Selected article for: "cell migration and endothelial cell"

Author: Zhu, Hua; Zhang, Yonggang; Zhong, Yi; Ye, Yingze; Hu, Xinyao; Gu, Lijuan; Xiong, Xiaoxing
Title: Inflammation-Mediated Angiogenesis in Ischemic Stroke
  • Cord-id: terx1i0f
  • Document date: 2021_4_21
  • ID: terx1i0f
    Snippet: Stroke is the leading cause of disability and mortality in the world, but the pathogenesis of ischemic stroke (IS) is not completely clear and treatments are limited. Mounting evidence indicate that neovascularization is a critical defensive reaction to hypoxia that modulates the process of long-term neurologic recovery after IS. Angiogenesis is a complex process in which the original endothelial cells in blood vessels are differentiated, proliferated, migrated, and finally remolded into new blo
    Document: Stroke is the leading cause of disability and mortality in the world, but the pathogenesis of ischemic stroke (IS) is not completely clear and treatments are limited. Mounting evidence indicate that neovascularization is a critical defensive reaction to hypoxia that modulates the process of long-term neurologic recovery after IS. Angiogenesis is a complex process in which the original endothelial cells in blood vessels are differentiated, proliferated, migrated, and finally remolded into new blood vessels. Many immune cells and cytokines, as well as growth factors, are directly or indirectly involved in the regulation of angiogenesis. Inflammatory cells can affect endothelial cell proliferation, migration, and activation by secreting a variety of cytokines via various inflammation-relative signaling pathways and thus participate in the process of angiogenesis. However, the mechanism of inflammation-mediated angiogenesis has not been fully elucidated. Hence, this review aimed to discuss the mechanism of inflammation-mediated angiogenesis in IS and to provide new ideas for clinical treatment of IS.

    Search related documents:
    Co phrase search for related documents
    • activator protein and adaptive innate: 1
    • activator protein and adaptive innate immunity: 1
    • activator signal transducer and adaptive innate: 1, 2, 3, 4
    • activator signal transducer and adaptive innate immunity: 1
    • acute phase and adaptive innate: 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11
    • acute phase and adaptive innate immunity: 1, 2, 3
    • acute stage and adaptive innate: 1
    • acute stage and adaptive innate immunity: 1