It is widely accepted that activation of telomerase and maintenance of telomeres play central roles in cellular immortalization for most cancer cells. However, they seem to be insufficient for normal human cells. To elucidate critically responsible genes for telomerase mediated cellular immortalization in non-cancerous cells, we explored the genes that are differentially expressed throughout the immortalization process of normal human cells using cDNA microarrays with novel normalization procedures. We found that the number of genes, differentially expressed during cellular immortalization after ectopic expression of telomerase, dramatically increased in a later phase, especially in fibroblasts. We identified 18 and 20 genes/ESTs dysregulated throughout the cellular immortalization processes in fibroblasts and endothelial cells, respectively, but none of them overlapped. Only BGN and COL5A2 were commonly downregulated, except for at early phase in fibroblasts, and a few genes showed controversial expression changes, with regard to previous reports in cancer cells. These findings indicate that normal somatic cells would require cell-type specific events in addition to telomerase activation, and a rare population that eventually experience such events would acquire immortality. The key molecules that distinguish the immortalization mechanisms in cancerous and non-cancerous cells may become crucial targets for anticancer therapy and regenerative therapy.
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Sci Rep
January 2025
Department of Pharmacology and Experimental Therapeutics, Boston University School of Medicine, Boston, United States.
There are few in vitro models available to study microglial physiology in a homeostatic context. Recent approaches include the human induced pluripotent stem cell model, but these can be challenging for large-scale assays and may lead to batch variability. To advance our understanding of microglial biology while enabling scalability for high-throughput assays, we developed an inducible immortalized murine microglial cell line using a tetracycline expression system.
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January 2025
Institute of Virology, Philipps University Marburg, Marburg, Germany. Electronic address:
Orthoflaviviruses are emerging arthropod-borne pathogens whose replication cycle is tightly linked to host lipid metabolism. Previous lipidomic studies demonstrated that infection with the closely related hepatitis C virus (HCV) changes the fatty acid (FA) profile of several lipid classes. Lipids in HCV-infected cells had more very long-chain and desaturated FAs and viral replication relied on functional FA elongation and desaturation.
View Article and Find Full Text PDFPharmaceutics
December 2024
Department of Molecular Medicine, School of Medicine, University of Colima, Colima 28040, Mexico.
: , or star fruit, is a shrub known for its medicinal properties, especially due to bioactive metabolites identified in its roots and fruit with anti-cancer activity. However, the biological effects of its leaves remain unexplored. This study aimed to assess the effects of ethanolic extract from leaves on triple-negative breast cancer (TNBC), an aggressive subtype lacking specific therapy.
View Article and Find Full Text PDFInt J Mol Sci
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Clinical Division of General Anaesthesia and Intensive Care Medicine, Department of Anesthesia, Genera Intensive Care and Pain Therapy, Medical University Vienna, 1090 Vienna, Austria.
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View Article and Find Full Text PDFInt J Mol Sci
January 2025
Division of Biomedical Sciences, Faculty of Medicine, Memorial University of Newfoundland, 300 Prince Philip Drive, St. Johns, NL A1B 3V6, Canada.
Cell immortalization corresponds to a biologically relevant clinical feature that allows cells to acquire a high proliferative potential during carcinogenesis. In multiple cancer types, Protein Kinase D3 (PKD3) has often been reported as a dysregulated oncogenic kinase that promotes cell proliferation. Using mouse embryonic fibroblasts (MEFs), in a spontaneous immortalization model, PKD3 has been demonstrated as a critical regulator of cell proliferation after immortalization.
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