During metastasis, cancer cells enter the circulation in order to gain access to distant tissues, but how this fluid microenvironment influences cancer cell biology is poorly understood. A longstanding view is that circulating cancer cells derived from solid tissues may be susceptible to damage from hemodynamic shear forces, contributing to metastatic inefficiency. Here we report that compared to non-transformed epithelial cells, transformed cells are remarkably resistant to fluid shear stress (FSS) in a microfluidic protocol, exhibiting a biphasic decrease in viability when subjected to a series of millisecond pulses of high FSS. We show that magnitude of FSS resistance is influenced by several oncogenes, is an adaptive and transient respo...
<p>A. A panel of transformed and normal epithelial and blood cells was compared for survival after 1...
Besides the internal genetic content and the chemical exchanges with external tissue environment, th...
Cancer metastasis is responsible for approximately 90% human cancer-related death. It involves a se...
<div><p>During metastasis, cancer cells enter the circulation in order to gain access to distant tis...
During metastasis, cancer cells are exposed to potentially destructive hemodynamic forces inclu...
The ability of a cancer cell to relocate to a distal location and subsequently form tumours largely ...
Metastasis is responsible for at least 66% of cancer-related deaths, yet it remains a poorly underst...
Metastasis has been observed to be an inefficient process, but a consensus has not been reached as t...
During cancer metastasis, circulating tumor cells constantly experience hemodynamic shear stress in ...
Venkat Keshav Chivukula,1 Benjamin L Krog,1,2 Jones T Nauseef,2 Michael D Henry,2 Sarah C Vigmostad1...
Circulating tumor cells (CTCs) are the primary targets of cancer treatment as they cause distal meta...
<div><p>Ovarian cancer cells are exposed to physical stress in the peritoneal cavity during both tum...
Ovarian cancer cells are exposed to physical stress in the peritoneal cavity during both tumor growt...
Cancer cells are shed into the blood stream and are exposed to hemodynamic shear stress during metas...
Biochemical and physical factors affect the rolling of tumor cells across the blood vessel. The bioc...
<p>A. A panel of transformed and normal epithelial and blood cells was compared for survival after 1...
Besides the internal genetic content and the chemical exchanges with external tissue environment, th...
Cancer metastasis is responsible for approximately 90% human cancer-related death. It involves a se...
<div><p>During metastasis, cancer cells enter the circulation in order to gain access to distant tis...
During metastasis, cancer cells are exposed to potentially destructive hemodynamic forces inclu...
The ability of a cancer cell to relocate to a distal location and subsequently form tumours largely ...
Metastasis is responsible for at least 66% of cancer-related deaths, yet it remains a poorly underst...
Metastasis has been observed to be an inefficient process, but a consensus has not been reached as t...
During cancer metastasis, circulating tumor cells constantly experience hemodynamic shear stress in ...
Venkat Keshav Chivukula,1 Benjamin L Krog,1,2 Jones T Nauseef,2 Michael D Henry,2 Sarah C Vigmostad1...
Circulating tumor cells (CTCs) are the primary targets of cancer treatment as they cause distal meta...
<div><p>Ovarian cancer cells are exposed to physical stress in the peritoneal cavity during both tum...
Ovarian cancer cells are exposed to physical stress in the peritoneal cavity during both tumor growt...
Cancer cells are shed into the blood stream and are exposed to hemodynamic shear stress during metas...
Biochemical and physical factors affect the rolling of tumor cells across the blood vessel. The bioc...
<p>A. A panel of transformed and normal epithelial and blood cells was compared for survival after 1...
Besides the internal genetic content and the chemical exchanges with external tissue environment, th...
Cancer metastasis is responsible for approximately 90% human cancer-related death. It involves a se...