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Journal : Open Access DRIVERset

Effects of Ethanolic Extracts of Fruits of Acacia nilotica and Flowers of Calotropis procera on Liver Function of Aspirin-Induced Male Albino Rats Ismail, Muhammad Zuhairah; Chinedu, Imo; Adebisi, Arowora Kayode; Philip, Shadrach; Mohammed, Rashida Ismail; Umaru, Isaac John; Iseko, Kingsley Iyoko; Istifanus, Dafup Katdel
African Journal of Biochemistry and Molecular Biology Research Vol 1 No 1 (2024): African Journal of Biochemistry and Molecular Biology Research
Publisher : Darul Yasin Al Sys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/ajbmbr.v1i1.3675

Abstract

This study examined the effects of ethanolic extracts of fruits of Acacia nilotica and flowers of Calotropis procera on the liver function of male albino rats. Acacia nilotica fruits and Calotropis procera flowers are commonly consumed by natives in northern Nigeria for therapeutic purposes. Eighty-four (84) healthy male albino rats were used for this study. The animals were randomly distributed into six groups of ten animals each, while 24 rats were used for lethal dose (LD50) analysis. The animals were administered ethanolic extracts of fruits of Acacia nilotica and flowers of Calotropis procera for 5 and 14 days respectively after induction with aspirin. The study was carried out in two phases: The animals were induced with 500 mg/kg body weight of aspirin 12 hours before the commencement of the experiment, the test animals were administered ethanolic extract of fruit of Acacia nilotica and flowers of Calotropis procera for 5 and 14 days and sacrificed at the end of each test phase respectively, blood was collected for biochemical analysis. The liver was harvested at the end of each phase, processed for histological investigation and photomicrographs taken. The result of liver function parameters showed that the mean values of alanine transaminase (ALT) after five-day of treatment decreased non-significantly (p>0.05) in groups 4, 5 and 6 and decreased significantly (p<0.05) in group 4 when compared to normal control. Also, ALT increased significantly (p<0.05) in group 2. There was a general decreasing trend in the mean values of aspartate transaminase (AST) across all groups except group 2. The mean values of alkaline phosphatase (ALP) decreased significantly (p<0.05) in all groups, but increased non-significantly in group 2. The same trend was observed in the values of ALT, AST, and ALP after 14 days of treatment. Photomicrograph of the liver section of normal rats showed normal central vein, sinusoids and hepatocytes as well as that of the treated animals. Photomicrograph of liver section of rat administered aspirin only showed slightly dilated portal triad after five days. The study suggests that the ethanolic extracts from fruits of Acacia nilotica and flowers of Calotropis procera may have active ingredients that are capable of improving some liver functions.
Effect of Ethanol Leaf Extract of Annona senegalensis on Lipid Profile and Kidney Function in Diethylnitrosamine-Induced Hepatocellular Carcinoma in Rats Umaru, Isaac John; Adamu, Usman Lukman; Omolara, Mosugu Ovayoza; Okang, Ogar Fonne; Akem, Ingwu Joseph; Tansaba, Akafa Andes; Philip, Shadrach; Frank, Otashu Kenneth
African Journal of Biochemistry and Molecular Biology Research Vol 2 No 3 (2025): African Journal of Biochemistry and Molecular Biology Research
Publisher : Darul Yasin Al Sys

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.58578/ajbmbr.v2i3.7363

Abstract

Liver cancer remains a major global health burden, with hepatocellular carcinoma (HCC) being the most common form and a leading cause of cancer-related deaths. Its progression is often accompanied by metabolic and renal dysfunction, complicating treatment outcomes. While conventional therapies such as chemotherapy, radiotherapy, and targeted drug treatments offer benefits, they are frequently associated with high toxicity and adverse side effects. This discussion highlights the potential of Annona senegalensis as a safer alternative for managing HCC-related complications, particularly in the context of lipid metabolism and renal function. Evidence from experimental studies suggests that the ethanolic leaf extract of A. senegalensis significantly improves lipid profiles by reducing cholesterol levels from 368.57 ± 1.72 in the negative control group to 266.40 ± 0.88, 217.46 ± 0.82, and 182.24 ± 1.20 at 200, 400, and 600 mg/kg doses, respectively, while maintaining favorable HDL levels at higher doses. These findings indicate the extract’s potential to enhance lipid metabolism, lower cardiovascular risk, and provide renal protection during liver cancer progression. Beyond its biochemical effects, the study reinforces the growing relevance of integrating traditional medicinal plants into modern healthcare frameworks as complementary therapeutic options. Overall, A. senegalensis demonstrates promising hepatoprotective, metabolic, and nephroprotective effects, warranting further investigation into its bioactive compounds and clinical applicability.