Search Results - "Ghosh, Deepraj"
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Ovarian Cancer Exosomes Trigger Differential Biophysical Response in Tumor-Derived Fibroblasts
Published in Scientific reports (26-05-2020)“…Exosomes are cell-secreted microvesicles that play important roles in epithelial ovarian cancer (EOC) progression, as they are constantly secreted into ascites…”
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Nuclear Membrane-Targeted Gold Nanoparticles Inhibit Cancer Cell Migration and Invasion
Published in ACS nano (25-04-2017)“…Most cancer patients die from metastasis. Recent studies have shown that gold nanoparticles (AuNPs) can slow down the migration/invasion speed of cancer cells…”
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Dysregulation in Actin Cytoskeletal Organization Drives Increased Stiffness and Migratory Persistence in Polyploidal Giant Cancer Cells
Published in Scientific reports (09-08-2018)“…Polyploidal giant cancer cells (PGCCs) have been observed by pathologists in patient tumor samples and are especially prominent in late stage, high grade…”
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4
Metronomic and single high-dose paclitaxel treatments produce distinct heterogenous chemoresistant cancer cell populations
Published in Scientific reports (06-11-2023)“…More than 75% of epithelial ovarian cancer (EOC) patients experience disease recurrence after initial treatment, highlighting our incomplete understanding of…”
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Differential mechanical response of mesenchymal stem cells and fibroblasts to tumor-secreted soluble factors
Published in PloS one (16-03-2012)“…The progression of neoplastic malignancies is a complex process resulting not only from the accumulation of mutations within tumor cells, but also modulation…”
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Fibroblast senescence-associated extracellular matrix promotes heterogeneous lung niche
Published in APL bioengineering (01-06-2024)“…Senescent cell accumulation in the pulmonary niche is associated with heightened susceptibility to age-related disease, tissue alterations, and ultimately a…”
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Senescence‐Associated Exosome Exchange Activates Myofibroblast Phenotype in Mesenchymal Stem Cells
Published in The FASEB journal (01-05-2021)“…Introduction Bone marrow derived mesenchymal stem cells (MSCs) are recruited and accumulate in primary tumors due to their natural tropism for inflammatory…”
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Contributions of the distinct biophysical phenotype of polyploidal giant cancer cells to cancer progression
Published in Seminars in cancer biology (01-06-2022)“…Polyploid giant cancer cells (PGCCs) are a commonly observed histological feature of human tumors and are particularly prominent in late stage and drug…”
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Vimentin filaments drive migratory persistence in polyploidal cancer cells
Published in Proceedings of the National Academy of Sciences - PNAS (27-10-2020)“…Polyploidal giant cancer cells (PGCCs) are multinucleated chemoresistant cancer cells found in heterogeneous solid tumors. Due in part to their apparent…”
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Abstract A002: Physical and metabolic aspects of therapy induced senescence and polyploidy in an evolving tumor microenvironment
Published in Cancer research (Chicago, Ill.) (15-01-2023)“…Abstract This abstract is being presented as a short talk in the scientific program. A full abstract is available in the Short Talks from Proffered Abstracts…”
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Abstract PR007: Physical and metabolic aspects of therapy induced senescence and polyploidy in an evolving tumor microenvironment
Published in Cancer research (Chicago, Ill.) (15-01-2023)“…Abstract Radiation and chemotherapy are highly effective at killing cancer cells but cells that survive treatment often develop therapy-induced senescence…”
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Abstract 1315: Biophysics of polyploidal cancer cells in an aging stroma
Published in Cancer research (Chicago, Ill.) (01-07-2018)“…Abstract Senescence is a potent tumor-suppressive mechanism that irreversibly arrests the growth of damaged cells. However, senescent cells that accumulate in…”
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Mechanosensitivity Analysis of Breast Cancer Tumor Cells from Needle Biopsy
Published in The FASEB journal (01-04-2018)“…Tumor stiffness has been associated with malignancy and increased risk for metastasis. Extensive research has been done investigating breast cancer cell lines'…”
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Development of a Novel 3D Model to Investigate the Role of Heterogeneity in Ovarian Cancer Chemoresistance
Published in The FASEB journal (01-05-2021)“…More than 70% of all patients diagnosed with epithelial ovarian cancer (EOC) succumb to their disease making EOC the most lethal gynecological cancer. The…”
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Senescence-associated exosomes transfer miRNA-induced fibrosis to neighboring cells
Published in Aging (Albany, NY.) (23-02-2023)“…Radiation-induced fibrosis is a common side effect of radiotherapy, which is the most common treatment for cancer. However, radiation also causes p53-mediated…”
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Senescent mesenchymal stem cells remodel extracellular matrix driving breast cancer cells to a more-invasive phenotype
Published in Journal of cell science (23-01-2020)“…Mesenchymal stem cells (MSCs) are essential for the regenerative process; however, biological aging and environmental stress can induce senescence - an…”
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Force balancing ACT-IN the tumor microenvironment: Cytoskeletal modifications in cancer and stromal cells to promote malignancy
Published in International review of cell and molecular biology (2021)“…The tumor microenvironment is a complex milieu that dictates the growth, invasion, and metastasis of cancer cells. Both cancer and stromal cells in the tumor…”
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Spatial Heterogeneity in Cytoskeletal Mechanics Response to TGF-β1 and Hypoxia Mediates Partial Epithelial-to-Mesenchymal Transition in Epithelial Ovarian Cancer Cells
Published in Cancers (14-06-2023)“…Metastatic progression of epithelial ovarian cancer (EOC) involves the partial epithelial-to-mesenchymal transition (EMT) of cancer cells in the primary tumor…”
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3D Spheroid Model of Fibroid Growth: Quantifying the Effect of Mechanical Environment Stiffness on Development [11E]
Published in Obstetrics and gynecology (New York. 1953) (01-05-2016)Get full text
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Microenvironment Influences Cancer Cell Mechanics from Tumor Growth to Metastasis
Published in Advances in experimental medicine and biology (01-01-2018)“…The microenvironment in a solid tumor includes a multitude of cell types, matrix proteins, and growth factors that profoundly influence cancer cell mechanics…”
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