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相关概念视频

Cells Coordinate Growth and Proliferation02:36

Cells Coordinate Growth and Proliferation

Cell size is a significant factor impacting cellular design, function, and fitness. There exists some internal coordination by which cells double their masses before division, thus, achieving homeostasis. Coordination between cell growth and proliferation depends on the checkpoints in between cell cycle phases. Loss of coordination or failure in the checkpoint mechanism can drive the cell to uncontrolled growth and loss of cellular function. Like dividing cells that coordinate cellular growth,...
Mechanism of Angiogenesis01:10

Mechanism of Angiogenesis

Blood vessel formation starts early during embryonic development, around day 7. In the extraembryonic yolk sac, mesodermal precursor cells called hemangioblast proliferate and differentiate into angioblast. Angioblasts express vascular endothelial growth factor receptor 2 or VEGFR2, which binds VEGF-A, a proangiogenic factor, guiding blood vessel formation. VEGF signaling promotes angioblasts to form a blood island in the developing embryo. Angioblasts further differentiate, giving rise to...
Regulation of Angiogenesis and Blood Supply01:24

Regulation of Angiogenesis and Blood Supply

Rapidly dividing tumors, embryos, and wounded tissues require more oxygen than usual, lowering the oxygen concentration in the blood. At low oxygen or hypoxic conditions, an oxygen-sensitive transcription factor called the hypoxia-inducible factor 1 or HIF1 is activated. HIF1 is a dimeric protein of alpha (ɑ) and beta (β) subunits.  Under optimal oxygen conditions, HIF1β is present in the nucleus while HIF1ɑ remains in the cytosol. HIF1ɑ is hydroxylated by prolyl hydroxylase and factor...
Regulation of Hematopoietic Stem Cells01:01

Regulation of Hematopoietic Stem Cells

All blood and immune cells are produced from the multipotent hematopoietic stem cells (HSCs) by the process of hematopoiesis. However, they all have a limited life span. In addition, many are depleted in immune surveillance or combatting an injury or infection. This makes blood one of the most regenerative tissues. Hematopoiesis helps replenish these blood and immune cells, restoring the body's normal functioning. However, overproduction of blood and immune cells can make them cancerous or...
Cells Coordinate Growth and Proliferation02:36

Cells Coordinate Growth and Proliferation

Cell size is a significant factor impacting cellular design, function, and fitness. There exists some internal coordination by which cells double their masses before division, thus, achieving homeostasis. Coordination between cell growth and proliferation depends on the checkpoints in between cell cycle phases. Loss of coordination or failure in the checkpoint mechanism can drive the cell to uncontrolled growth and loss of cellular function. Like dividing cells that coordinate cellular growth,...
Role of Hematopoietic Growth Factors01:28

Role of Hematopoietic Growth Factors

Hematopoietic growth factors are molecules that regulate the differentiation rate of hematopoietic stem cells (HSCs). Erythropoietin (EPO), primarily produced by the kidneys, plays a crucial role in erythrocyte production. When oxygen levels in the blood are low, EPO is released into the bloodstream, reaching the bone marrow, where it stimulates HSCs to differentiate and mature into erythrocytes, which are vital for oxygen transport.
Thrombopoietin (TPO), mainly released by the liver,...

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相关实验视频

Updated: Jun 30, 2026

Strategic Endothelial Cell Tube Formation Assay: Comparing Extracellular Matrix and Growth Factor Reduced Extracellular Matrix
08:46

Strategic Endothelial Cell Tube Formation Assay: Comparing Extracellular Matrix and Growth Factor Reduced Extracellular Matrix

Published on: August 14, 2016

基本纤维细胞生长因子增加了循环单细胞和血管壁中的组织因子表达.

D Corseaux1, T Meurice, I Six

  • 1Laboratoire d'Hématologie, Centre Hospitalier Régional Universitaire and Faculté de Médecine, Lille, France.

Circulation
|April 26, 2000
PubMed
概括
此摘要是机器生成的。

基本纤维细胞生长因子 (bFGF) 增加了子在单细胞和血管细胞中的组织因子 (TF) 表达. 这种效应在正常的子中显著,在高胆固醇的子中不那么明显,需要进一步调查血栓形成风险.

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Fibroblast-Derived 3D Matrix System Applicable to Endothelial Tube Formation Assay
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Generation of Human Blood Vessel Organoids from Pluripotent Stem Cells
09:46

Generation of Human Blood Vessel Organoids from Pluripotent Stem Cells

Published on: January 20, 2023

相关实验视频

Last Updated: Jun 30, 2026

Strategic Endothelial Cell Tube Formation Assay: Comparing Extracellular Matrix and Growth Factor Reduced Extracellular Matrix
08:46

Strategic Endothelial Cell Tube Formation Assay: Comparing Extracellular Matrix and Growth Factor Reduced Extracellular Matrix

Published on: August 14, 2016

Fibroblast-Derived 3D Matrix System Applicable to Endothelial Tube Formation Assay
07:21

Fibroblast-Derived 3D Matrix System Applicable to Endothelial Tube Formation Assay

Published on: December 26, 2019

Generation of Human Blood Vessel Organoids from Pluripotent Stem Cells
09:46

Generation of Human Blood Vessel Organoids from Pluripotent Stem Cells

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科学领域:

  • 血管生物学 血管生物学
  • 血液静止 血液静止 血液静止
  • 内分泌学 在内分泌学.

背景情况:

  • 已知基本纤维细胞生长因子 (bFGF) 促进血管修复和血管生成.
  • bFGF可以在体外诱导组织因子 (TF),这是血栓形成的关键发起者.
  • 在血管生成中bFGF诱导的TF的作用需要研究.

研究的目的:

  • 调查系统性bFGF给药是否会诱导单细胞和血管细胞中的TF表达.
  • 为了比较bFGF给药后正常和高胆固醇贫血子的TF表达.

主要方法:

  • 在正常和胆固醇养的子中研究了TF表达.
  • 动物接受了静脉bFGF或盐水注射.
  • 在单细胞和大动脉截面的TF表达通过免疫组织化学评估.

主要成果:

  • 在正常和高胆固醇贫血的子中,bFGF的使用显著增加了单细胞TF表达.
  • 与正常子相比,高胆固醇血症子的TF表达率较低.
  • bFGF在正常子的血管壁中诱导了强烈的TF表达,在高胆固醇贫血子中诱导了弱表达.

结论:

  • 系统性bFGF的使用显著增加了循环单细胞和血管壁中的TF表达.
  • 在正常子中,bFGF对TF表达的作用比在高胆固醇贫血的子中更为明显.
  • 与体内血栓形成有关的bFGF诱导的TF表达的临床意义需要进一步研究.