BACKGROUND: Acquisition of metabolic alterations has been shown to be essential for the unremitting growth of cancer, yet the relation of such alterations to chemosensitivity has not been investigated. In the present study our aim was to identify the metabolic alterations that are specifically associated with platinum resistance in ovarian cancer. A global metabolic analysis of the A2780 platinum-sensitive and its platinum-resistant derivative C200 ovarian cancer cell line was performed utilizing ultra-high performance liquid chromatography/mass spectroscopy and gas chromatography/mass spectroscopy. Per-metabolite comparisons were made between cell lines and an interpretive analysis was carried out using the Kyoto Encyclopedia of Genes and ...
Predicting patient response to treatment and the onset of chemoresistance are still major challenges...
Over the last few years, metabolomics has come to play an increasingly important part in many fields...
In this study, we characterized the metabolome of the human ovary and identified metabolic alternati...
Emerging drug resistance in epithelial ovarian cancer (EOC) thwarted progress in platinum‑based chem...
Background: Epithelial ovarian cancer is the most lethal gynecological cancer and the high mortality...
OBJECTIVE: Platinum resistance, defined as the lack of response or relapse within six months of plat...
Objective: Ovarian cancer (OvCa) cells that are highly aggressive or possess cancer-stem-like proper...
International audienceBackground: In this era of precision medicine, the deep and comprehensive char...
Ovarian cancer is a devastating disease affecting millions of women worldwide. Initially successful ...
Background: In this era of precision medicine, the deep and comprehensive characterization of tumor ...
High-grade serous ovarian cancer (HGSOC) is the most common and aggressive OC histotype. Although in...
Background: Mass spectrometry-based metabolomics approaches provide an immense opportunity to enhanc...
Resistance to platinum-based chemotherapy represents a major clinical challenge for many tumors, inc...
Using transcriptomic and metabolomic measurements from the NCI60 cell line panel, together with a no...
Using transcriptomic and metabolomic measurements from the NCI60 cell line panel, together with a no...
Predicting patient response to treatment and the onset of chemoresistance are still major challenges...
Over the last few years, metabolomics has come to play an increasingly important part in many fields...
In this study, we characterized the metabolome of the human ovary and identified metabolic alternati...
Emerging drug resistance in epithelial ovarian cancer (EOC) thwarted progress in platinum‑based chem...
Background: Epithelial ovarian cancer is the most lethal gynecological cancer and the high mortality...
OBJECTIVE: Platinum resistance, defined as the lack of response or relapse within six months of plat...
Objective: Ovarian cancer (OvCa) cells that are highly aggressive or possess cancer-stem-like proper...
International audienceBackground: In this era of precision medicine, the deep and comprehensive char...
Ovarian cancer is a devastating disease affecting millions of women worldwide. Initially successful ...
Background: In this era of precision medicine, the deep and comprehensive characterization of tumor ...
High-grade serous ovarian cancer (HGSOC) is the most common and aggressive OC histotype. Although in...
Background: Mass spectrometry-based metabolomics approaches provide an immense opportunity to enhanc...
Resistance to platinum-based chemotherapy represents a major clinical challenge for many tumors, inc...
Using transcriptomic and metabolomic measurements from the NCI60 cell line panel, together with a no...
Using transcriptomic and metabolomic measurements from the NCI60 cell line panel, together with a no...
Predicting patient response to treatment and the onset of chemoresistance are still major challenges...
Over the last few years, metabolomics has come to play an increasingly important part in many fields...
In this study, we characterized the metabolome of the human ovary and identified metabolic alternati...