Why the study?
This study investigated the potential protective role of aqueous leaf extracts of Chromolaena odorata and Tridax procumbens against pulmonary toxicity induced by doxorubicin.
Do aqueous leaf extracts of Chromolaena odorata and Tridax procumbens prevent doxorubicin-induced pulmonary toxicity in Wistar rats?
Do aqueous leaf extracts of Chromolaena odorata and Tridax procumbens prevent doxorubicin-induced pulmonary toxicity in Wistar rats?
Aqueous leaf extracts of Chromolaena odorata and Tridax procumbens show potential in preventing doxorubicin-induced pulmonary toxicity in a rat model by reducing oxidative stress and modulating lipid and electrolyte profiles.
May attenuate doxorubicin pulmonary toxicity in rats; hypothesis-generating, requires human validation before any clinical consideration.
This study investigated the potential protective role of aqueous leafextracts of Chromolaena odorata and Tridax procumbens against pulmonary toxicity induced by doxorubicin. To this end, the effects of these extracts on the profiles of pulmonary biomarkers, lipids and electrolytes were monitored in doxorubicin-treated rats. Doxorubicin was intraperitoneally administered at 15 mg/kg body weight (48 h prior to sacrifice); metformin was orally administered daily at 250 mg/kg body weight (for 14 days); and both extracts were orally administered daily at 50, 75 and 100 mg/kg body weight (for 14 days).The concentrations of pulmonary malondialdehyde, cholesterol, triglyceride, calcium, chloride and sodium of Test control were significantly higher (P < 0.05) than those of the other groups. However, the concentrations of pulmonary ascorbic acid, reduced glutathione, magnesium and potassium as well as pulmonary catalase, glutathione peroxidase and superoxide dismutase activities of Test control were significantly lower (P < 0.05) than those of the other groups.The administration of the extracts prevented doxorubicin-induced adverse alterations in the profiles of pulmonary biomarkers of oxidative stress, cholesterol and electrolytes and maintained them within the normal ranges .Therefore, these herbal preparations from C. odorata and T. procumbens are promising candidates for the prevention/alleviation of doxorubicin-induced pulmonary toxicity.
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Ikewuchi et al. (2021) studied this question.
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