OBJECTIVESThe embryonic stem cell (ESC) self-renewal gene Nanog has been shown to be expressed in several tumor types and to regulate tumor development. The aim of this study was to perform a detailed analysis of Nanog expression in human endometrial adenocarcinoma (EAC).METHODSImmunohistochemical analysis and reverse transcriptase-polymerase chain reaction (RT-PCR) were used to characterize Nanog, Sox2, and Oct4 expression in tissue arrays containing EAC, benign endometrium samples, and tumorosphere cells. Tumorosphere formation of EAC-derived cells in stem cell culture medium was also analyzed. Nanog expression was then analyzed in secondary tumors initiated by injection of tumorospheres or tumorosphere-derived differentiated cells into f...
AbstractEmbryonic stem (ES) cells undergo extended proliferation while remaining poised for multilin...
This study aimed to characterize endometrial cancer regarding cancer stem cells (CSC) markers, regul...
NANOG is a transcription factor that functions as a central regulator of pluripotency and determines...
There is an accumulation of evidence that shows a significant role of cancer stem cells in tumor ini...
Poster Session 14 - PO.TB02.05: Cancer Stem Cell Biology 1: abstract no. 4233Introduction: Ovarian c...
Dept. of Medicine/석사NANOG, a key transcription factor in embryonic stem cell self-renewal and plurip...
BACKGROUND: Ovarian cancer stem cells (OCSCs) contribute to the poor prognosis of ovarian cancer. In...
Background: Cancer cells have properties similar to those of stem cells, including high proliferatio...
Ovarian cancer is the most lethal of all gynecological malignancies, and the identification of novel...
Accumulating evidence demonstrated that NANOG1, the key transcription factor for embryonic stem cell...
Background: Any irregularities in self-renewal/differentiation balance� in endometriotic MSCs can ...
OBJECTIVE: The objective of this study was to evaluate the prognostic significance of NANOG expressi...
Mong-Lien Wang,1 Shih-Hwa Chiou,2,3 Cheng-Wen Wu1,4–61Institute of Biochemistry and Molecular ...
Abstract Background Ovarian cancer stem cells (OCSCs) contribute to the poor prognosis of ovarian ca...
Nanog, an important transcription factor in embryonic stem cells (ESC), is the key factor in maintai...
AbstractEmbryonic stem (ES) cells undergo extended proliferation while remaining poised for multilin...
This study aimed to characterize endometrial cancer regarding cancer stem cells (CSC) markers, regul...
NANOG is a transcription factor that functions as a central regulator of pluripotency and determines...
There is an accumulation of evidence that shows a significant role of cancer stem cells in tumor ini...
Poster Session 14 - PO.TB02.05: Cancer Stem Cell Biology 1: abstract no. 4233Introduction: Ovarian c...
Dept. of Medicine/석사NANOG, a key transcription factor in embryonic stem cell self-renewal and plurip...
BACKGROUND: Ovarian cancer stem cells (OCSCs) contribute to the poor prognosis of ovarian cancer. In...
Background: Cancer cells have properties similar to those of stem cells, including high proliferatio...
Ovarian cancer is the most lethal of all gynecological malignancies, and the identification of novel...
Accumulating evidence demonstrated that NANOG1, the key transcription factor for embryonic stem cell...
Background: Any irregularities in self-renewal/differentiation balance� in endometriotic MSCs can ...
OBJECTIVE: The objective of this study was to evaluate the prognostic significance of NANOG expressi...
Mong-Lien Wang,1 Shih-Hwa Chiou,2,3 Cheng-Wen Wu1,4–61Institute of Biochemistry and Molecular ...
Abstract Background Ovarian cancer stem cells (OCSCs) contribute to the poor prognosis of ovarian ca...
Nanog, an important transcription factor in embryonic stem cells (ESC), is the key factor in maintai...
AbstractEmbryonic stem (ES) cells undergo extended proliferation while remaining poised for multilin...
This study aimed to characterize endometrial cancer regarding cancer stem cells (CSC) markers, regul...
NANOG is a transcription factor that functions as a central regulator of pluripotency and determines...