The human endometrium is a highly regenerative organ undergoing over 400 cycles of shedding and regeneration over a woman’s lifetime. Menstrual shedding and the subsequent repair of the functional layer of the endometrium is a process unique to humans and higher-order primates. This massive regenerative capacity is thought to have a stem cell basis, with human endometrial stromal stem cells having already been extensively studied. Studies on endometrial epithelial stem cells are sparse, and the current belief is that the endometrial epithelial stem cells reside in the terminal ends of the basalis glands at the endometrial/myometrial interface. Since almost all endometrial pathologies are thought to originate from aberrations in stem c...
PURPOSE OF REVIEW: The human endometrium is a dynamic tissue, which undergoes cycles of growth and r...
The human endometrium has cycles of growth, differentiation, and regeneration. In that respect, the ...
BACKGROUND: Human endometrium is a highly regenerative tissue. We hypothesized that the source of en...
The human endometrium is a highly regenerative organ undergoing over 400 cycles of shedding and rege...
BACKGROUND: The human endometrium undergoes cyclical regeneration throughout a woman's reproductive ...
Regular menstrual shedding and repair of the endometrial functionalis is unique to humans and higher...
Regular menstrual shedding and repair of the endometrial functionalis is unique to humans and higher...
PubMed ID: 26314416Endometriosis is a common chronic gynecological disease that is classically defin...
Human endometrium is a highly regenerative tissue, under going more than 400 cycles of proliferation...
The human endometrium undergoes cyclical regeneration throughout a woman's reproductive life. Ectopi...
The human endometrium is a dynamic tissue that undergoes cycles of growth and regression with each m...
Human endometrium is a dynamic tissue that responds to the circulating ovarian steroid hormones estr...
Human endometrium is a highly regenerative tissue, under going more than 400 cycles of proliferation...
Background: The human endometrium undergoes cyclical regeneration throughout a woman’s reproductive ...
Human endometrium undergoes cyclic tissue breakdown and regeneration throughout a woman of reproduct...
PURPOSE OF REVIEW: The human endometrium is a dynamic tissue, which undergoes cycles of growth and r...
The human endometrium has cycles of growth, differentiation, and regeneration. In that respect, the ...
BACKGROUND: Human endometrium is a highly regenerative tissue. We hypothesized that the source of en...
The human endometrium is a highly regenerative organ undergoing over 400 cycles of shedding and rege...
BACKGROUND: The human endometrium undergoes cyclical regeneration throughout a woman's reproductive ...
Regular menstrual shedding and repair of the endometrial functionalis is unique to humans and higher...
Regular menstrual shedding and repair of the endometrial functionalis is unique to humans and higher...
PubMed ID: 26314416Endometriosis is a common chronic gynecological disease that is classically defin...
Human endometrium is a highly regenerative tissue, under going more than 400 cycles of proliferation...
The human endometrium undergoes cyclical regeneration throughout a woman's reproductive life. Ectopi...
The human endometrium is a dynamic tissue that undergoes cycles of growth and regression with each m...
Human endometrium is a dynamic tissue that responds to the circulating ovarian steroid hormones estr...
Human endometrium is a highly regenerative tissue, under going more than 400 cycles of proliferation...
Background: The human endometrium undergoes cyclical regeneration throughout a woman’s reproductive ...
Human endometrium undergoes cyclic tissue breakdown and regeneration throughout a woman of reproduct...
PURPOSE OF REVIEW: The human endometrium is a dynamic tissue, which undergoes cycles of growth and r...
The human endometrium has cycles of growth, differentiation, and regeneration. In that respect, the ...
BACKGROUND: Human endometrium is a highly regenerative tissue. We hypothesized that the source of en...