登录

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 homeostasis and favor tumor progression.

Cancer-associated fibroblasts (CAFs)

Fibroblasts produce collagen and are involved in tissue repair. During the natural process of wound healing, fibroblasts are transiently present for the initial healing process. Nevertheless, in cancer, the fibroblasts remain constitutively active so that they can remodel the extracellular matrix, induce angiogenesis, recruit inflammatory cells, and stimulate cancer cell proliferation.

Angiogenesis

Tumor growth is accompanied by active blood vessel growth at the tumor site due to the release of vascular endothelial growth factor or VEGF from the cancer cells and stromal cells. VEGF is an essential growth factor for angiogenesis during tumor progression. Therefore, therapies that can target the synthesis and activity of VEGF or the VEGF receptors in the tumor microenvironment have shown significant improvement in patient survival.

Adipose cells

Hypoxia in adipose or fat tissue is highly pro-inflammatory and promotes tumor formation and maintenance. Additionally, adipose cells secrete more than 50 different cytokines and chemokines that can increase the chances of tumor initiation. Excess adipocytes in the tumor microenvironment can lead to increased blood estrogen, chronic and low-grade inflammation resulting in cancer development.

ECM and tumor microenvironment

An extracellular matrix (ECM) is a dynamic and complex structure that supports tissues and cells. The ECM contains cytokines and growth factors secreted by the tumor and stromal cells. ECM components also include collagens, laminins, fibronectins, proteoglycans, and hyaluronans. The ECM helps tumors in several ways: First, ECM components facilitate angiogenesis by providing nourishment to the stalk cells, the building blocks of new blood vessels. Second, they act as chemoattractants to immune cells to initiate inflammation at tumor sites. Inflammation facilitates rapid cell division and angiogenesis. Third, altered collagen cross-links in the ECM allow tumor cells to escape immune surveillance and metastasize to new locations in the body.

Tumor management strategies must involve effective TME management. Targeting microenvironments can help create a hostile environment for tumor cells that may lead to effective therapy and hence, increase in patient survival.

Tags
Tumor MicroenvironmentCancer associated Fibroblasts CAFsAngiogenesisVEGFAdipose CellsExtracellular Matrix ECMCollagensLamininsFibronectinsProteoglycansHyaluronansInflammationTumor Progression

来自章节 20:

article

Now Playing

20.5 : The Tumor Microenvironment

Cancer

6.2K Views

article

20.1 : 什么是癌症?

Cancer

9.8K Views

article

20.2 : 癌症起源于单个细胞中的体细胞突变

Cancer

11.1K Views

article

20.3 : 肿瘤进展

Cancer

5.9K Views

article

20.4 : 癌细胞的适应性机制

Cancer

5.4K Views

article

20.6 : 转移

Cancer

5.3K Views

article

20.7 : 癌症关键基因 I:原癌基因

Cancer

8.2K Views

article

20.8 : 逆转录病毒诱导癌症的机制

Cancer

4.8K Views

article

20.9 : Ras 基因

Cancer

6.0K Views

article

20.10 : 肿瘤抑制基因功能丧失

Cancer

4.5K Views

article

20.11 : mTOR 信号转导和癌症进展

Cancer

3.6K Views

article

20.12 : 癌症干细胞和肿瘤维持

Cancer

4.5K Views

article

20.13 : 癌症小鼠模型研究

Cancer

5.4K Views

article

20.14 : 防癌

Cancer

5.9K Views

article

20.15 : 癌症治疗

Cancer

7.1K Views

See More

JoVE Logo

政策

使用条款

隐私

科研

教育

关于 JoVE

版权所属 © 2025 MyJoVE 公司版权所有,本公司不涉及任何医疗业务和医疗服务。