Related Experiment Video
Updated: Aug 21, 2026

Three-Dimensional Bone Extracellular Matrix Model for Osteosarcoma
Published on: April 12, 2019
Decoding osteosarcoma mechanobiology: PIEZO channels in tumor progression, immune remodeling, and pain
Baicheng Yang1, Zhangfu Li1, Jethro Wang Zih-Shuo2,3,4,5
1Department of Orthopaedics, National Cancer Center/National Clinical Research Center for Cancer/Cancer Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, P. R. China.
Abstract:
Osteosarcoma arises in a mechanically active skeletal environment, but how physical cues shape tumor behavior, immunity, and pain remains poorly defined. This review examines PIEZO1 and PIEZO2 as compartment-specific mechanotransducers and distinguishes direct osteosarcoma evidence from disease-relevant preclinical findings and broader evidence from bone, immune, neural, and pain systems. PIEZO1 is best established in osteoblast-lineage cells and osteocytes, where it regulates bone remodeling and mechanical adaptation; its causal role in human osteosarcoma remains unresolved. In osteosarcoma models, PIEZO1-associated responses to stiffness and strain are linked to invasion, adhesion remodeling, YAP/TAZ signaling, and phenotypic plasticity. PIEZO2 is less well supported as a tumor-cell regulator and is more convincingly positioned in sensory neurons that mediate mechanically evoked bone cancer pain. PIEZO1 may also influence myeloid, dendritic-cell, and T-cell behavior, although this immune axis remains unvalidated in osteosarcoma. These compartment-specific roles expose a mechanotherapeutic paradox: pathways required for skeletal adaptation and repair may also be used by malignant or stromal compartments. Resolving this problem will require spatially resolved human studies, orthotopic immunocompetent models, and cell-type-selective perturbation.
More Related Videos
11:15A Preclinical Mouse Model of Osteosarcoma to Define the Extracellular Vesicle-mediated Communication Between Tumor and Mesenchymal Stem Cells
Published on: May 6, 2018
09:55All-optical Mechanobiology Interrogation of Yes-associated Protein in Human Cancer and Normal Cells using a Multi-functional System
Published on: December 20, 2021
Related Concept Videos
Adaptive Mechanisms in Cancer Cells
Some of the advantages that cancer cells have on normal cells include - enhanced ability to divide without terminally differentiating, induce new blood vessel formation,...
Adaptive Mechanisms in Cancer Cells
Some of the advantages that cancer cells have on normal cells include - enhanced ability to divide without terminally differentiating, induce new blood vessel formation,...
Tumor Progression
Colon cancer is one of the best-documented examples of tumor progression. Early mutation in the APC gene in colon cells causes a small growth on the colon wall called a polyp. With time, this polyp grows into a benign, pre-cancerous tumor. Further...
Tumor Progression
Colon cancer is one of the best-documented examples of tumor progression. Early mutation in the APC gene in colon cells causes a small growth on the colon wall called a polyp. With time, this polyp grows into a benign, pre-cancerous tumor. Further...
Mechanically-gated Ion Channels
mTOR Signaling and Cancer Progression
The mTOR pathway or the...