| Literature DB >> 33302700 |
Arisara Phuwajaroanpong1, Prapaporn Chaniad1, Natharinee Horata2, Saowanee Muangchanburee3, Kantarakorn Kaewdana1, Chuchard Punsawad1.
Abstract
The aim of this study was to investigate the antimalarial activities and toxicity of Pogostemon cablin extracts. In vitro activities against the chloroquine-resistant Plasmodium falciparum K1 strain were assessed by using the Plasmodium lactate dehydrogenase enzyme (pLDH) assay, while in vivo activity against the Plasmodium berghei ANKA strain in mice was investigated using a 4-day suppressive test. The in vitro and in vivo toxicity were determined in Vero cells and mice, respectively. The ethanolic extract possessed antimalarial activity with an IC50 of 24.49 ± 0.01 µg/ml, whereas the aqueous extract showed an IC50 of 549.30 ± 0.07 µg/ml. Cytotoxic analyses of the ethanolic and aqueous extracts revealed a nontoxic effect on Vero cells at a concentration of 80 µg/ml. Based on a preliminary study of in vitro antimalarial activity, the ethanolic extract was chosen as a potential agent for further in vivo antimalarial activity analysis in mice. The ethanolic extract, which showed no toxic effect on mice at a dose of 2000 mg/kg body weight, significantly suppressed parasitemia in mice by 38.41%, 45.12% and 89.00% at doses of 200, 400 and 600 mg/kg body weight, respectively. In conclusion, this study shows that the ethanolic P. cablin extract possesses in vitro and in vivo antimalarial activity without toxic effects.Entities:
Keywords: Plasmodium berghei; Plasmodium falciparum; Pogostemon cablin (Blanco) benth; antimalarial activity; malaria; toxicity
Year: 2020 PMID: 33302700 PMCID: PMC7734539 DOI: 10.1177/2515690X20978387
Source DB: PubMed Journal: J Evid Based Integr Med ISSN: 2515-690X
Phytochemical Constituents of P. cablin in Different Solvent Extracts.
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| Flavonoids | + | − |
| Terpenoids | − | − |
| Alkaloids | + | + |
| Tannins | + | + |
| Anthraquinones | − | − |
| Cardiac glycosides | − | − |
| Saponins | − | + |
| Coumarins | + | + |
+: detected; −: not detected.
Parasitemia Suppressive Activity of the Ethanolic P. cablin Extract Against P. berghei.
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| Negative control | - | 52.39 ± 0.39b, c, d, e | - |
| Artesunate | 6 | 1.73 ± 0.67a, c, d, e | 96.69 ± 0.13a, c, d, e |
| Ethanolic extract | 200 | 32.27 ± 0.00a, b, d, e | 38.41 ± 0.00a, b, d, e |
| 400 | 28.75 ± 0.14a, b, c, e | 45.12 ± 0.27a, b, c, e | |
| 600 | 5.76 ± 0.17a, b, c, d | 89.00 ± 0.32a, b, c, d |
Data are presented as the mean ± SEM (n = 5 per group).
a Compared to negative control, bcompared to artesunate, ccompared to 200 mg/kg extract, dcompared to 400 mg/kg extract, ecompared to 600 mg/kg extract, p < 0.001.
Effect of Ethanolic P. cablin Extract on Kidney and Liver Functions.
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| Liver function test | |||
| AST (U/L) | 127.50 ± 28.99 | 200.50 ± 3.53a | 172.50 ± 46.67a |
| ALT (U/L) | 36.00 ± 14.14 | 36.50 ± 9.19 | 39.5 ± 19.09 |
| ALP (U/L) | 84.50 ± 0.70 | 138.00 ± 31.11a, c | 82.50 ± 31.11b |
| Kidney function test | |||
| BUN (mg/dL) | 23.55 ± 0.21 | 21.35 ± 0.49a, c | 20.00 ± 0.14a, b |
| Creatinine (mg/dL) | 0.55 ± 0.06 | 0.54 ± 0.01 | 0.59 ± 0.02 |
Data are presented as the mean ± SEM (n = 5 per group).
a Compared to untreated control, bcompared to 7% Tween 80, ccompared to 2000 mg/kg extract, p < 0.05.
Figure 1.Representative image of H&E staining of the liver and kidneys from the untreated group (A) and (B), the negative control group (C) and (D), and the group treated with 2,000 mg/kg of the ethanolic P. cablin extract (E) and (F). All images were obtained at 400× magnification. Bars = 20 μm. T: tubules, G: glomerulus, CV: central vein, H: hepatocytes.