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Perera, D. N.

Publications and source records attributed to Perera, D. N..

3 recordsLinked to original sources

The compartmental polarization of interphase human chromosomes within the nucleus: A mechanism for transcriptional regulation of large chromosomes

The structure and dynamics of individual chromosomes are significantly modulated by their local environment within the nucleus. It has long been established that heterochromatin (B compartment loci) associates with the lamina meshwork that lines the inner nuclear envelope. However, the extent to which these interactions perturb the chromosomal organization within a territory remains unclear. Using computer simulations and published imaging data, we further characterize the interaction between chromatin and the lamina and find striking consequences of lamina-association on the chromosomal structural ensemble. We find that lamina-associating chromosomes have their compartmentalization polarized in a direction perpendicular to the nuclear surface. Further, lamina-associated chromosomes exhibit shorter average distances between euchromatin loci (A compartment) than chromosomes without lamina contact. Energy landscape analysis of our simulations reveal that the sequestration of heterochromatin to the lamina allows for euchromatin to form more spatial contacts with other segments of euchromatin. The compaction of euchromatin due to lamina-association also diminishes the mobility of these regions. These findings suggest a mechanism for bringing together euchromatic segments that are separated by large genomic distances within a chromosome, potentially to share transcriptional machinery and enhance transcription for large chromosomes, which are often found at the nuclear periphery.

biophysics↗

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↗

In vitro anti-cancer properties of a commercially available polyherbal nutraceutical (Vernolac) capsule on cancer stem cell-like (NTERA-2 cl.D1) cells.

Vernolac is a commercially available polyherbal nutraceutical formulation comprising Vernonia zeylanica aerial parts, Nigella sativa seeds, Hemidesmus indica roots, Smilax glabra rhizome, and Leucas zeylanica aerial parts. Previous studies have demonstrated anti-cancer activities of phytochemicals derived from these individual plant components. However, the anti-cancer properties of the supercritical CO2 extract of Vernolac remain unexplored against cancer stem-like cell populations. The current study is focused on the anti-cancer potential of Vernolac extract on NTERA-2 cl.D1 cancer stem-like model, a human embryonal carcinoma-derived pluripotent cell line. Gas Chromatography-Mass Spectrometry (GC-MS) was performed for phytochemical analysis. Several in vitro assays evaluated the anti-cancer properties of the Vernolac extract. Cytotoxicity was assessed using the Sulforhodamine B assay, and apoptosis induction was determined by Acridine Orange/Ethidium Bromide staining and the caspase 3/7 activity assay. Scratch assay was used to evaluate cell migration, and Reverse Transcriptase quantitative Polymerase Chain Reaction (RT-qPCR) was performed to analyze the expression levels of apoptosis-related genes (TP53, BIRC5) and the autophagy-related gene mTOR. Further, the free-radical scavenging activity of Vernolac extract was assessed using 2,2-diphenyl-1-picrylhydrazyl and 2,2'-Azino-bis(3-ethylbenzothiazoline-6-sulfonic acid) assay. The reactive oxygen species levels in NTERA-2 cl.D1 cells were quantified using the nitroblue tetrazolium assay. GC-MS analysis revealed 20 phytochemical constituents in the supercritical CO2 extract. In vitro assay results demonstrated that Vernolac extract exhibits significant anti-proliferative activity in NTERA-2 cl.D1 cells, with an IC50 of 41.12 {micro}g/mL at 48 h, while exerting minimal effects on non-cancerous MCF-10A cells (IC50 > 1000 g/mL). Fluorescence microscopy and caspase 3/7 assay showed that Vernolac extract leads to early apoptosis in NTERA-2 cl.D1 cells. RT-qPCR revealed the upregulation of tumor suppressor protein P53 while downregulating BIRC5 and mTOR. Additionally, Vernolac extract inhibited the migration rate of NTERA-2 cl.D1 cells and elevated intracellular reactive oxygen species levels. These findings suggest that the supercritical CO2 extract of Vernolac exerts potent anticancer properties against NTERA-2 cl.D1 cancer stem-like model, highlighting its therapeutic potential for targeting cancer stem cells.

pharmacology and toxicology↗