Showing 21 - 40 results of 1,085 for search '"cell proliferation"', query time: 0.07s Refine Results
  1. 21

    Effects of Mating and Social Exposure on Cell Proliferation in the Adult Male Prairie Vole (Microtus ochrogaster) by A. E. Castro, L. J. Young, F. J. Camacho, R. G. Paredes, N. F. Diaz, W. Portillo

    Published 2020-01-01
    “…Here, we determine whether mating-induced pair bonding increases cell proliferation in the subventricular zone (SVZ), rostral migratory stream (RMS), and dentate gyrus (DG) of the hippocampus in male voles. …”
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  2. 22

    Biochemical Properties of the Acid Ectophosphatase Activity of <i>Phytomonas serpens</i> Involved in Cell Proliferation by Luiz Fernando Carvalho-Kelly, Anita Leocadio Freitas-Mesquita, Thaís Souza Silveira Majerowicz, José Roberto Meyer-Fernandes

    Published 2024-12-01
    “…The inhibitor sodium orthovanadate was able to decrease <i>P. serpens</i> ectophosphatase activity and growth, suggesting its involvement in cell proliferation. Given that <i>P. serpens</i> can uptake inorganic phosphate (P<sub>i</sub>) from the extracellular medium, it is likely that its ectophosphatase activity acts together with the transport systems in the P<sub>i</sub> acquisition process. …”
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  3. 23

    Human Liver Stem Cells Suppress T-Cell Proliferation, NK Activity, and Dendritic Cell Differentiation by Stefania Bruno, Cristina Grange, Marta Tapparo, Chiara Pasquino, Renato Romagnoli, Ennia Dametto, Antonio Amoroso, Ciro Tetta, Giovanni Camussi

    Published 2016-01-01
    “…When compared with mesenchymal stromal cells (MSCs), HLSCs were more efficient in inhibiting T-cell proliferation. At variance with MSCs, HLSCs did not elicit NK degranulation. …”
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  4. 24

    IGF-1R Inhibition Suppresses Cell Proliferation and Increases Radiosensitivity in Nasopharyngeal Carcinoma Cells by Zhe Wang, Guangyan Liu, Jiwei Mao, Min Xie, Ming Zhao, Xuefen Guo, Shanshan Liang, Heming Li, Xuefeng Li, Ruoyu Wang

    Published 2019-01-01
    “…We found that linsitinib suppresses IGF-1-induced cell proliferation through inhibiting Akt and ERK phosphorylation. …”
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  5. 25

    The Transcription Factor Creb is Involved in Sorafenib-Inhibited Renal Cancer Cell Proliferation, Migration and Invasion by Huang Shuaishuai, Cui Pinger, Lin Shuangxia, Yao Xuping, Wang Xue, Ren Yu, Weng Guobin

    Published 2018-12-01
    “…Our study, therefore, explored the role of CREB in sorafenib- -inhibited cell proliferation, migration and invasion. Renal cancer cells were cultured in medium containing sorafenib for 12, 24, 48 and 72 h. …”
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  6. 26

    Cyclin G1 Regulates the Alveolarization in Models of Bronchopulmonary Dysplasia by Inhibiting AT2 Cell Proliferation by Panpan Xu, Wanqing Zhuo, Peipei Zhang, Ying Chen, Yue Du, Ying Li, Yajuan Wang

    Published 2025-01-01
    “…The inhibition of type 2 alveolar (AT2) cell proliferation plays an important role in the arrest of alveologenesis. …”
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  7. 27

    Curcumin Inhibits Papillary Thyroid Cancer Cell Proliferation by Regulating lncRNA LINC00691 by Zhihua Li, Youbing Gao, Lijun Li, Shanshan Xie

    Published 2022-01-01
    “…We observed that curcumin treatment decreased B-CPAP cell proliferation and promoted apoptosis. Curcumin inhibited LINC00691 expression in B-CPAP cells. …”
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    Downregulation of TET1 Promotes Glioma Cell Proliferation and Invasion by Targeting Wnt/β-Catenin Pathway by Jianwen Ji, Qiuxiang You, Jidong Zhang, Yutao Wang, Jing Cheng, Xiangyun Huang, Yundong Zhang

    Published 2021-01-01
    “…The further rescue experiments were performed, wherein downregulation of β-catenin markedly decreases glioma cell proliferation in vitro and in vivo. This study confirmed the tumor suppressive function of TET1 and illustrated the underlying molecular mechanisms regulated by TET1 in glioma.…”
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    Involvement of PPARs in Cell Proliferation and Apoptosis in Human Colon Cancer Specimens and in Normal and Cancer Cell Lines by G. Martinasso, M. Oraldi, A. Trombetta, M. Maggiora, O. Bertetto, R. A. Canuto, G. Muzio

    Published 2007-01-01
    “…PPAR involvement in cell growth was investigated “in vivo” and “in vitro” and was correlated with cell proliferation and apoptotic death. “In vivo” PPARγ and α were evaluated in colon cancer specimens and adjacent nonneoplastic colonic mucosa. …”
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