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Human endometrium mRNA profile assessed by oligonucleotide three-dimensional microarray
(Parthenon Publishing Group, 2007-09-01)
Our purpose, in die present work, was to further comprehend the genetic events underlying the response to steroids of human endometrium from the mRNA as well as protein expression point of view. in order to achieve this ...
PI3K/AKT pathway is altered in the endometriosis patient’s endometrium and presents differences according to severity stage
(Informa Healthcare, 2019-10)
Based on the inflammatory nature and hormone-dependency of endometriosis, PI3K/AKT signaling appears to influence its progression. Could the endometriosis stages be linked to differential changes in PI3K/AKT pathway ...
Physiologic activation of nuclear factor kappa-B in the endometrium during the menstrual cycle is altered in endometriosis patients
(Elsevier, 2012-03)
Objective: To evaluate nuclear factor kappaB (NF-kB) activation and NF-kB–p65 subunit activation, immunolocalization, and expression in the endometrium
of healthy women and endometriosis patients throughout the menstrual ...
Expression of p53, Ki-67, and CD31 proteins in endometrial polyps of postmenopausal women treated with tamoxifen.
(2010-12-01)
This study was undertaken to investigate the expression of p53, Ki-67, and CD31 proteins in endometrial polyps of postmenopausal women treated with tamoxifen (TAM). Postmenopausal women with endometrial polyps treated with ...
Expression of p53, Ki-67, and CD31 proteins in endometrial polyps of postmenopausal women treated with tamoxifen.
(2010-12-01)
This study was undertaken to investigate the expression of p53, Ki-67, and CD31 proteins in endometrial polyps of postmenopausal women treated with tamoxifen (TAM). Postmenopausal women with endometrial polyps treated with ...
Stem cells in endometrium and their role in the pathogenesis of endometriosis
(BLACKWELL SCIENCE PUBL, 2011)
The human endometrium is a dynamic tissue that undergoes cycles of growth and regression with each menstrual cycle. Adult progenitor stem cells are likely responsible for this remarkable regenerative capacity; these same ...