| Literature DB >> 26205948 |
Hermine Boukeng Jatsa1,2, Christian Mérimé Kenfack3, Distele Nadège Simo4, Nestor Gipwe Feussom5, Emilienne Tienga Nkondo6, Louis-Albert Tchuem Tchuente7,8, Christelle Dongmo Tsague9, Etienne Dongo10, Pierre Kamtchouing11.
Abstract
BACKGROUND: The intensive use of Praziquantel for the treatment of schistosomiasis has raised concerns about the possible emergence of drug-resistant schistosomes. As drug treatment is an important feature of schistosome control programs, the search for alternative drugs is therefore a priority. The aim of this study was to assess the schistosomicidal, hepatoprotective and antioxidant activities of the methanolic fraction from Clerodendrum umbellatum Poir leaves aqueous extract.Entities:
Mesh:
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Year: 2015 PMID: 26205948 PMCID: PMC4513613 DOI: 10.1186/s12906-015-0788-z
Source DB: PubMed Journal: BMC Complement Altern Med ISSN: 1472-6882 Impact factor: 3.659
Effect of the methanolic fraction from Clerodendrum umbellatum leaves aqueous extract on the body weight of mice at pre-infection and on the 65th day post-infection
| Groups | Number of animals ( | Body weight (g) | Weight gain (%) |
| |
|---|---|---|---|---|---|
| Pre-infection (1st day) | Post-infection (65th day) | ||||
| NIC | 5 | 19.30 ± 0.83 | 24.23 ± 1.05 | 29.53 ± 2.04 (24.28–34.78) | |
| IC | 6 | 23.51 ± 0.90 | 24.31 ± 0.80 | 3.97 ± 3.87 (−5.50–13.44) | <0.001 |
| PZQ | 6 | 21.22 ± 1.04 | 26.00 ± 0.98 | 22.89 ± 2.89 (15.47–30.31) | <0.001 |
| CuF100 | 6 | 23.55 ± 0.55 | 28.14 ± 0.85 | 19.54 ± 2.56 (12.95–26.12) | <0.01 |
| CuF200 | 6 | 21.04 ± 0.89 | 24.94 ± 1.03 | 18.60 ± 1.43 (14.93–22.26) | <0.001 |
| CuF400 | 6 | 22.74 ± 0.51 | 27.07 ± 0.74 | 19.06 ± 1.96 (14.03–24.09) | <0.001 |
Data are expressed as mean ± SEM
Values in brackets represent the 95 % confidence intervals
ANOVA followed by Newman-Keuls multiple comparison test was used to compare on one hand, the infected-untreated mice (IC) to the non-infected mice (NIC), and secondly the infected-treated mice (PZQ, CuF100, CuF200, CuF400) to the infected-untreated mice (IC)
Effect of the methanolic fraction from Clerodendrum umbellatum leaves aqueous extract on the liver and spleen weights of mice on the 65th day post-infection
| Groups | Number of animals ( | Liver | Spleen | ||||
|---|---|---|---|---|---|---|---|
| Weight (g/100 g) |
| % change | Weight (g/100 g) |
| % change | ||
| NIC | 5 | 6.23 ± 0.34 | 0.50 ± 0.04 | ||||
| IC | 6 | 9.21 ± 0.37 | <0.001 | +47.83 | 1.45 ± 0.17 | <0.001 | +190.00 |
| PZQ | 6 | 6.57 ± 0.46 | <0.001 | −28.66 | 0.43 ± 0.08 | <0.001 | −70.34 |
| CuF100 | 6 | 7.68 ± 0.28 | <0.05 | −16.61 | 0.77 ± 0.08 | <0.001 | −46.90 |
| CuF200 | 6 | 7.90 ± 0.48 | <0.05 | −14.22 | 0.79 ± 0.03 | <0.001 | −45.52 |
| CuF400 | 6 | 5.96 ± 0.47 | <0.001 | −35.29 | 0.66 ± 0.10 | <0.001 | −54.48 |
Data are expressed as mean ± SEM
ANOVA followed by Newman-Keuls multiple comparison test was used to compare on one hand, the infected-untreated mice (IC) to the non-infected mice (NIC), and secondly the infected-treated mice (PZQ, CuF100, CuF200, CuF400) to the infected-untreated mice (IC)
Fig. 1Effect of the methanolic fraction from Clerodendrum umbellatum leaves aqueous extract on the worm burden, fecal egg count and egg load in the liver and intestine of mice on the 65th day post-infection. Data are expressed as mean ± SEM; n = 5 (NIC) or n = 6 (IC, PZQ, CuF100, CuF200 and CuF400). NIC non-infected mice, IC infected-untreated mice, PZQ infected mice treated with praziquantel; CuF100, CuF200 and CuF400, infected mice treated with the methanolic fraction from C. umbellatum leaves aqueous extract at 100, 200 and 400 mg/kg respectively. ANOVA followed by Newman-Keuls multiple comparison test: **, ***: statistically different from IC group at p < 0.01 and p < 0.001 respectively. §, §§: statistically different from PZQ group at p < 0.05 and p < 0.01 respectively
Effect of the methanolic fraction from Clerodendrum umbellatum leaves aqueous extract on some parameters of the liver function of mice on the 65th day post-infection
| Groups | NIC | IC | PZQ | CuF100 | CuF200 | CuF400 |
|---|---|---|---|---|---|---|
| Number of animals ( | 5 | 6 | 6 | 6 | 6 | 6 |
| ALT (U/mL) | 266.28 ± 9.90 | 746.07 ± 59.86 | 391.66 ± 31.85 | 408.49 ± 36.27 | 420.52 ± 26.68 | 481.76 ± 47.09 |
|
| <0.001 | <0.001 | <0.001 | <0.001 | <0.001 | |
| % change | +180.18 | −47.50 | −45.25 | −43.63 | −35.43 | |
| AST (U/m) | 167.84 ± 10.55 | 234.23 ± 14.58 | 168.13 ± 13.41 | 234.52 ± 23.74 | 248.24 ± 20.11 | 261.75 ± 16.25 |
|
| n.s | n.s | n.s | n.s | n.s | |
| % change | +39.55 | −28.22 | +0.12 | +5.98 | +11.75 | |
| ALP (U/L) | 19.02 ± 2.87 | 8.04 ± 2.88 | 20.68 ± 3.24 | 13.10 ± 2.90 | 18.38 ± 2.86 | 20.33 ± 4.07 |
|
| n.s | n.s | n.s | n.s | n.s | |
| % change | −57.73 | +157.21 | +62.93 | +128.61 | +152.86 | |
| Total proteins (mg/mL) | 4.43 ± 0.22 | 3.17 ± 0.29 | 4.73 ± 0.15 | 4.88 ± 0.18 | 5.39 ± 0.18 | 4.59 ± 0.16 |
|
| <0.001 | <0.001 | <0.001 | <0.001 | <0.001 | |
| % change | −28.44 | +49.21 | +53.94 | +70.03 | +44.79 | |
| Total bilirubin (μmol/L) | 19.34 ± 1.71 | 23.15 ± 1.80 | 15.32 ± 1.76 | 16.87 ± 3.78 | 20.84 ± 1.50 | 25.59 ± 3.88 |
|
| n.s | n.s | n.s | n.s | n.s | |
| % change | +19.70 | −33.82 | −27.13 | −9.98 | +10.54 |
Data are expressed as mean ± SEM
ANOVA followed by Newman-Keuls multiple comparison test was used to compare on one hand, the infected-untreated mice (IC) to the non-infected mice (NIC), and secondly the infected-treated mice (PZQ, CuF100, CuF200, CuF400) to the infected-untreated mice (IC). n.s non-significant
ALT alanine aminotransferase, AST aspartate aminotransferase, ALP alkaline phosphatase
Fig. 2Effect of the methanolic fraction from Clerodendrum umbellatum leaves aqueous extract on some biomarkers of the oxidative stress on the 65th day post-infection. Data are expressed as mean ± SEM; n = 5 (NIC) or n = 6 (IC, PZQ, CuF100, CuF200 and CuF400). NIC non-infected mice, IC infected-untreated mice, PZQ infected mice treated with praziquantel; CuF100, CuF200 and CuF400: infected mice treated with the methanolic fraction from C. umbellatum leaves aqueous extract at 100, 200 and 400 mg/kg respectively. ANOVA followed by Newman-Keuls multiple comparison test: £, ££, £££: statistically different from NIC group at p < 0.05, p < 0.01 and p < 0.001 respectively. *, **, ***: statistically different from IC group at p < 0.05, p < 0.01 and p < 0.001 respectively