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Antwi, S.

Publications and source records attributed to Antwi, S..

2 recordsLinked to original sources

Acute and sub-chronic toxicity of aqueous stem-bark extract of Annickia polycarpa

Background and aimThe lack of standardization and scientific validation of the use of most plant extracts leads to toxicity problems. The stem bark extract of Annickia polycarpa has been shown to possess antioxidant, antidiabetic, analgesic, and anti-colitis effects. However, nothing is known about the effects of the prolonged use of the extract. Thus, we investigated the acute and sub-chronic toxicity of the aqueous stem bark extract of (APE) in Sprague-Dawley rats. Experimental procedureThe LD50 and sub-chronic toxicity of APE (20 mg/kg, 100 mg/kg, and 500 mg/kg) was studied over 3 months in Sprague-Dawley rats. Serum alkaline phosphatase (ALP), alanine transaminase (ALT), direct bilirubin and creatinine were measured after 3 months of treatment. Hematological analysis and urinalysis were also performed. Also, the effect of APE on blood clotting time and pentobarbital-induced sleeping time were determined at the termination of treatment. Finally, histological analysis was done on liver, kidney, lung, and heart after hematoxylin-eosin staining of tissue cross-sections at the termination of treatment. Results and conclusionThe LD50 of APE in rats was higher than 5000 mg/kg with no observable signs of toxicity. APE also showed no hematotoxic effect when used consistently for 3 months. Additionally, APE had no adverse effect on the liver and kidney evidenced by a lack of effect on serum biochemical parameters (ALP, ALT, direct bilirubin, and creatinine), urinalysis as well as the tissue morphology of these organs. No adverse morphological effects were also observed with the heart muscle cells. However, APE showed mild selective toxicity to the lung characterized by alveolar space closing and interstitial fibrosis and alveolar septa thickening. These results indicate that APE is generally non-toxic at the tested doses but shows mild selective pneumotoxicity when used over a long period of time.

pharmacology and toxicology↗

Urine-based detection of biomarkers indicative of chronic kidney disease in a patient cohort from Ghana

Chronic kidney disease (CKD) is a global health burden with a continuously increasing prevalence associated with an increasing incidence of diabetes and hypertension in aging populations. The CKD definition of a more than three months lasting low glomerular filtration rate (GFR) or other renal impairments including proteinuria implies that multiple factors may contribute to the disease. While there are indications of ethnic differences it is hard to disentangle these from confounding social factors. Usually, CKD is detected in later stages of the disease when irreversible renal damage has already occurred, thus suggesting a need for early non-invasive diagnostic markers. In this study, we explored the urine secretome of a CKD patient cohort from Ghana employing a kidney-injury and a more general cytokine assay. We identified panels of kidney-specific cytokine markers which were also gender-specific and a panel of gender-independent cytokine markers. The gender-specific markers are IL10 and MME for male and CLU, RETN, AGER, EGFR and VEGFA for female. The gender-independent cytokine markers were APOA1, ANGPT2, C5, CFD, GH1, ICAM1, IGFBP2, IL8, KLK4, MMP9 and SPP1 (up-regulated) and FLT3LG, CSF1, PDGFA, RETN and VEGFA (down-regulated). APOA1 - the major component of HDL particles - was up-regulated in Ghanaian CKD patients and its co-occurrence with APOL1 in a subpopulation of HDL particles may point to specific CKD-predisposing APOL1 haplotypes in patients of African descent - this however needs further investigation. The identified panels may lay down the foundation for CKD-biomarker assays to be confirmed in further studies with a larger cohort of patients.

molecular biology↗