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相关概念视频

The Tumor Microenvironment02:17

The Tumor Microenvironment

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Every normal cell or tissue is embedded in a complex local environment called stroma, consisting of different cell types, a basal membrane, and blood vessels. As normal cells mutate and develop into cancer cells, their local environment also changes to allow cancer progression. The tumor microenvironment (TME) consists of a complex cellular matrix of stromal cells and the developing tumor. The cross-talk between cancer cells and surrounding stromal cells is critical to disrupt normal tissue...
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Metastasis02:30

Metastasis

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Metastasis is the spread of cancer cells from the original site to distant locations in the body. Cancer cells can spread via blood vessels (hematogenous) as well as lymph vessels in the body.
Epithelial-to-Mesenchymal Transition
The epithelial-to-mesenchymal transition or EMT is a developmental process commonly observed in wound healing, embryogenesis, and cancer metastasis. EMT is induced by transforming growth factor-beta (TGF-β) or receptor tyrosine kinase (RTK) ligands, which further...
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Mitogens and the Cell Cycle02:38

Mitogens and the Cell Cycle

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Mitogens and their receptors play a crucial role in controlling the progression of the cell cycle. However, the loss of mitogenic control over cell division leads to tumor formation. Therefore, mitogens and mitogen receptors play an important role in cancer research. For instance, the epidermal growth factor (EGF) - a type of mitogen and its transmembrane receptor (EGFR), decides the fate of the cell's proliferation. When EGF binds to EGFR, a member of the ErbB family of tyrosine kinase...
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Cadherins in Tissue Organization01:19

Cadherins in Tissue Organization

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The cadherins are a superfamily of cell adhesion molecules comprising over 180 variants, with specific tissues expressing a particular combination of cadherin types. Cadherins generally exhibit homophilic binding; i.e., cadherins on one cell bind to cadherins of the same or closely related type on another cell. Thus, cells of the same type have a specific affinity to bind to each other and sort themselves into clusters to form tissues.
Cell Sorting During Development
Cell sorting plays an...
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相关实验视频

Updated: May 17, 2025

Induction of Mesenchymal-Epithelial Transitions in Sarcoma Cells
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表皮-介质细胞过渡协调瘤微环境:当前的感知和挑战.

Yuqi Xie1, Xuan Wang1,2, Wenquan Wang1,2

  • 1Department of Pancreatic Surgery, Zhongshan Hospital, Fudan University, 180 Fenglin Road, Shanghai, 200032, People's Republic of China.

Journal of translational medicine
|April 2, 2025
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概括

表皮介质转换 (EMT) 通过与瘤微环境 (TME) 相互作用,驱动癌症的入侵和转移. 了解这种复杂的关系是开发新癌症疗法的关键.

关键词:
皮质 - 介质细胞过渡 (EMT)塑性是一种可塑性.瘤微环境 (TME) 是指瘤的微环境.瘤的进展情况.

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Induction and Analysis of Epithelial to Mesenchymal Transition
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相关实验视频

Last Updated: May 17, 2025

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Studying TGF-β Signaling and TGF-β-induced Epithelial-to-mesenchymal Transition in Breast Cancer and Normal Cells
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科学领域:

  • 在瘤学瘤学.
  • 细胞生物学 细胞生物学
  • 癌症研究 癌症研究

背景情况:

  • 表皮-介质细胞过渡 (EMT) 是癌细胞劫持的关键发育过程,以获得侵入性和迁移性.
  • 瘤微环境 (TME) 信号启动EMT,反过来,EMT-}癌细胞重塑TME,影响瘤进展和治疗结果.

研究的目的:

  • 审查EMT协调TME动态的复杂机制.
  • 突出针对EMT-TME轴增强癌症治疗的潜力.

主要方法:

  • 文献综述侧重于EMT和TME之间的相互作用.
  • 分子机制的分析,包括分泌的因素,细胞接触,外体,酶和代谢重编程.
  • 检查EMT诱导的分化成与癌症相关的纤维细胞.

主要成果:

  • 通过各种分泌因子,直接相互作用和代谢变化,EMT细胞积极重塑TME.
  • EMT可以导致癌细胞分化为与癌症相关的纤维细胞,将其整合到TME中.
  • 在EMT和TME之间的双向通信显著影响瘤进展和治疗反应.

结论:

  • 阐明EMT-TME关系为癌症治疗提供了新的治疗策略.
  • 定位EMT具有治疗前景,但复杂性和上下文依赖性需要进一步的机制研究和临床验证.