[[abstract]]Mechanical forces induced by interstitial fluid flow in and surrounding tissues and by blood/lymphatic flow in vessels may modulate cancer cell invasion and metastasis and anticancer drug delivery. Our previous study demonstrated that laminar flow-induced shear stress induces G2/M arrest in tumor cells. However, whether shear stress modulates final cell fate remains unclear. In this study, we investigated the role of flow-induced shear stress in modulating the survival of four human tumor cell lines, i.e., Hep3B hepatocarcinoma cells, MG63 osteosarcoma cells, SCC25 oral squamous carcinoma cells, and A549 carcinomic alveolar basal epithelial cells. Laminar shear stress (LSS) ranging from 0.5 to 12dyn/cm2 induced death of these fo...
AbstractObjectiveTo investigate the molecular mechanisms of laminar shear stress on inhibition of ap...
[[abstract]]Introduction: Interstitial fluid flow plays important role in delivering anticancer agen...
Abstract Background Epithelial-mesenchymal transition (EMT) occurs in the tumor microenvironment and...
[[abstract]]Mechanical forces induced by interstitial fluid flow in and surrounding tissues and by b...
AbstractMechanical forces induced by interstitial fluid flow in and surrounding tissues and by blood...
[[abstract]]interstitial flow in and around tumor tissue affects the mechanical microenvironment to ...
[[abstract]]Fluid shear stress plays important roles in proliferation and differentiation of bone ce...
Cancer metastasis is characterized by the uncontrolled cell proliferation, spreading of carcinoma ce...
Tumor cells metastasizing through the bloodstream or lymphatic systems must withstand acute shear st...
Fluid shear stress (FSS) regulates the metastasis of hepatocellular carcinoma (HCC), but the role of...
Abstract Cancer cells in secondary tumors are found to form metastases more efficiently as compared ...
AbstractPhysiological levels of shear stress alter the genetic program of cultured endothelial cells...
Metastasis has been observed to be an inefficient process, but a consensus has not been reached as t...
Abstract When circulating tumor cells (CTCs) travel in circulation, they can be killed by detachment...
Endothelial cells are the interface between hemodynamic fluid flow and vascular tissue contact. They...
AbstractObjectiveTo investigate the molecular mechanisms of laminar shear stress on inhibition of ap...
[[abstract]]Introduction: Interstitial fluid flow plays important role in delivering anticancer agen...
Abstract Background Epithelial-mesenchymal transition (EMT) occurs in the tumor microenvironment and...
[[abstract]]Mechanical forces induced by interstitial fluid flow in and surrounding tissues and by b...
AbstractMechanical forces induced by interstitial fluid flow in and surrounding tissues and by blood...
[[abstract]]interstitial flow in and around tumor tissue affects the mechanical microenvironment to ...
[[abstract]]Fluid shear stress plays important roles in proliferation and differentiation of bone ce...
Cancer metastasis is characterized by the uncontrolled cell proliferation, spreading of carcinoma ce...
Tumor cells metastasizing through the bloodstream or lymphatic systems must withstand acute shear st...
Fluid shear stress (FSS) regulates the metastasis of hepatocellular carcinoma (HCC), but the role of...
Abstract Cancer cells in secondary tumors are found to form metastases more efficiently as compared ...
AbstractPhysiological levels of shear stress alter the genetic program of cultured endothelial cells...
Metastasis has been observed to be an inefficient process, but a consensus has not been reached as t...
Abstract When circulating tumor cells (CTCs) travel in circulation, they can be killed by detachment...
Endothelial cells are the interface between hemodynamic fluid flow and vascular tissue contact. They...
AbstractObjectiveTo investigate the molecular mechanisms of laminar shear stress on inhibition of ap...
[[abstract]]Introduction: Interstitial fluid flow plays important role in delivering anticancer agen...
Abstract Background Epithelial-mesenchymal transition (EMT) occurs in the tumor microenvironment and...