Showing 61 - 80 results of 88 for search '"Cell Metabolism"', query time: 0.05s Refine Results
  1. 61

    hnRNPA2/B1 Ameliorates LPS-Induced Endothelial Injury through NF-κB Pathway and VE-Cadherin/β-Catenin Signaling Modulation In Vitro by Yi Chen, Dan Tang, Linjie Zhu, Tianjie Yuan, Yingfu Jiao, Hexin Yan, Weifeng Yu

    Published 2020-01-01
    “…Heterogeneous nuclear ribonucleoprotein A2/B1 (hnRNPA2/B1) is a protein involved in the regulation of RNA processing, cell metabolism, migration, proliferation, and apoptosis. …”
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    Article
  2. 62

    DIA-based quantitative proteomic analysis on porcine meat quality at different chilling rates by Yuqiang Bai, Tongjing Yan, Fei Fang, Xin Li, Su Wang, Juan Li, Chengli Hou, Dequan Zhang

    Published 2024-09-01
    “…These pathways indicated that VFC delayed cell metabolism and glycolysis by down-regulating the expression of metabolic enzymes. …”
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    Article
  3. 63

    The Effect of Blood-Derived Products on the Chondrogenic and Osteogenic Differentiation Potential of Adipose-Derived Mesenchymal Stem Cells Originated from Three Different Location... by Markus Neubauer, Olga Kuten, Christoph Stotter, Karina Kramer, Andrea De Luna, Thomas Muellner, Zsombor Lacza, Stefan Nehrer

    Published 2019-01-01
    “…Blood products enhance ex vivo cell metabolism. Chondrogenesis is enhanced by EDTA-PRP and osteogenesis by citrate PRP, whereas hyperacute serum enhances both differentiations comparably. …”
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    Article
  4. 64

    Exploring the Potential of SGLT-2 Inhibitors in Cancer Treatment: Mechanisms, Preclinical Findings, and Clinical Implications by Aldona Sokołowska, Klaudia Fikas, Kamil Chwaliszewski, Sebastian Samuła, Michał Mazur, Dorota Waz, Jakub Szarłowicz, Zofia Goliszek, Karolina Łucja Sobek, Wiktoria Tabin-Barczak

    Published 2025-01-01
    “…Description of the state of knowledge Preclinical studies suggest that SGLT-2 inhibitors can alter cancer cell metabolism by limiting glucose availability, potentially impeding tumor growth. …”
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    Article
  5. 65

    Metabolic reprogramming and macrophage expansion define ACPA-negative rheumatoid arthritis: insights from single-cell RNA sequencing by Yafeng Jiang, Zhaolan Hu, Roujie Huang, Kaying Ho, Pengfei Wang, Jin Kang, Jin Kang

    Published 2025-01-01
    “…By integrating single-cell RNA sequencing with machine learning, this study established a neural network model that robustly differentiates patients with ACPA− RA from healthy controls, highlighting promising diagnostic biomarkers and therapeutic targets centered on immune cell metabolism.…”
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    Article
  6. 66

    Effects of olive leaf extract on exercise performance and muscle mitochondrial response in young healthy adults by Clément Lanfranchi, Nadège Zanou, Jérôme Feige, Umberto DeMarchi, Aurélie Hermant, Ornella Cominetti, Eugenia Migliavacca, Alba Moreno-Asso, Astrid Hostrman, Sara Mistro, Nicolas Place

    Published 2025-01-01
    “…Mitochondrial calcium uptake declines during aging and is directly activated by oleuropein to boost energy metabolism and skeletal muscle performance. Cell Metabolism. https://doi.org/10.1016/j.cmet.2024.10.021 …”
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    Article
  7. 67

    TGFβ1 Restores Energy Homeostasis of Human Trophoblast Cells Under Hyperglycemia In Vitro by Inducing PPARγ Expression, AMPK Activation, and HIF1α Degradation by Nihad Khiat, Julie Girouard, Emmanuelle Stella Kana Tsapi, Cathy Vaillancourt, Céline Van Themsche, Carlos Reyes-Moreno

    Published 2025-01-01
    “…The TGFβ1/SMAD2 signaling pathway and the transcription factors PPARγ, HIF1α, and AMPK are key regulators of cell metabolism and are known to play critical roles in extravillous trophoblast cell differentiation and function. …”
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    Article
  8. 68

    Hubungan Kadar FT4 dan TSH Serum dengan Profil Lipid Darah pada Pasien Hipertiroid yang Dirawat Inap di RSUP Dr. M. Djamil Padang Tahun 2009 - 2013 by Aga Pratama, Eti Yerizel, Rudy Afriant

    Published 2014-01-01
    “…It has spesific effects on cell metabolism, including lipid metabolism.L ipid metabolism disorder in hyperthyroid will inflict clinical manifestation; such as mood disorders, depression, and increased aggressive behavior. …”
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    Article
  9. 69

    Inverse Agonist of Retinoid-Related Orphan Receptor-Alpha Prevents Apoptosis and Degeneration in Nucleus Pulposus Cells via Upregulation of YAP by Tongzhou Liang, Jincheng Qiu, Shaoguang Li, Zhihuai Deng, Xianjian Qiu, Wenjun Hu, Pengfei Li, Taiqiu Chen, Zhancheng Liang, Hang Zhou, Bo Gao, Dongsheng Huang, Anjing Liang, Wenjie Gao

    Published 2021-01-01
    “…Therefore, we applicated a well-established inverse agonist of RORα, SR3335, to investigate its role in regulating NP cell metabolism and apoptosis. To further investigate the mechanism that SR3335 regulates the pathogenesis of IDD in vitro, tumor necrosis factor alpha (TNF-α) stimulation was used in human NP cells to mimic the hostile environment that leads to degeneration. …”
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    Article
  10. 70

    Positron emission tomography for phenotyping inflammation of cardiovascular diseases by Xiaoyun Luo, Chentao Jin, Hetian Chen, Xiaohui Zhang, Yan Zhong, Peili Cen, Hong Zhang, Mei Tian

    Published 2024-12-01
    “…This review summarizes the PET imaging of key immune cell responses in CVDs, including immune cell metabolism, ligand/receptor interactions, and enzyme secretion, and discusses emerging opportunities and challenges in PET imaging-based inflammatory phenotyping and future perspectives.…”
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  11. 71
  12. 72

    PRMT5 promotes ovarian cancer growth through enhancing Warburg effect by methylating ENO1 by Fei Xie, Han Zhang, Kongkai Zhu, Cheng‐Shi Jiang, Xiaoya Zhang, Hongkai Chang, Yaya Qiao, Mingming Sun, Jiyan Wang, Mukuo Wang, Junzhen Tan, Tao Wang, Lianmei Zhao, Yuan Zhang, Jianping Lin, Chunze Zhang, Shuangping Liu, Jianguo Zhao, Cheng Luo, Shuai Zhang, Changliang Shan

    Published 2023-04-01
    “…However, the exactly roles and underlying mechanisms of PRMT5 contributing to the progression of ovarian cancer mediated by reprogramming cell metabolism remain largely elusive. Here, we report that PRMT5 is highly expressed and correlates with poor survival in ovarian cancer. …”
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    Article
  13. 73

    Identification of Host–Protein Interaction Network of Canine Parvovirus Capsid Protein VP2 in F81 Cells by Hongzhuan Zhou, Huanhuan Zhang, Xia Su, Fuzhou Xu, Bing Xiao, Jin Zhang, Qi Qi, Lulu Lin, Kaidi Cui, Qinqin Li, Songping Li, Bing Yang

    Published 2025-01-01
    “…The results showed that CPV VP2 protein participated mainly in cell metabolism, cell biosynthesis, protein folding and various signal transduction processes. …”
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    Article
  14. 74

    Targeting SRSF1 improves cancer immunotherapy by dually acting on CD8+T and tumor cells by Gui-Qi Zhu, Zheng Tang, Tian-Hao Chu, Biao Wang, Shi-Ping Chen, Chen-Yang Tao, Jia-Liang Cai, Rui Yang, Wei-Feng Qu, Yi Wang, Qian-Fu Zhao, Run Huang, Meng-Xin Tian, Yuan Fang, Jun Gao, Xiao-Ling Wu, Jian Zhou, Wei-Ren Liu, Zhi Dai, Ying-Hong Shi, Jia Fan

    Published 2025-01-01
    “…We therefore introduce a paradigm targeting SRSF1 that simultaneously disrupts tumor cell metabolism and enhances the antitumor immunity of CD8+ T cells.…”
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  15. 75

    Brain Plasticity and Cell Competition: Immediate Early Genes Are the Focus by Pavel P. Tregub, Yulia K. Komleva, Maria V. Kukla, Anton S. Averchuk, Anna S. Vetchinova, Natalia A. Rozanova, Sergey N. Illarioshkin, Alla B. Salmina

    Published 2025-01-01
    “…In addition, IEGs are involved in the regulation of brain cells’ metabolism, proliferation, and survival, in the establishment of multicellular ensembles, and, presumably, in cell competition in the tissue. …”
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    Article
  16. 76

    MVK, induced by Kras, represses cGAS-Sting signalling in lung adenocarcinoma by Changsheng Zhou, Jia Liu, Xudong Hu, Lu Lu, Juan Hou, Jian Wang, Liqun Jiang, Shuangshuang Huang, Yu Lin, Luyao Liu, Lingling Cui, Yiqian Liu, Yufeng Huang

    Published 2025-01-01
    “…Abstract Cholesterol metabolism is abnormally active in tumour cells. Metabolic enzymes related to cholesterol metabolism are upregulated in tumours, but their nonmetabolic functions remain unclear. …”
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    Article
  17. 77

    Lipid metabolism in myeloid cell function and chronic inflammatory diseases by Ayaka Ito, Ayaka Ito, Ayaka Ito, Takayoshi Suganami, Takayoshi Suganami, Takayoshi Suganami, Takayoshi Suganami

    Published 2025-01-01
    “…Recent studies have elucidated that during immune cell metabolic reprogramming, lipid metabolism, including lipid uptake, de novo lipid synthesis and fatty acid oxidation, undergoes significant alteration, resulting in dynamic changes in the quantity and quality of intracellular lipids. …”
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    Article
  18. 78

    Nutrition and Reproductive Health: Sperm versus Erythrocyte Lipidomic Profile and ω-3 Intake by Gabriela Ruth Mendeluk, Mariano Isaac Cohen, Carla Ferreri, Chryssostomos Chatgilialoglu

    Published 2015-01-01
    “…Molecular diagnostic tools are necessary to understand the cell metabolic turnover and monitor the success of nutraceuticals for personalized treatments.…”
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    Article
  19. 79

    Antibacterial mechanism of Lactiplantibacillus plantarum SHY96 cell-free supernatant against Listeria monocytogenes revealed by metabolomics and potential application on chicken br... by Ming Liang, Hongwei Wang, Zhaoquan Zhou, Yechuan Huang, Huayi Suo

    Published 2025-01-01
    “…This study demonstrated that the cell-free supernatant of L. plantarum SHY96 (LCFS96) effectively inhibits the growth and biofilm formation of L. monocytogenes CMCC(B)54002 (L. monocytogenes_02) by reducing cell metabolic activity and damaging cell structure. Metabolomic analysis revealed that LCFS96 significantly altered 450 intracellular metabolites, affecting key metabolic pathways including linoleic acid metabolism, pyrimidine metabolism, purine metabolism, pantothenic acid and CoA biosynthesis, and the TCA cycle. …”
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    Article
  20. 80

    miR-142 deficit in T cells during blast crisis promotes chronic myeloid leukemia immune escape by Fang Chen, Dandan Zhao, Yongfang Xu, Yi Zhang, Min-Hsuan Chen, Khyatiben V. Pathak, Nate Hansen, Brooke Lovell, Yong Liang, Katrina Estrella, Wei-Le Wang, Lucy Ghoda, Russell Rockne, Xiwei Wu, Haris Ali, Jianhua Yu, Michael A. Caligiuri, Stephen J. Forman, Jeff M. Trent, Ya-Huei Kuo, Ling Li, Piotr Swiderski, Jianying Zhang, Marcin Kortylewski, Le Xuan Truong Nguyen, Patrick Pirrotte, Mark Boldin, Guido Marcucci, Bin Zhang

    Published 2025-02-01
    “…In CML murine models, miR-142 deficit impairs thymic differentiation of lymphoid-primed multipotent progenitors (LMPP) into T cells and prevents T cells’ metabolic reprogramming, thereby leading to loss of T cells and leukemia immune escape. …”
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    Article