 | 36.7±0.25 | 34.9±0.27 | −5.20b2 | 29.2±0.86 | 28.9±0.75 | −1.04b1 | 54.4±1.85 | 54.2±0.21 | −0.46 | |
| AF600 | 36.6±0.35 | 34.9±0.56 | −4.97b2 | 30.0±1.04 | 29.0±0.90 | −3.26b2 | 56.4±1.14 | 55.8±0.77 | −1.19b1 | |
| CQ25 | 36.9±0.35 | 36.6±0.26 | −1.00a3 | 28.1±1.08 | 28.8±1.18 | 2.56a2 | 55.5±0.79 | 56.1±0.55 | 1.04a1 | |
Data are expressed as mean ± SEM; n = 6; a = compared to control, b = to chloroquine 25 mg/kg; 1p< 0.05; 2p<0.01, 3p<0.001; D0 = pre-treatment value on day 0, D4 = post-treatment value on day four, CF = Chloroform fraction, CQ = chloroquine, MF, methanol fraction, AF, aqueous fraction, CON = Control, CM, crude extract of Croton macrostachys. Numbers refer to dose in mg/kg.
Parasitaemia and survival of infected animals treated with crude extract and chloroform fraction of in the Rane’s test
| Crude extract | CON | 9±0.15 | 16±0.13 | 14±0.23 | 31±0.61 | 36±1.1 | - | 6±0.31 |
| CM200 | 12±0.36 | 28±1.20 | 26±0.32 | 25±0.16 | 22±0.19 | 39a3,b3,c3 | 7±0.31b3,c3 | |
| CM400 | 11±0.43 | 19±0.95 | 16±0.85 | 14±0.54 | 11±0.95 | 69a3,c1 | 12±0.47a3,b3,c3 | |
| CM600 | 10±0.32 | 14±0.56 | 11±0.47 | 8±0.41 | 7±0.78 | 83a3 | 16±0.42a3,c3 | |
| CQ25 | 11±0.22 | 5±0.09 | 2±0.56 | 0 | 0.00±0.00 | 100a3 | 30±0a3 | |
| Chloroform fraction | CON | 21.8±0.58 | 26.6±0.90 | 33.1±0.81 | 40.7±0.67 | 54.6±1.34 | - | 7.2±0.31 |
| CF200 | 20.8±0.83 | 20.8±0.66 | 20.2±0.92 | 19.8±0.50 | 18.5±0.63 | 66.2a3,c3 | 7.5±0.34c3 | |
| CF400 | 22.7±0.63 | 21.2±0.51 | 17.4±0.45 | 15.4±0.49 | 13.5±0.80 | 75.3a3,c3,e2 | 10.3±0.76a2,d3 | |
| CF600 | 21.8±0.79 | 20.9±0.62 | 15.4±1.02 | 11.5±0.45 | 9.7±0.65 | 82.3a3,c3,d1,e3 | 12.3±0.72a3,c3,e3 | |
| CQ25 | 20.8±0.85 | 15.6±1.02 | 5.5±0.28 | 1.5±0.29 | 0.00±0.0 | 100a3 | 30.0±0.0a3 |
Data are expressed as mean ± SEM; n = 6: a, compared to control; b, to 600 mg/kg; c, to CQ 25; d, to 400 mg/kg; e, to 200 mg/kg: 1p<0.05, 2p<0.01, 3p<0.001; CF = Chloroform fraction, CQ = chloroquine, MF, methanol fraction, AF, aqueous fraction, CON = Control, CM, crude extract of Croton macrostachys. Numbers refer to dose in mg/kg.
Rectal temperature, weight and packed cell volume of infected animals treated with crude extract of in the Rane’s test
| 37.4±0.14 | 36.6±0.05 | −2.2 | 26.2±0.21 | 22.1±0.43 | −7.7 | 54±0.31 | 53±0.21 | −4.9 | |
| 37.3±0.08 | 37.2±0.08 | −0.2
| 26.3±0.11 | 25±0.16 | −3.1
| 53±0.31 | 52±0.40 | −1.9 | |
| 37.4±0.09 | 37.4±0.04 | 0.0
| 26.4±0.11 | 26.3±0.05 | −1.1
| 52.5±0.43 | 53±0.22 | 0.9 | |
| 37.3±0.09 | 37.4±0.03 | 0.2
| 26.6±0.06 | 25.9±0.05 | −1.8
| 52±0.31 | 53±0.44 | 1.9 | |
| 37.4±0.18 | 37.3±0.13 | −0.2
| 26.5±0.04 | 25.9±0.04 | −2.3
| 52.5±0.42 | 53±0.21 | 2.4 |
Data are expressed as mean ± SEM; n = 6; a,compared to controls, 1p<0.05, 2p< 0.01, 3p< 0.001; CM, crude extract of Croton macrostachys; W, weight; T, temperature; PCV, packed cell volume; 0 refers at day 0 and 4 to day 4. Numbers refer to dose in mg/kg.
Effect of the chloroform fraction of on on rectal temperature of infected mice in the Rane’s test
| Control | 37.25±0.21 | 34.05±0.15 | 34.08±0.19 | 33.48±0.26 | 33.53±0.21 | 32.75±0.16 |
| CM200 | 37.48±0.3 | 33.38±0.21 | 34.48±0.33 | 34.76±0.27 | 35.62±0.26 | 36.43±0.24a3,b1 |
| CM400 | 37.48±0.22 | 33.38±0.38 | 34.53±0.37 | 34.15±0.23 | 36.05±0.25 | 36.62±0.21a3 |
| CM600 | 37.50± 0.21 | 33.64±0.32 | 33.91±0.26 | 35.74±0.14 | 36.50±0.28 | 36.91±0.13a3 |
| CQ25 | 37.32±0.23 | 33.92±0.32 | 34.67±0.24 | 35.65±0.29 | 37.13±0.19 | 37.40±0.19a3 |
Data are expressed as mean ± SEM for six mice per group; a = compared to controls, b = to chloroquine 25 mg/kg; 1 = p<0.05; 3=p<0.001, CQ = chloroquine.
Phytochemical constituents of crude extract and solvent fractions of
| Alkaloids | + | + | + | + |
| Saponins | + | - | + | + |
| Phenolic compounds | + | + | + | - |
| Cardiac glycosides | + | - | + | - |
| Tannins | + | - | + | + |
| Flavonoids | + | - | + | - |
| Terpenoids | + | + | - | - |
| Anthraquinones | - | - | - | - |
| Phlobatannins | - | - | - | - |
-, absent; +, present.