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  1. Adult Glial Cell Proliferation and Neurogenesis

    The nomenclature of stem and progenitor cells is reviewed. In the adult body, only glial cells and not neurons can proliferate. The glial cell with...
    Wolfgang Walz in The Gliocentric Brain
    Chapter 2023
  2. Cancer as a Disease of Cell Proliferation

    Evolutionary dynamics relates the growth and development of tumours to changes in rates of cell proliferation and cell death, and to their mutation...
    Chapter 2023
  3. Melatonin Modulates Cell Cycle Dynamics and Promotes Hippocampal Cell Proliferation After Ischemic Injury in Neonatal Rats

    Promoting neural cell proliferation may represent an important strategy for enhancing brain repair after developmental brain injury. The present...

    Barbara Canonico, Silvia Carloni, ... Walter Balduini in Molecular Neurobiology
    Article Open access 15 February 2024
  4. Inhibition of the galactosyltransferase C1GALT1 reduces osteosarcoma cell proliferation by interfering with ERK signaling and cell cycle progression

    Novel therapeutic strategies are urgently required for osteosarcoma, given the early age at onset and persistently high mortality rate. Modern...

    Kentaro Watanabe, Keiji Tasaka, ... Junko Takita in Cancer Gene Therapy
    Article Open access 15 April 2024
  5. circRNA-CPA4 Regulates Cell Proliferation and Apoptosis of Non-small Cell Lung Cancer via the miR-1183/PDPK1 Axis

    Non-small-cell lung cancer (NSCLC) stands as a prevalent subtype of lung cancer, with circular RNAs emerging as key players in cancer development....

    Heng Li, Yujie Lei, ... Yunchao Huang in Biochemical Genetics
    Article 25 January 2024
  6. Eukaryotic initiation factor 3a promotes the development of diffuse large B-cell lymphoma through regulating cell proliferation

    Background

    One-third of diffuse large B-cell lymphoma (DLBCL) patients suffer relapse after standard treatment. Eukaryotic initiation factor 3a...

    Hongkun Sun, Juanjuan Shang, ... **n Wang in BMC Cancer
    Article Open access 08 April 2024
  7. Functional ProTracer identifies patterns of cell proliferation in tissues and underlying regulatory mechanisms

    A genetic system, ProTracer, has been recently developed to record cell proliferation in vivo. However, the ProTracer is initiated by an infrequently...

    **uxiu Liu, Maoying Han, ... Bin Zhou in npj Regenerative Medicine
    Article Open access 03 August 2023
  8. The V protein in oncolytic Newcastle disease virus promotes HepG2 hepatoma cell proliferation at the single-cell level

    Background

    Newcastle disease virus (NDV) is an oncolytic virus that can inhibit cancer cell proliferation and kill cancer cells. The NDV nonstructural...

    Zhili Chu, Sihui Yang, ... Feng Ren in BMC Cancer
    Article Open access 17 April 2023
  9. The TNFα/TNFR2 axis mediates natural killer cell proliferation by promoting aerobic glycolysis

    Natural killer (NK) cells are predominant innate lymphocytes that initiate the early immune response during infection. NK cells undergo a metabolic...

    Abrar Ul Haq Khan, Alaa Kassim Ali, ... Seung-Hwan Lee in Cellular & Molecular Immunology
    Article Open access 09 August 2023
  10. iAstrocytes do not restrain T cell proliferation in vitro

    The cross-talk between T cells and astrocytes occurring under physiological and, even more, neuroinflammatory conditions may profoundly impact the...

    Emanuela Colombo, Anthea De Angelis, ... Cinthia Farina in BMC Neuroscience
    Article Open access 07 June 2023
  11. Allyl isothiocyanate regulates oxidative stress, inflammation, cell proliferation, cell cycle arrest, apoptosis, angiogenesis, invasion and metastasis via interaction with multiple cell signaling pathways

    Cancer growth is a molecular mechanism initiated by genetic and epigenetic modifications that are involved in cell proliferation, differentiation,...

    Thangarasu Rajakumar, Pachaiappan Pugalendhi in Histochemistry and Cell Biology
    Article 29 November 2023
  12. MiR-5189-3p Suppresses cell Proliferation, Invasion and Migration Through Targeting EIF5A2 in Laryngeal Squamous Cell Carcinoma

    A growing body of evidence suggests that miR-5189-3p plays a critical role in multiple diseases. This study aimed to investigate the function of...

    Dan Lou, Qiao**g Jia, ... Chunguang Shan in Biochemical Genetics
    Article 01 September 2023
  13. Glucocorticoid Receptor Down-Regulation Affects Neural Stem Cell Proliferation and Hippocampal Neurogenesis

    Dysregulation of the hypothalamic–pituitary–adrenal axis and abnormalities in the glucocorticoid receptor (GR) have been linked to major depressive...

    Seoyeong Kim, Seonguk Yang, ... Jaewon Lee in Molecular Neurobiology
    Article 18 November 2023
  14. microRNA-622 upregulates cell cycle process by targeting FOLR2 to promote CRC proliferation

    Background

    Epigenetic alterations contribute greatly to the development and progression of colorectal cancer, and effect of aberrant miR-622...

    Yuehong Chen, Feng Liu, ... Jiang Yu in BMC Cancer
    Article Open access 02 January 2024
  15. Suppressive Effect of Chemically Induced Hypoxia on Glioblastoma Cell Proliferation

    Glioblastoma is a tumor characterized by pronounced hypoxia. Hypoxia produces diverse effects on tumor cells, and the results of experimental studies...

    I. V. Kholodenko, K. N. Yarygin in Bulletin of Experimental Biology and Medicine
    Article 01 August 2023
  16. STEAP3 promotes colon cancer cell proliferation and migration via regulating histone acetylation

    Colorectal cancer (CRC) is the third most prevalent diagnosed cancer in men and second most prevalent cancer in women. H3K27ac alterations are more...

    **juan Lv, **aoqian Liu, ... Yunfei Zuo in Human Genetics
    Article 13 March 2024
  17. Circ_FNDC3B Promotes Cell Proliferation and Metastasis in Esophageal Squamous Cell Carcinoma via Regulating MAPK1 by Binding to miR-136-5p

    A handful of circular RNAs (circRNAs) associated with cancer progression have been indicated in esophageal squamous cell carcinoma (ESCC). The...

    Yuwei Li, Lieting Ma, Peng Li in Biochemical Genetics
    Article 16 January 2024
  18. Testosterone upregulates glial cell line-derived neurotrophic factor (GDNF) and promotes neuroinflammation to enhance glioma cell survival and proliferation

    Background

    Testosterone contributes to male organism development, such as bone density, muscle development, and fat repartition. Estrogen (derived...

    Kouminin Kanwore, Konimpo Kanwore, ... DianShuai Gao in Inflammation and Regeneration
    Article Open access 13 October 2023
  19. VEGFR2 blockade inhibits glioblastoma cell proliferation by enhancing mitochondrial biogenesis

    Background

    Glioblastoma is an aggressive brain tumor linked to significant angiogenesis and poor prognosis. Anti-angiogenic therapies with vascular...

    Min Guo, Junhao Zhang, ... Nailin Li in Journal of Translational Medicine
    Article Open access 03 May 2024
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