Showing 1,001 - 1,020 results of 1,085 for search '"cell proliferation"', query time: 0.11s Refine Results
  1. 1001

    Construction of complex three-dimensional vascularized liver tissue model in vitro based on a biphasic cell-laden embedding medium by Weikang Lv, Haoran Yu, Abdellah Aazmi, Tuya Naren, Wanli Cheng, Mengfei Yu, Zhen Wang, Xiaobin Xu, Huayong Yang, Liang Ma

    Published 2025-01-01
    “…Constructing an in vitro vascularized liver tissue model that closely simulates the human liver is crucial for promoting cell proliferation, mimicking physiological heterogeneous structures, and recreating the cellular microenvironment. …”
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    Article
  2. 1002

    Ligilactobacillus salivarius LZZAY01 accelerated autophagy and apoptosis in colon cancer cells and improved gut microbiota in CAC mice by Wenhong Yang, Tao Li, Shixiang An, Rong Chen, Yuxin Zhao, Jiaxian Cui, Mingyu Zhang, Jingkun Lu, Yunpeng Tian, Lili Bao, Pengwei Zhao

    Published 2025-02-01
    “…The regulation of tumor cell proliferation and apoptosis by the active ingredients of probiotics may be one of the mechanisms of their prevention of CRC. …”
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  3. 1003

    Inhibition of microRNA-139-5p Improves Fibroblasts Viability and Enhances Wound Repair in Diabetic Rats Through AP-1 (c-Fos/c-Jun) by Mo J, Zhang J, Meng X, Wang F, Tang W, Liu Y, Fu L, Liang F, Mo Z

    Published 2025-01-01
    “…In vitro, the expression of microRNA-139-5p was up-regulated in human skin fibroblasts induced by high glucose treatment, while the function of the cell proliferation and migration was promoted and the level of AP-1 (c-Fos/c-Jun) was increased after transfected with the microRNA-139-5p inhibitor, and vice versa. …”
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  4. 1004

    Comprehensive genomic and transcriptomic profiling of pulmonary nodules in synchronous multiple primary lung cancer by Xingsheng Liu, Kun Qian, Lei Su, Xiaoru Tian, Xin Zhao, Tengteng Wang, Li Han, Zhenzhen Li, Peilong Zhang, Ruotian Wang, Baodong Liu, Yuanbo Li, Xiaogang Tan, Yi Zhang

    Published 2025-02-01
    “…The major nodules exhibited heightened activity in tumor cell proliferation pathways and demonstrated malignancy-related biological characteristics, which correlated with pathological assessment results.…”
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    Article
  5. 1005

    Mesangial Cells Exhibit Features of Antigen-Presenting Cells and Activate CD4+ T Cell Responses by Hongyu Yu, Shaoyuan Cui, Yan Mei, Qinggang Li, Lingling Wu, Shuwei Duan, Guangyan Cai, Hanyu Zhu, Bo Fu, Li Zhang, Zhe Feng, Xiangmei Chen

    Published 2019-01-01
    “…CD4+ T cell activation induced by mesangial cells was detected in terms of T cell proliferation and cytokine production. Results. IFN-γ-treated mesangial cells express membrane proteins involved in antigen presentation and T cell activation, including MHC-II, ICAM-1, CD40, and CD80. …”
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    Article
  6. 1006

    In Vitro Cytotoxic Study and Detection of Apoptosis on Breast Cancer Cell lines MDA-MB 231 after Exposed to Azadirachta Indica A. Juss (neem) Extract by Dessy Arisanty

    Published 2013-05-01
    “…Neem leaf extract decreased cell viability, inhibited cell proliferation, and induced cell apoptosis. Result of MTT assay was 55 μg/mL of neem remarkably reduced cell viability of MDA-MB 231 cells. …”
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    Article
  7. 1007
  8. 1008

    In Vitro Cultivation of Limbal Epithelial Stem Cells on Surface-Modified Crosslinked Collagen Scaffolds by Michel Haagdorens, Vytautas Cėpla, Eline Melsbach, Laura Koivusalo, Heli Skottman, May Griffith, Ramūnas Valiokas, Nadia Zakaria, Isabel Pintelon, Marie-José Tassignon

    Published 2019-01-01
    “…Human LESC were cultivated on seven different collagen-derived hydrogels: (1) unmodified RHC I, (2) fibronectin-patterned RHC I, (3) carbodiimide-crosslinked CLP (CLP-12 EDC), (4) DMTMM- (4-(4,6-dimethoxy-1,3,5-triazin-2-yl)-4-methyl-morpholinium-) crosslinked CLP (CLP-12), (5) fibronectin-patterned CLP-12, (6) “3D limbal niche-mimicking” CLP-12, and (7) DMTMM-crosslinked CLP made from higher CLP concentration solution. Cell proliferation, cell morphology, and expression of LESC markers were analyzed. …”
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    Article
  9. 1009

    Single-cell profiling of SLC family transporters: uncovering the role of SLC7A1 in osteosarcoma by Yan Liao, Junkai Chen, Hao Yao, Ting Zheng, Jian Tu, Weidong Chen, ZeHao Guo, Yutong Zou, Lili Wen, Xianbiao Xie

    Published 2025-01-01
    “…CCK8 assays, EdU staining, colony formation assays, Transwell assays, and co-culture systems were used to assess the effects of SLC7A1 on cell proliferation, metastasis, and macrophage polarization. …”
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    Article
  10. 1010

    Modulation of DAPK1 expression by its alternative splice variant DAPK1-215 in cancer by QingShui Wang, ShuYun Weng, WenTing Zhong, YouYu Lin, Yan Yu, YiMin Huang, LiLin Ge, XiuLi Zhang, FangQin Xue, Yehuda G. Assaraf, Yao Lin

    Published 2025-01-01
    “…DAPK1-215 promoted migratory and invasive capabilities in liver and kidney cancer cells, but inhibited these processes in gastric cancer cells, without affecting cell proliferation. Mechanistically, DEAD-Box Helicase 3 X-Linked (DDX3X) stabilized both DAPK1-215 and DAPK1 mRNAs, suggesting that DAPK1-215 may act by competing for DDX3X binding to modulate DAPK1 mRNA stability. …”
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    Article
  11. 1011
  12. 1012

    SLC1A5 is a key regulator of glutamine metabolism and a prognostic marker for aggressive luminal breast cancer by Lutfi H. Alfarsi, Rokaya El Ansari, Busra Erkan, Ali Fakroun, Madeleine L. Craze, Mohammed A. Aleskandarany, Kiu Wai Cheng, Ian O. Ellis, Emad A. Rakha, Andrew R. Green

    Published 2025-01-01
    “…Furthermore, SLC1A5 knockdown by siRNA or GPNA inhibition significantly reduced cell proliferation and glutamine uptake in ZR-75-1 cells. …”
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    Article
  13. 1013

    The cryptic lncRNA-encoded microprotein TPM3P9 drives oncogenic RNA splicing and tumorigenesis by Kun Meng, Yuying Li, Xiaoyi Yuan, Hui-Min Shen, Li-Ling Hu, Danya Liu, Fujin Shi, Dandan Zheng, Xinyu Shi, Nengqiao Wen, Yun Cao, Yun-Long Pan, Qing-Yu He, Chris Zhiyi Zhang

    Published 2025-01-01
    “…Overexpression of TPM3P9 promotes cell proliferation and tumor growth. Mechanistically, TPM3P9 binds to the RRM1 domain of the splicing factor RBM4 to inhibit RBM4-mediated exon skipping in the transcription factor TCF7L2. …”
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    Article
  14. 1014

    Lnc-EST885 promotes hepatocellular carcinoma metastasis through PI3K / AKT pathway by interaction with TRAF4 by Shaoliang Zhu, Gang Wang, Yuxuan Zhang, Mengjie Zou, Zhi Li, Shenhong Qu, Xiaosu Zou, Wenqian Nong, Weiwei Miao, Qicong Chen, Juanmei Mo, Huibing Chen, Lequn Li, Xiaofeng Dong, Honglin Luo

    Published 2025-02-01
    “…Methods: Cell experiments including FISH, western blot, flow cytometry and functional analysis were used to elucidate the effects of lnc-EST885 on cell proliferation, apoptosis, migration and EMT processes. …”
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    Article
  15. 1015

    LLT1 overexpression renders allogeneic-NK resistance and facilitates the generation of enhanced universal CAR-T cells by Shuxian Zhu, Shiyu Zuo, Chuo Li, Xingjie You, Erlie Jiang, Xiaoming Feng, Yuechen Luo

    Published 2025-01-01
    “…In vitro, LLT1 overexpression boosted CAR-T cell proliferation and antitumor activity, leading to a transcriptional signature characterized by elevated stemness-related markers (SELL, BCL6, TCF7, and CD27) and increased levels of IL-10 and other cytokines. …”
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    Article
  16. 1016

    Baicalein induces apoptosis by inhibiting the glutamine-mTOR metabolic pathway in lung cancer by Jingyang Li, Di Zhang, Shaohui Wang, Peng Yu, Jiayi Sun, Yi Zhang, Xianli Meng, Juan Li, Li Xiang

    Published 2025-02-01
    “…In vitro experiments were used to assess the efficacy of baicalein (for H1299: 12.5, 25, and 50 μM; for A549: 10, 20, and 40 μM) on lung cancer cell proliferation, colony formation, and apoptosis. Metabolomics analysis was performed using liquid chromatography-mass spectrometry. …”
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    Article
  17. 1017

    miR124a-3p inhibitor alleviates AFB1-induced hepatoxicity via targeting chicken glucocorticoid receptor mRNA by Mindie Zhao, Liang Chen, Yulan Zhao, Jie Liu, Huimin Chen, Ruqian Zhao

    Published 2025-03-01
    “…After 24 h of 40 μM AFB1 treatment in LMH cells, Edu and flow cytometry confirmed inhibition of cell proliferation and promotion of apoptosis. Additionally, AFB1 induced oxidative stress and DNA damage. …”
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    Article
  18. 1018

    Novel insights into palatal shelf elevation dynamics in normal mouse embryos by Jeremy P. Goering, Michael Moedritzer, Marta Stetsiv, Dona Greta Isai, Brittany M. Hufft-Martinez, An J. Tran, Zaid Umar, Madison K. Rickabaugh, Paul Keselman, Munish Chauhan, Pamela V. Tran, William M. Brooks, William M. Brooks, Kenneth J. Fischer, Andras Czirok, Andras Czirok, Irfan Saadi, Irfan Saadi

    Published 2025-02-01
    “…During elevation, we observed increased cell proliferation in the PS lingual region. Within the bulge, cell orientation was tilted towards the tongue, and actomyosin activity was increased, which together may participate in horizontal projection of the bulge. …”
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  19. 1019

    miR-129-5p Regulates the Immunomodulatory Functions of Adipose-Derived Stem Cells via Targeting Stat1 Signaling by He-Yang Zhang, Yu-Han Wang, Yan Wang, Yan-Nv Qu, Xiao-Hui Huang, Hui-Xin Yang, Chang-Ming Zhao, Youdi He, Si-Wei Li, Jin Zhou, Changyong Wang, Xiao-Xia Jiang

    Published 2019-01-01
    “…These cells also had an increased capacity to inhibit T cell proliferation in vitro. ASCs with miR-129-5p knockdown alleviated inflammatory bowel diseases and promoted tumor growth in vivo. …”
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  20. 1020

    Nuclear-localized HKDC1 promotes hepatocellular carcinoma through phosphorylating RBBP5 to upregulate H3K4me3 by Ling Ye, Shengqi Shen, Qiankun Mao, Hui Lu, Haiying Liu, Pinggen Zhang, Zetan Jiang, Wenhao Ma, Yuchen Sun, Yiyang Chu, Zilong Zhou, Rui Liu, Jian Li, Shi-ting Li, Ping Gao, Huafeng Zhang

    Published 2025-02-01
    “…Here, we demonstrate that nuclear-localized HKDC1 acts as a protein kinase to promote hepatocellular carcinoma (HCC) cell proliferation. Mechanistically, HKDC1 phosphorylates RB binding protein 5 (RBBP5) at Ser497, which is crucial for MLL1 complex assembly and subsequent histone H3 lysine 4 trimethylation (H3K4me3) modification. …”
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    Article