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Showing 1 to 5 of 5 for “"Cell energy metabolism"”.

  1. Characterization of GSDMD as a Positive Regulator of Breast Cancer Cell Proliferation and Mammary Tumorigenesis

    … a wide array of human tissues and regulate many cellular roles, namely cell proliferation and cell death. The GSDMs are most famous for inducing a pro-inflammatory, lytic form of programmed cell death, known as pyroptosis. Recently, GSDM dysregulation has been implicated in a variety of cancers. …

    queens Repository record for Characterization of GSDMD as a Positive Regulator of Breast Cancer Cell Proliferation and Mammary Tumorigenesis (opens in a new tab)

  2. A Role for the HSV Tegument Protein pUL16 in Modulating Cellular Energy Metabolism during HSV-2 Infection

    … infection, including virion morphogenesis and cell-to-cell spread of infection. Recent literature has also demonstrated that HSV-1 pUL16 localizes to distinct regions of mitochondria. Consistent with these findings, our proximity-dependent biotinylation experiments identified both …

    queens Repository record for A Role for the HSV Tegument Protein pUL16 in Modulating Cellular Energy Metabolism during HSV-2 Infection (opens in a new tab)

  3. Use of estradiol-BSA conjugates to characterize membrane estrogen binding sites in brain cells: Biochemical and physiological studies

    … an estrogen target site in addition to ER in the cells and may play an important role in estrogen-induced changes in cell energy metabolism. The unlabeled ligand, 17$\beta$-E-6-BSA (1-100 nM), was biologically active in rapidly facilitating the release of dopamine from corpus striatum, an …

    uiuc Repository record for Use of estradiol-BSA conjugates to characterize membrane estrogen binding sites in brain cells: Biochemical and physiological studies (opens in a new tab)

  4. Nonlinear Dynamics of Microcirculation and Energy Metabolism for the Prediction of Cardiovascular Risk

    … adenine dinucleotide) that is involved in the cellular production of ATP (adenosine triphosphate) energy. In this work, these methods were combined with iontophoresis and PORH (post-occlusive reactive hyperaemia) reactive tests to assess skin microvascular function and oxidative stress in mice …

    dundee Repository record for Nonlinear Dynamics of Microcirculation and Energy Metabolism for the Prediction of Cardiovascular Risk (opens in a new tab)

  5. Suppression of Carcinogenesis and Tumor Progression by an Energy Restriction-Mimetic Agent in Murine Models of Prostate Cancer

    Cancer cells preferentially utilize glycolysis to generate energy even in the presence of sufficient oxygen for oxidative phosphorylation. This shift in energy metabolism, termed the Warburg effect, is responsible for cancer cells’ high metabolic rate. Therapies that inhibit cancer cell energy

    ohiolink Repository record for Suppression of Carcinogenesis and Tumor Progression by an Energy Restriction-Mimetic Agent in Murine Models of Prostate Cancer (opens in a new tab)