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1.
J Toxicol Environ Health A ; 86(16): 557-574, 2023 08 18.
Article in English | MEDLINE | ID: mdl-37350297

ABSTRACT

This study aimed to characterize the phytochemical profile of bark and leaves aqueous extract Commiphora leptophloeos, and conduct in vivo and in vitro assays to determine the presence of any toxicological consequences due to exposure. The phytochemical analysis was carried out using high-performance liquid chromatography (HPLC). The antioxidant activity was estimated utilizing DPPH free radical scavenging and phosphomolybdenum assays. Cell viability was measured by the MTT method on J774 and human adenocarcinoma cells, which were treated with concentrations of 12,5, 25, 50, 100 or 200 µg/ml of both extracts. Acute oral toxicity, genotoxicity, and mutagenicity assays were determined using a single oral dose of 2000 g/kg in male Swiss albino mice (Mus musculus). Biochemical analysis of the blood and histological analyses of the kidneys, liver, spleen, pylorus, duodenum and jejunum were undertaken. Genotoxicity and mutagenicity were determined utilizing blood samples. Gallic acid, catechin, and epicatechin were identified in the bark and chlorogenic acid in leaves. Data demonstrated a high content of phenolic compounds and flavonoids associated with significant antioxidant potential. No significant signs in damage or symptoms of toxicity were detected. No marked reduction in cell viability was found at lower concentrations tested. On histomorphometry, only the gastrointestinal organs exhibited significant difference. Renal hepatic and blood parameters were within the normal range. No apparent signs of toxicity, genotoxicity, mutagenicity or cytotoxicity were found in vivo and in vitro experiments.


Subject(s)
Antioxidants , Catechin , Mice , Animals , Male , Humans , Antioxidants/chemistry , Plant Extracts/toxicity , Plant Extracts/chemistry , Commiphora , Plant Bark/chemistry , Phytochemicals/toxicity , Plant Leaves/chemistry
2.
Appl Physiol Nutr Metab ; 44(2): 164-171, 2019 Feb.
Article in English | MEDLINE | ID: mdl-30058348

ABSTRACT

There is a strong correlation between inadequate gestational and postpartum nutrition and the occurrence of cardiovascular diseases. The present study investigated the effects of a maternal low-protein diet and neonatal overfeeding on the oxidative balance and morphology of the renal cortex of male Wistar rats. Two independent protocols were used. First, pregnant Wistar rats received diets containing either 17% (normal protein) or 8% (low protein) casein throughout pregnancy and lactation. Second, the litter size was reduced by one-third on the third postnatal day to induce overnourishment in offspring. At 30 days, the oxidative balance and morphology of the renal cortex were analyzed. There was a small but significant increase in renal corpuscle area in the low protein (LP, 5%) and overnutrition (ON, 8%) groups. Glomerular tuft area also increased in LP (6%) and ON (9%), as did glomerular cellularity (LP, +11%; ON, +12%). In the oxidative stress analyses, both nutritional insults significantly elevated lipid peroxidation (LP, +18%; ON, +135%) and protein oxidation (LP, +40%; ON, +65%) while significantly reducing nonenzymatic antioxidant defenses, measured as reduced glutathione (LP, -32%; ON, -45%) and total thiol content (LP, -28%; ON, -24%). We also observed a decrease in superoxide dismutase (LP, -78%; ON, -51%), catalase (LP, -18%; ON, -61%), and glutathione S-transferase (only in ON, -44%) activities. Our results demonstrate that nutritional insults, even those of a very different nature, during perinatal development can result in similar changes in oxidative parameters and glomerular morphology in the renal cortex.


Subject(s)
Diet, Protein-Restricted/adverse effects , Kidney Cortex/metabolism , Kidney Glomerulus/pathology , Overnutrition/metabolism , Overnutrition/pathology , Oxidative Stress , Animals , Animals, Newborn , Antioxidants/metabolism , Body Weight , Female , Kidney Cortex/pathology , Kidney Glomerulus/metabolism , Lipid Peroxidation , Male , Maternal Nutritional Physiological Phenomena , Pregnancy , Prenatal Exposure Delayed Effects , Rats , Rats, Wistar
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