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相关概念视频

Overview of Regeneration and Repair01:19

Overview of Regeneration and Repair

4.0K
Regeneration and repair processes are critical in healing damages caused by injury, disease, and aging. In regeneration, the damaged tissue is entirely replaced with new growth that restores the original architecture and function. In contrast, tissue repair usually results in a fixed tissue architecture involving scar formation. Scars generally do not reestablish tissue function and may also exhibit structural abnormalities at the injury site.
Regeneration
All animals have varying degrees of...
4.0K
Role Of Notch Signalling In Intestinal Stem Cell Renewal01:12

Role Of Notch Signalling In Intestinal Stem Cell Renewal

2.1K
Notch signaling was first discovered in Drosophila melanogaster, where it is involved in cell lineage differentiation. Notch signaling regulates the maintenance and differentiation of intestinal stem cells or ISCs by controlling the expression of atonal homolog 1 or Atoh1. Atoh1 directs cells to differentiate into secretory cells.
Direct cell-to-cell contact is needed for the activation of Notch signaling. The signal is initiated when a notch ligand binds to a receptor on an adjacent cell, also...
2.1K
Interactions Between Signaling Pathways01:19

Interactions Between Signaling Pathways

6.3K
Signaling cascades usually lack linearity. Multiple pathways interact and regulate one another, allowing cells to integrate and respond to diverse environmental stimuli.
Convergence and divergence, and cross-talk between signaling pathways
Two distinct signaling pathways can converge on a single functional unit, which may either be a single protein or a complex of proteins. The response is either functionally distinct or synergistic between the two pathways but different from the response...
6.3K
Diversity in Cell Signaling Responses01:22

Diversity in Cell Signaling Responses

6.5K
The physiological function of a cell and cellular communication are outcomes of a range of extrinsic signals, intracellular signaling pathways, and cellular responses. No two cell types express the same repertoire of signaling components. Receptors are highly selective for their cognate ligands, but once activated, they can alter multiple cellular processes such as DNA transcription, protein synthesis, and metabolic activity. 
Graded and Abrupt Responses
Some signaling systems generate...
6.5K
Whole Body Regeneration01:33

Whole Body Regeneration

3.4K
Regeneration is the process of restoring injured or lost tissues, organs, or body parts. While simpler organisms generally show greater ability to regenerate their whole body, few complex animals show similarly exceptional regeneration. For example, planarian flatworms have a unique regenerative potential making them a popular study organism among biologists to understand the mechanisms of whole body regeneration. Other organisms, such as hydra, also show extreme regeneration potential;...
3.4K
TGF - β Signaling Pathway01:16

TGF - β Signaling Pathway

7.4K
The TGF-β signaling pathway regulates cell growth, differentiation, adhesion, motility, and development. TGF-β ligands that induce TGF-β signaling are synthesized in their latent form. Several proteases or cell surface receptors such as integrins act upon the latent form, releasing the active ligand. There are three types of mammalian TGF-βs: (TGF-β1, TGF-β2, and TGF-β3) that bind as homodimers or heterodimers to TGF-β receptors. The TGF-β receptors...
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Gradients, waves and nematics: quantitative perspectives on regeneration.

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In toto live imaging of Erk signaling dynamics in developing zebrafish hepatocytes.

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Decaying and expanding Erk gradients process memory of skeletal size during zebrafish fin regeneration.

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相关实验视频

Updated: Jul 15, 2025

Use of the TetON System to Study Molecular Mechanisms of Zebrafish Regeneration
10:22

Use of the TetON System to Study Molecular Mechanisms of Zebrafish Regeneration

Published on: June 25, 2015

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重生:超级高速公路的信号传输

Fei Sun1, Alessandro De Simone2, Kenneth D Poss1

  • 1Duke Regeneration Center and Department of Cell Biology, Duke University Medical Center, Durham, NC, USA.

Current biology : CB
|September 26, 2023
PubMed
概括

平面再生依赖于快速的Erk酶在整个身体中发出信号. 这种信号通过肌肉细胞传递,协调伤口反应,对于成功的再生至关重要.

科学领域:

  • 发展生物学 发展生物学
  • 再生医学是一种再生医学.
  • 细胞信号传递 细胞信号传递

背景情况:

  • 全身再生是一个复杂的过程,涉及多个器官系统.
  • 协调的细胞反应对于受伤后的成功再生至关重要.

研究的目的:

  • 调查Erk酶信号在平面全身再生中的作用.
  • 确定信号传播的机制,协调整个动物的伤口反应.

主要方法:

  • 利用平面模型研究全身再生.
  • 通过实时成像技术研究了Erk激酶活动的传播.
  • 通过实验操纵评估了Erk酶信号的必要性,以进行再生.

主要成果:

  • 埃尔克酶活动在整个平面中迅速传播.
  • 信号传播通过纵向肌肉细胞发生,协调整个动物的伤口反应.
  • 抑制埃尔克酶信号传递阻止了成功的再生.

结论:

  • 埃尔克酶信号传递是一种关键的,快速传播的信号,协调平面再生.
  • 纵向肌肉细胞作为这种必不可少的再生信号的导管.

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  • 了解这种途径可以了解再生过程和潜在的治疗点.