| Literature DB >> 28086774 |
Pierre Watcho1, Hermine Meli Watio2, Modeste Wankeu-Nya3, Esther Ngadjui2, Patrick Deeh Defo2, Pepin Alango Nkeng-Efouet4, Telesphore Benoit Nguelefack2, Albert Kamanyi2.
Abstract
BACKGROUND: Androgen deficiency is a clinical syndrome resulting from the inability of the testes to produce physiological levels of testosterone due to a disturbance occurring at one or more levels of the hypothalamic-pituitary-testicular axis. The present study was undertaken to evaluate the androgenic properties of aqueous and methanolic extracts of Ficus asperifolia on normal and castrated immature rats.Entities:
Keywords: Androgen deficiency; Bicalutamide; Ficus asperifolia; Rat; Testosterone
Mesh:
Substances:
Year: 2017 PMID: 28086774 PMCID: PMC5237287 DOI: 10.1186/s12906-016-1547-5
Source DB: PubMed Journal: BMC Complement Altern Med ISSN: 1472-6882 Impact factor: 3.659
Effects of testosterone and, aqueous and methanolic extracts of F. asperifolia on body weight variation and relative organ weights of immature normal rats after four weeks of treatment
| Groups | Body weight (g) | Body weight variation (%) | Relative organ weights (mg/100 g) | |||||
|---|---|---|---|---|---|---|---|---|
| Initial | Final | Testes | Epididymis | Vas deferens | Ventral prostate | Seminal vesicles | ||
| Distilled water (10 ml/kg b.w.) | 120.00 ± 6.4 | 173.40 ± 8.84 | 44.43 ± 1.94 | 1087.85 ± 20.38 | 232.78 ± 21.60 | 63.32 ± 5.05 | 41.37 ± 7.23 | 186.47 ± 30.51 |
| 5% Tween 80 (10 ml/kg b.w.) | 118.80 ± 4.35 | 168.00 ± 6.77 | 41.51 ± 3.33 | 1099.65 ± 71.13 | 231.52 ± 27.78 | 57.65 ± 5.44 | 45.63 ± 7.42 | 145.48 ± 26.45 |
| Testosterone (0.5 mg/kg b.w.) | 120.40 ± 5.87 | 210.20 ± 12.3 | 74.41 ± 4.59** | 416.25 ± 53.92*** | 197.87 ± 7.31 | 66.32 ± 1.68 | 66.59 ± 11.06 | 484.98 ± 27.42*** |
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| Aqueous extract | ||||||||
| 100 mg/kg b.w. | 121.20 ± 4.03 | 176.80 ± 7.11 | 45.81 ± 2.62≠≠ | 1098.54 ± 77.69≠≠≠ | 338.34 ± 29.42**≠≠≠ | 81.64 ± 6.00*≠ | 76.72 ± 16.10* | 273.40 ± 38.99*≠≠≠ |
| 500 mg/kg b.w. | 124.80 ± 7.08 | 187.80 ± 9.49 | 51.05 ± 4.91≠ | 1161.92 ± 75.33≠≠≠ | 310.56 ± 23.81*≠≠ | 64.34 ± 2.66 | 64.63 ± 5.09 | 243.13 ± 19.96≠≠≠ |
| Methanolic extract | ||||||||
| 100 mg/kg b.w. | 120.00 ± 6.38 | 190.60 ± 9.66 | 60.16 ± 10.40 | 1189.18 ± 53.47≠≠≠ | 327.13 ± 24.35*≠≠ | 70.77 ± 4.27 | 96.42 ± 11.72** | 307.49 ± 28.97**≠≠≠ |
| 500 mg/kg b.w. | 123.40 ± 7.81 | 194.20 ± 6.45 | 59.95 ± 11.47 | 1279.15 ± 14.60*≠≠≠ | 340.21 ± 32.27**≠≠≠ | 72.76 ± 5.80 | 99.81 ± 13.00***≠α | 308.94 ± 29.35**≠≠≠ |
All values: Mean ± SEM; Number of rats per group = 5; *p < 0.05; ** p < 0.01; ***p < 0.001 compared to distilled water; ≠ p < 0.05; ≠≠ p < 0.01; ≠≠≠ p < 0.001 compared to testosterone; α p < 0.05 significantly different at equal dose of plant extracts
Effects of testosterone and, aqueous and methanolic extracts of F. asperifolia on total proteins, total cholesterol and prostatic acid phosphatase in normal immature rats after four weeks of treatment
| Groups | Total proteins | Total cholesterol | Prostatic acid phosphatase (U/g) | ||
|---|---|---|---|---|---|
| Epididymis (mg/ml) | Plasma (mg/ml) | Testes (mg/g) | Plasma (mg/dl) | ||
| Control (Distilled water, 10 ml/kg b.w.) | 85.70 ± 8.82 | 61.18 ± 3.33 | 0.86 ± 0.21 | 7.42 ± 0.23 | 2.55 ± 0.63 |
| 5% Tween 80 (10 ml/kg b.w.) | 83.44 ± 15.20 | 54.58 ± 2.28 | 1.77 ± 0.30 | 6.30 ± 1.14 | 2.37 ± 0.59 |
| Testosterone (0.5 mg/kg b.w.) | 72.88 ± 14.20 | 48.50 ± 6.43* | 1.03 ± 0.19** | 7.31 ± 1.1 | 1.00 ± 0.13** |
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| |||||
| Aqueous extract | |||||
| 100 mg/kg b.w. | 121.82 ± 5.77≠ | 60.89 ± 1.55≠ | 0.59 ± 0.19 | 7.01 ± 1.07 | 0.93 ± 0.18** |
| 500 mg/kg b.w. | 101.05 ± 22.51 | 53.06 ± 3.35 | 0.39 ± 0.09≠ | 8.05 ± 0.45 | 1.19 ± 0.16* |
| Methanolic extract | |||||
| 100 mg/kg b.w. | 107.37 ± 17.58 | 60.61 ± 1.65≠ | 0.16 ± 0.07**≠≠ | 7.78 ± 0.68 | 0.74 ± 0.11** |
| 500 mg/kg b.w. | 109.45 ± 21.03 | 63.04 ± 1.98≠≠α | 0.34 ± 0.07*≠≠ | 7.26 ± 0.36 | 1.39 ± 0.25* |
All values: Mean ± SEM; Number of rats per group =5; *p < 0.05; **: p < 0.01 compared to distilled water; ≠: p < 0.05; ≠≠: p < 0.01 compared to testosterone group; α: p < 0.05 at equal dose of plant extracts
Effects of various treatments on body weight variation and relative organ weights of immature castrated rats after four weeks of treatment
| Treatments | Body weight (g) | Body weight variation (%) | Relative organ weights (mg/100 g) | ||||
|---|---|---|---|---|---|---|---|
| Initial | Final | Epididymis | Vas deferens | Ventral prostate | Seminal vesicles | ||
| Normal plus distilled water (10 ml/kg b.w.) | 120.00 ± 6.4 | 173.40 ± 8.84 | 44.63 ± 1.94 | 232.78 ± 21.60 | 63.32 ± 5.05 | 41.37 ± 7.23 | 186.47 ± 30.51 |
| Castrated plus distilled water (10 ml/kg b.w.) | 124.8 ± 7.53 | 179 ± 14.89 | 43.17 ± 7.56 | 42.47 ± 5.94C | 16.06 ± 2.15C | 5.69 ± 0.54C | 10.00 ± 1.81C |
| Castrated plus testosterone (0.5 mg/kg b.w.) | 125.6 ± 3.41 | 207 ± 5.5 | 65.08 ± 4.69*** | 143.10 ± 2.67*** | 50.45 ± 3.52*** | 86.34 ± 2.93*** | 244.53 ± 23.11*** |
| 5% Tween 80 (10 ml/kg b.w.) + testosterone | 120 ± 5.91 | 179.8 ± 15.16 | 49.15 ± 6.05** | 141.15 ± 13.29*** | 51.36 ± 3.90*** | 68.83 ± 14.66*** | 243.75 ± 58.42*** |
| Bicalutamide (2 mg/kg b.w.) + testosterone | 127.4 ± 5.63 | 196.8 ± 15.39 | 54.30 ± 7.98 | 83.93 ± 7.98 | 38.30 ± 3.79## | 26.76 ± 0.82### | 112.54 ± 18.45### |
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| Aqueous extract | |||||||
| 100 mg/kg b.w. | 120 ± 6.44 | 167 ± 5.89 | 39.73 ± 2.82 | 77.20 ± 5.00* | 18.89 ± 0.91 | 10.35 ± 1.90 | 19.11 ± 2.24 |
| 500 mg/kg b.w. | 121 ± 8.28 | 161.8 ± 9.29 | 34.12 ± 1.90 | 61.76 ± 10.99 | 25.09 ± 3.72 | 11.06 ± 1.75 | 19.60 ± 3.77 |
| Methanolic extract | |||||||
| 100 mg/kg b.w. | 121.6 ± 5.9 | 174.6 ± 7.69 | 43.76 ± 2.20 | 38.62 ± 1.04 | 12.67 ± 0.39 | 6.74 ± 0.72 | 17.18 ± 1.87 |
| 500 mg/kg b.w. | 120.8 ± 1.61 | 169.8 ± 9.04 | 40.50 ± 0.75 | 40.18 ± 6.76 | 15.89 ± 2.18 | 8.074 ± 1.50 | 21.28 ± 4.49 |
| Testosterone (0.5 mg/kg b.w.) plus aqueous extract | |||||||
| 100 mg/kg b.w. | 125.8 ± 5.06 | 184.6 ± 9.55 | 46.50 ± 2.93###● | 162.37 ± 8.60●●● | 54.85 ± 1.91●●● | 100.00 ± 8.43●●● | 322.15 ± 30.10#●●● |
| 500 mg/kg b.w. | 126.2 ± 3.93 | 187.4 ± 5.03 | 48.62 ± 1.91### | 165.86 ± 9.65●●● | 61.51 ± 4.03#●●● | 101.38 ± 2.66●●● | 325.08 ± 16.12#●●● |
| Testosterone plus methanolic extract | |||||||
| 100 mg/kg b.w. | 120.4 ± 5.91 | 175.6 ± 8.32 | 45.96 ± 2.39### | 182.87 ± 16.88##●●● | 72.86 ± 5.29###●●● | 162.15 ± 17.84###●●● | 544.91 ± 62.23###●●● |
| 500 mg/kg b.w. | 122 ± 4.51 | 185 ± 4.16 | 52.12 ± 3.95≠ | 137.50 ± 8.16●●● | 65.16 ± 3.99##●●● | 146.33 ± 11.15###●●● | 455.53 ± 36.05###●●● |
| Bicalutamide (2 mg/kg b.w.) plus aqueous extract | |||||||
| 100 mg/kg b.w. | 125.8 ± 5.79 | 183.8 ± 5.49 | 47.64 ± 5.67 | 79.35 ± 7.16 | 23.83 ± 2.64 | 6.315 ± 1.23 | 31.90 ± 4.28 |
| 500 mg/kg b.w. | 122.2 ± 5.3 | 183.4 ± 9.36 | 50.07 ± 1.99 | 34.74 ± 7.39 | 10.29 ± 2.64● | 1.31 ± 0.36 | 13.21 ± 1.85 |
| Bicalutamide plus methanolic extract | |||||||
| 100 mg/kg b.w. | 120.8 ± 4.89 | 161.6 ± 6.27 | 34.12 ± 4.71 | 33.34 ± 3.46 | 15.57 ± 1.90 | 4.79 ± 0.47 | 15.68 ± 2.34 |
| 500 mg/kg b.w. | 120 ± 5.97 | 167 ± 7.83 | 39.40 ± 3.63 | 43.35 ± 3.41 | 19.01 ± 0.67 | 7.63 ± 0.75 | 17.45 ± 1.93 |
All values: Mean ± SEM; Number of rats per group =5; C: p < 0.001 compared to normal rats; *: p < 0.05; ***: p < 0.001 compared to castrated distilled water treated rats; #: p < 0.05; ##: p < 0.01; ###: p < 0.001 compared to testosterone group; ●: p < 0.05; ●●: p < 0.01; ●●●: p < 0.001 compared to rats treated only with plant extracts
Effects of various treatments on total proteins and prostatic acid phosphatase in castrated rats after four weeks of treatment
| Treatments | Total proteins | Prostatic acid phosphatase (U/g) | |
|---|---|---|---|
| Epididymis (mg/g) | Plasma (mg/ml) | ||
| Normal plus distilled water (10 ml/kg b.w.) | 85.70 ± 8.82 | 61.18 ± 3.33 | 2.55 ± 0.63 |
| Castrated plus distilled water (10 ml/kg b.w.) | 52.03 ± 11.18 | 58.99 ± 3.06 | 0.21 ± 0.04C |
| Castrated plus testosterone (0.5 mg/kg b.w.) | 75.68 ± 16.84 | 64.92 ± 1.88 | 0.78 ± 0.10* |
| 5% Tween 80 (10 ml/kg b.w. plus testosterone | 62.13 ± 8.90 | 62.15 ± 5.39 | 0.75 ± 0.24 |
| Bicalutamide (2 mg/kg b.w.) plus testosterone | 45.33 ± 9.22 | 56.10 ± 4.24 | 0.37 ± 0.17 |
| Castrated plus aqueous extract | |||
| 100 mg/kg b.w. | 91.84 ± 14.57 | 64.62 ± 3.01 | 0.59 ± 0.20 |
| 500 mg/kg b.w. | 77.30 ± 24.02 | 66.26 ± 3.10 | 0.28 ± 0.06 |
| Castrated plus methanolic extract | |||
| 100 mg/kg b.w. | 59.24 ± 15.86 | 78.18 ± 2.80*** | 0.26 ± 0.08 |
| 500 mg/kg b.w. | 67.82 ± 20.63 | 70.27 ± 4.93* | 0.54 ± 0.11 |
| Testosterone (0.5 mg/kg b.w.) plus aqueous extract | |||
| 100 mg/kg b.w. | 108.73 ± 22.76 | 45.27 ± 2.51###●●● | 0.51 ± 0.04 |
| 500 mg/kg b.w. | 127.87 ± 22.14#● | 50.93 ± 1.93##●● | 0.58 ± 0.09 |
| Testosterone (0.5 mg/kg b.w.) plus methanolic extract | |||
| 100 mg/kg b.w. | 162.83 ± 33.53###●●● | 62.30 ± 4.87●● | 0.35 ± 0.10 |
| 500 mg/kg b.w. | 105.20 ± 16.93 | 57.15 ± 1.14●● | 0.35 ± 0.09 |
| Bicalutamide (2 mg/kg b.w.) plus aqueous extract | |||
| 100 mg/kg b.w. | 44.34 ± 10.49 | 70.29 ± 3.74 | 0.11 ± 0.05 |
| 500 mg/kg b.w. | 22.40 ± 7.55● | 64.24 ± 3.86 | 0.24 ± 0.06 |
| Bicalutamide (2 mg/kg b.w.) plus methanolic extract | |||
| 100 mg/kg b.w. | 29.62 ± 7.43 | 59.26 ± 2.20●●● | 0.15 ± 0.06 |
| 500 mg/kg b.w. | 26.55 ± 10.15 | 53.73 ± 2.50●● | 0.18 ± 0.03 |
All values: Mean ± SEM; Number of rats per group =5; C: p < 0.001 compared to normal rats; *: p < 0.05; ***: p < 0.001 compared to distilled water treated rats; #: p < 0.05; ##: p < 0.01; ###: p < 0.001 compared to testosterone group; ●: p < 0.05; ●●: p < 0.01; ●●●: p < 0.001 compared to rats treated only with plant extracts