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Senathilake, K.

Publications and source records attributed to Senathilake, K..

2 recordsLinked to original sources

Preclinical Safety Evaluation of Vernolac, a Commercially Available Polyherbal Nutraceutical Comprising Vernonia zeylanica, Nigella sativa, Hemidesmus indica, Smilax glabra, and Leucas zeylanica, in Wistar Rats

Vernolac is a commercially available polyherbal formulation comprising Vernonia zeylanica aerial parts, Nigella sativa seeds, Hemidesmus indica roots, Smilax glabra rhizome, and Leucas zeylanica aerial parts. Although previous in vitro studies have demonstrated anticancer potential of Vernolac and its active ingredients, safety data are available only for some of the plant ingredients of Vernolac. In the present study, acute and 28-day repeat-dose toxicity of Vernolac were evaluated in Wistar rats following OECD guidelines 420 and 407, respectively. Acute toxic effect was investigated during 14 days after administering a single oral dose of 2000 mg/kg to 10 animals (5 males, 5 female) which was followed by repeat-dose study where a human equivalent therapeutic dose HED (165 mg/kg/day), a mid-dose (2x HED, 330mg/kg/day) and a high dose (4x HED, 660 mg/kg/day) were administered separately to a group of 10 fresh animals (5 male, 5 female) for 28 days. In both acute and repeat-dose studies, no morbidity, mortality, changes in food and water intake, relative organ weights, microscopic changes in organs, hematological changes, or clinical signs of toxicity were observed. In the acute study, significant differences appeared only in AST and ALT levels in males, indicating the liver may be a target organ of toxicity at extremely high doses. In 28-days repeated dose study, a significant reduction in ALT was observed only in females receiving high doses, with no changes in males. In summary, a dose up to four times the therapeutic daily dose is non-toxic in Wistar rats over a 28-day period.

pharmacology and toxicology↗

Anti-proliferative and Apoptosis Inducing Effect of Thymoquinone in Human Teratocarcinomal (NTERA-2) Cancer Stem-Like Cells

Cancer stem cells (CSCs) are key drivers of tumor progression, therapeutic resistance and recurrence. Nigella sativa, a medicinal plant widely used in traditional medicine, has gained significant importance due to its diverse pharmacological properties. Thymoquinone (TQ), a biologically known active compound isolated from N.sativa, has demonstrated anticancer properties in various cancers. However, its effect on CSC-like cells has not been fully elucidated. In the present study, the anti-proliferative and apoptosis inducing properties of TQ was evaluated on human embryonal carcinoma cells (NTERA-2, cancer stem cell like model) and human peripheral blood mononuclear cells (PBMCs) in vitro. Antiproliferative effects of TQ on NTERA-2 cells and PBMCs were evaluated using the Sulforhodamine B (SRB) and WST-1 assays, respectively. The effect of TQ was further evaluated using colony formation assay, cell migration assay, fluorescence microscopy and quantification of caspase 3/7 activities. Oxidative stress markers (reactive oxygen species [ROS]) were also determined in NTERA-2 cells treated with TQ. Thymoquinone revealed promising dose- and time-dependent antiproliferative effects (half-maximal inhibitory concentration [IC50] 1.282, 1.167, and 0.984 g/mL at 24, 48, and 72 h post-treatment) in NTERA-2 cells while exerting a minimal cytotoxic effect in PBMCs. Apoptosis related morphological changes, and increased Caspase 3/7 activities confirmed the pro-apoptotic effects of TQ. Further, NTERA-2 cells treated with TQ expressed a significant increase (P < 0.001) in intracellular ROS activity. Overall results confirm that TQ exerts anti-proliferative and apoptotic effects in a dose- and time-dependent manner. Therefore, TQ can be considered as a potent drug lead for chemotherapy and radiotherapy resistant cancer stem cells.

pharmacology and toxicology↗