Epithelial ovarian cancer (EOC) is usually discovered after extensive metastasis have developed in the peritoneal cavity. The ovarian surface is exposed to peritoneal fluid pressures and shear forces due to the continuous peristaltic motions of the gastro-intestinal system, creating a mechanical micro-environment for the cells. An in vitro experimental model was developed to expose EOC cells to steady fluid flow induced wall shear stresses (WSS). The EOC cells were cultured from OVCAR-3 cell line on denuded amniotic membranes in special wells. Wall shear stresses of 0.5, 1.0 and 1.5 dyne/cm2 were applied on the surface of the cells under conditions that mimic the physiological environment, followed by fluorescent stains of actin and b-tubul...
Unlike most epithelial malignancies which metastasize hematogenously, metastasis of epithelial ovari...
Breast cancer cells experience a range of shear stresses in the tumor microenvironment (TME). Howeve...
Besides the internal genetic content and the chemical exchanges with external tissue environment, th...
Epithelial ovarian cancer (EOC) is usually discovered after extensive metastasis have developed in t...
<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...
A key reason for the persistently grim statistics associated with metastatic ovarian cancer is resis...
Epithelial ovarian cancer (EOC) is the most lethal gynecological malignancy. EOC dissemination is pr...
During cancer metastasis, circulating tumor cells constantly experience hemodynamic shear stress in ...
A major obstacle in ovarian cancer treatment is the onset of ascites, an abnormal build-up of fluid ...
Epithelial ovarian cancer (EOC) metastasizes intra-abdominally with often numerous, superficial, sma...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
Shear stress is essential for normal physiology and malignancy. Common physiological processes - suc...
During metastasis, cancer cells enter the circulation in order to gain access to distant tissues, bu...
Cyclic myometrial contractions of the non-pregnant uterus induce intra-uterine peristaltic flows, wh...
Unlike most epithelial malignancies which metastasize hematogenously, metastasis of epithelial ovari...
Breast cancer cells experience a range of shear stresses in the tumor microenvironment (TME). Howeve...
Besides the internal genetic content and the chemical exchanges with external tissue environment, th...
Epithelial ovarian cancer (EOC) is usually discovered after extensive metastasis have developed in t...
<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...
A key reason for the persistently grim statistics associated with metastatic ovarian cancer is resis...
Epithelial ovarian cancer (EOC) is the most lethal gynecological malignancy. EOC dissemination is pr...
During cancer metastasis, circulating tumor cells constantly experience hemodynamic shear stress in ...
A major obstacle in ovarian cancer treatment is the onset of ascites, an abnormal build-up of fluid ...
Epithelial ovarian cancer (EOC) metastasizes intra-abdominally with often numerous, superficial, sma...
International audienceWe present experiments involving cancer cells adhering to microchannels, subje...
Shear stress is essential for normal physiology and malignancy. Common physiological processes - suc...
During metastasis, cancer cells enter the circulation in order to gain access to distant tissues, bu...
Cyclic myometrial contractions of the non-pregnant uterus induce intra-uterine peristaltic flows, wh...
Unlike most epithelial malignancies which metastasize hematogenously, metastasis of epithelial ovari...
Breast cancer cells experience a range of shear stresses in the tumor microenvironment (TME). Howeve...
Besides the internal genetic content and the chemical exchanges with external tissue environment, th...