| Literature DB >> 26077462 |
Senait Girma1, Mirutse Giday2, Berhanu Erko3, Hassen Mamo4.
Abstract
BACKGROUND: Continuous emergence of multi-drug-resistant malaria parasites and their rapid spread across the globe warrant urgent search for new anti-malarial chemotherapeutics. Traditional medicinal plants have been the main sources for screening active phytochemicals against malaria. Accordingly, this study was aimed at evaluating the anti-malarial activity of Osyris quadripartita Salzm. Ex Decne., a plant which is used for traditional malaria treatment by local people in different parts of Ethiopia.Entities:
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Year: 2015 PMID: 26077462 PMCID: PMC4467072 DOI: 10.1186/s12906-015-0715-3
Source DB: PubMed Journal: BMC Complement Altern Med ISSN: 1472-6882 Impact factor: 3.659
Yield of aqueous, chloroform and methanol crude leaf extracts ofO. quadripartita
| Solvent | Plant powder (g) | Extraction solvent (ml) | Yield (g) | Yield (%) |
|---|---|---|---|---|
| Aqueous | 100 | 1000 | 6.60 | 6.60* |
| Methanol | 100 | 1000 | 32.75 | 32.75* |
| Chloroform | 100 | 1000 | 1.447 | 1.447* |
Key: ml = milliliter; g = gram; % = percentage; * = there was significant difference between these values (P < 0.05)
Effect of crude aqueous, methanol and chloroform leaf extracts of O. quadripartita on PCV and BW of O. quadripartita on P. berghei-infected mice
| Description | Dose (mg/kg/day) | PCV | BW (g) | ||||||
|---|---|---|---|---|---|---|---|---|---|
| D0 | D4 | % change |
| D0 | D4 | % change |
| ||
| Aqueous | 200 | 60.4 ± 0.60 | 56.0 ± 0.89a | −7.28 | 0.02, 0.05 | 31.2 ± 0.37 | 26.5 ± 0.76 a | −15.06 | 0.000, 1.000 |
| 400 | 56.6 ± 1.28 | 54.0 ± 1.14 | −4.59 | 0.17, 0.34 | 25.2 ± 0.37 | 21.8 ± 0.58 a | −13.49 | 0.000, 0.005 | |
| 600 | 58.6 ± 2.02 | 56.8 ± 1.98* | −3.07 | 0.34, 0.01 | 28.6 ± 0.40 | 25.1 ± 0.47 a | −12.23 | 0.000, 0.000 | |
| Methanol | 200 | 58.4 ± 1.77 | 54.2 ± 1.46 a | −7.19 | 0.02, 0.29 | 30.6 ± 0.40 | 26.4 ± 0.24 a | −13.72 | 0.000, 1.000 |
| 400 | 57.0 ± 1.60 | 53.2 ± 1.20 a | −6.67 | 0.04, 0.59 | 28.2 ± 0.37 | 24.6 ± 0.40 a | −12.76 | 0.000, 0.522 | |
| 600 | 59.4 ± 0.40 | 55.8 ± 0.73 | −6.06 | 0.06, 0.06 | 25.6 ± 0.40 | 23.2 ± 0.37a | −09.37 | 0.000, 0.112 | |
| Chloroform | 200 | 57.2 ± 1.59 | 54.2 ± 1.31 | −5.24 | 0.11, 0.29 | 27.6 ± 0.24 | 26.2 ± 0.37* | −05.07 | 0.027, 0.000 |
| 400 | 56.4 ± 0.75 | 55.0 ± 0.54 | −2.48 | 0.46, 0.34 | 28.6 ± 0.50 | 30.8 ± 0.58* | +07.69 | 0.001, 0.000 | |
| 600 | 54.8 ± 1.24 | 53.8 ± 1.52 | −1.82 | 0.59, 0.17 | 27.0 ± 0.31 | 29.6 ± 0.40* | +09.62 | 0.000, 0.000 | |
| dH2O (NC) | 0.2 ml | 56.8 ± 1.93 | 52.2 ± 1.71 a | −8.09 | 0.017 | 29.0 ± 0.31 | 23.6 ± 0.24 a | −18.62 | 0.000 |
| T-80 (NC) | 0.2 ml | 58.0 ± 1.51 | 52.4 ± 0.92 a | −9.65 | 0.004 | 28.8 ± 0.48 | 23.0 ± 0.44 a | −20.13 | 0.000 |
| CQ | 25 | 56.8 ± 0.96 | 56.8 ± 0.89* | 0.00 | 0.674 | 29.8 ± 0.48 | 33.2 ± 0.37*a | +11.40 | 0.000 |
Keys: Values for the packed cell volume (PCV) and body weight (BW) are presented as mean (M) ± standard error of the mean (SEM); n = 5 (number of mice/group in a single experiment); D0: day 0 (day-of-extract-inoculation); D4 = day 4 (the fifth day pos-extract-inoculation; mg/kg/day: 1mg of extract per one kilogram of mice for one day; NC: negative control; T-80 = Tween-80 (NC for chloroform extract); dH2O: distilled water (NC for aqueous and methanol extract); CQ: chloroquine phosphate; *: significant compared with that of NC; a: significant difference between D0 and D4. **the first value is for the comparison between D0 and D4, the second is with the NC
Chemosuppressive effect of crude aqueous, chloroform and methanol leaf extracts of O. quadripartita in P. berghei-infected mice
| Description | Dose (mg/kg/day) | % parasitaemia |
| % suppression | MST ± SEM |
|
|---|---|---|---|---|---|---|
| Aqueous | 200 | 63.02 ± 3.91 | 0.740 | 0.37 | 6.2 ± 0.37 | 0.418 |
| 400 | 54.62 ± 2.20 | 0.142 | 16.53 | 7.4 ± 0.51* | 0.018 | |
| 600 | 51.26 ± 2.05 | 0.056 | 21.67 | 8.2 ± 0.37* | 0.001 | |
| Methanol | 200 | 55.92 ± 0.84 | 0.196 | 14.5 | 7.4 ± 0.51* | 0.018 |
| 400 | 50.94 ± 1.24 | 0.510 | 22.16 | 8.2 ± 0.37* | 0.001 | |
| 600 | 49.48 ± 2.06* | 0.033 | 24.4 | 8.4 ± 0.24* | 0.000 | |
| Chloroform | 200 | 44.48 ± 10.18* | 0.006 | 31.7 | 8.0 ± 1.14* | 0.004 |
| 400 | 40.7 ± 9.66* | 0.001 | 37.5 | 9.8 ± 0.58* | 0.000 | |
| 600 | 38.26 ± 8.78* | 0.001 | 41.26 | 11 ± 0.63* | 0.000 | |
| DH2O (NC) | 0.2 ml | 65.44 ± 1.7 | - | 0.00 | 5.6 ± 0.24 | |
| T-80 (NC) | 0.2 ml | 65.14 ± 1.7 | - | 0.00 | 5.8 ± 0.37 | |
| CQ | 25 | 0.00 | 0.000 | 100 | ND |
Keys: mg/kg/day: 1 mg of extract per one kilogram of mice for one day; MST: mean survival time; SEM: standard error of the mean; NC: negative control; T-80 = Tween-80 (NC for chloroform extract); dH2O: distilled water (NC for aqueous and methanol extract); CQ: chloroquine phosphate; ND: no death *: significant compared with that of NC