Role of the mechanical microenvironment in cancer development and progression

Cross-talk between tumor cells and mechanical stress in the tumor microenvironment has been shown to be involved in carcinogenesis. High mechanical stress in tumors can alter the metabolism and behaviors of cancer cells and cause cancer cells to attain cancer stem-like cell properties, thus driving...

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Vydané v:Cancer biology & medicine Ročník 17; číslo 2; s. 282 - 292
Hlavní autori: Liu, Qiuping, Luo, Qing, Ju, Yang, Song, Guanbin
Médium: Journal Article
Jazyk:English
Vydavateľské údaje: China Chinese Anti-Cancer Association (CACA), Cancer Biology & Medicine 15.05.2020
Key Laboratory of Biorheological Science and Technology, Ministry of Education, College of Bioengineering, Chongqing University, Chongqing 400030, China%Department of Mechanical Science and Engineering, Nagoya University, Nagoya 464-8603, Japan
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China Anti-Cancer Association
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Abstract Cross-talk between tumor cells and mechanical stress in the tumor microenvironment has been shown to be involved in carcinogenesis. High mechanical stress in tumors can alter the metabolism and behaviors of cancer cells and cause cancer cells to attain cancer stem-like cell properties, thus driving tumor progression and promoting metastasis. The mechanical signal is converted into a biochemical signal that activates tumorigenic signaling pathways through mechanotransduction. Herein, we describe the physical changes occurring during reprogramming of cancer cell metabolism, which regulate cancer stem cell functions and promote tumor progression and aggression. Furthermore, we highlight emerging therapeutic strategies targeting mechanotransduction signaling pathways.
AbstractList Cross-talk between tumor cells and mechanical stress in the tumor microenvironment has been shown to be involved in carcinogenesis. High mechanical stress in tumors can alter the metabolism and behaviors of cancer cells and cause cancer cells to attain cancer stem-like cell properties, thus driving tumor progression and promoting metastasis. The mechanical signal is converted into a biochemical signal that activates tumorigenic signaling pathways through mechanotransduction. Herein, we describe the physical changes occurring during reprogramming of cancer cell metabolism, which regulate cancer stem cell functions and promote tumor progression and aggression. Furthermore, we highlight emerging therapeutic strategies targeting mechanotransduction signaling pathways.
Cross-talk between tumor cells and mechanical stress in the tumor microenvironment has been shown to be involved in carcinogenesis. High mechanical stress in tumors can alter the metabolism and behaviors of cancer cells and cause cancer cells to attain cancer stem-like cell properties, thus driving tumor progression and promoting metastasis. The mechanical signal is converted into a biochemical signal that activates tumorigenic signaling pathways through mechanotransduction. Herein, we describe the physical changes occurring during reprogramming of cancer cell metabolism, which regulate cancer stem cell functions and promote tumor progression and aggression. Furthermore, we highlight emerging therapeutic strategies targeting mechanotransduction signaling pathways.Cross-talk between tumor cells and mechanical stress in the tumor microenvironment has been shown to be involved in carcinogenesis. High mechanical stress in tumors can alter the metabolism and behaviors of cancer cells and cause cancer cells to attain cancer stem-like cell properties, thus driving tumor progression and promoting metastasis. The mechanical signal is converted into a biochemical signal that activates tumorigenic signaling pathways through mechanotransduction. Herein, we describe the physical changes occurring during reprogramming of cancer cell metabolism, which regulate cancer stem cell functions and promote tumor progression and aggression. Furthermore, we highlight emerging therapeutic strategies targeting mechanotransduction signaling pathways.
Author Ju, Yang
Song, Guanbin
Liu, Qiuping
Luo, Qing
AuthorAffiliation Key Laboratory of Biorheological Science and Technology, Ministry of Education, College of Bioengineering, Chongqing University, Chongqing 400030, China%Department of Mechanical Science and Engineering, Nagoya University, Nagoya 464-8603, Japan
AuthorAffiliation_xml – name: Key Laboratory of Biorheological Science and Technology, Ministry of Education, College of Bioengineering, Chongqing University, Chongqing 400030, China%Department of Mechanical Science and Engineering, Nagoya University, Nagoya 464-8603, Japan
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/32587769$$D View this record in MEDLINE/PubMed
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Keywords Cancer stem cell
cell metabolism
tumor progression
mechanical force
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Snippet Cross-talk between tumor cells and mechanical stress in the tumor microenvironment has been shown to be involved in carcinogenesis. High mechanical stress in...
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SubjectTerms Breast cancer
Cancer
cancer stem cell
Cancer therapies
Carcinogenesis
Cell adhesion & migration
Cell growth
cell metabolism
Fibroblasts
Gastric cancer
Hypoxia
Liver
mechanical force
Mechanotransduction
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Phosphorylation
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Roles
Signal transduction
Stem cells
Tumor cells
tumor progression
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Tumors
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