The successful treatment of cancer is hampered by drug resistance and metastasis. While these two obstacles were once considered separately, recent evidence associates resistance with an enhanced metastatic capacity. However, the underlying mechanisms remain undefined. We previously described the intercellular transfer of drug resistance via submicron vesicles called microparticles (MPs). We now propose that MPs derived from drug-resistant cells are also involved in the intercellular transfer of components to enhance the migration and invasion capacity of cells. Thus, MPs may be a conduit between resistance and metastasis. We used microarray analysis to identify regulatory microRNAs (miRNAs), which contribute to the dissemination of metasta...
Drug resistance is a major obstacle to the successful treatment of cancer as tumor cells either fail...
© 2015 . Once thought of as inert remnants of cellular processes, the significance of membrane vesic...
The hypothesis that microvesicle (MV)-mediated microRNA transfer converts non-cancer stem cells into...
BACKGROUND: Microparticles (MPs) are membrane vesicles which are released from normal and malignant ...
Microparticles (MPs) play a vital role in cell communication by facilitating the horizontal transfer...
Multidrug resistance (MDR) continues to be a major impediment to the successful treatment of cancer....
University of Technology Sydney. Graduate School of Health.Multidrug resistance (MDR) persists to be...
Background: Microparticles (MPs) are membrane vesicles which are released from normal and malignant ...
© 2014 Deep Pokharel et al. Cancer multidrug resistance (MDR) occurswhen cancer cells evade the cyto...
Microparticles (MPs) play a vital role in cell communication by facilitating the horizontal transfer...
Microparticles (MPs) play a vital role in cell communication by facilitating the horizontal transfer...
Drug resistance is a major cause of cancer treatment failure, with multidrug resistance (MDR) being ...
MicroRNAs (miRNAs) are short, noncoding RNA molecules that regulate the expression of a number of ge...
Despite recent advances, cancer remains a leading cause of death worldwide. In developed countries, ...
Despite recent advances, cancer remains a leading cause of death worldwide. In developed countries, ...
Drug resistance is a major obstacle to the successful treatment of cancer as tumor cells either fail...
© 2015 . Once thought of as inert remnants of cellular processes, the significance of membrane vesic...
The hypothesis that microvesicle (MV)-mediated microRNA transfer converts non-cancer stem cells into...
BACKGROUND: Microparticles (MPs) are membrane vesicles which are released from normal and malignant ...
Microparticles (MPs) play a vital role in cell communication by facilitating the horizontal transfer...
Multidrug resistance (MDR) continues to be a major impediment to the successful treatment of cancer....
University of Technology Sydney. Graduate School of Health.Multidrug resistance (MDR) persists to be...
Background: Microparticles (MPs) are membrane vesicles which are released from normal and malignant ...
© 2014 Deep Pokharel et al. Cancer multidrug resistance (MDR) occurswhen cancer cells evade the cyto...
Microparticles (MPs) play a vital role in cell communication by facilitating the horizontal transfer...
Microparticles (MPs) play a vital role in cell communication by facilitating the horizontal transfer...
Drug resistance is a major cause of cancer treatment failure, with multidrug resistance (MDR) being ...
MicroRNAs (miRNAs) are short, noncoding RNA molecules that regulate the expression of a number of ge...
Despite recent advances, cancer remains a leading cause of death worldwide. In developed countries, ...
Despite recent advances, cancer remains a leading cause of death worldwide. In developed countries, ...
Drug resistance is a major obstacle to the successful treatment of cancer as tumor cells either fail...
© 2015 . Once thought of as inert remnants of cellular processes, the significance of membrane vesic...
The hypothesis that microvesicle (MV)-mediated microRNA transfer converts non-cancer stem cells into...