The human endometrium prepares for implantation of the blastocyst by reorganization of its whole cellular network. Endometrial stroma cells change their phenotype starting around the 23rd day of the menstrual cycle. These predecidual stroma cells first appear next to spiral arteries, and after implantation these cells further differentiate into decidual stroma cells. The phenotypical changes in these cells during decidualization are characterized by distinct changes in the actin filaments and filament-related proteins such as α-actinin. The carboxyterminal LIM domain protein with a molecular weight of 36 kDa (CLP36) is a cytoskeletal component that has been shown to associate with contractile actin filaments and to bind to α-act...
The uterus has the unique ability to undergo morphological and functional changes in different biolo...
Decidualization is essential to the establishment of pregnancy in rodents and primates. Laminin A5 (...
When abundant and activated, matrix metalloproteinases (MMPs, or matrixins) degrade most, if not all...
The human endometrium prepares for implantation of the blastocyst by reorganization of its whole cel...
The human endometrium prepares for implantation of the blastocyst by reorganization of its whole cel...
The human endometrium prepares for implantation of the blastocyst by reorganization of its whole cel...
The human endometrium prepares for implantation of the blastocyst by reorganization of its whole cel...
Decidualization involves the proliferation and differentiation of fibroblast-like endometrial stroma...
Abstract Background Decidualization of the human endometrium, which involves a dramatic morphologica...
During early pregnancy the endometrium undergoes a major transformation in order for it to become re...
<div><p>Inadequate or inappropriate implantation and placentation during the establishment of human ...
The differentiation of uterine stromal fibroblasts into decidual cells is critical for establishing ...
Inadequate or inappropriate implantation and placentation during the establishment of human pregnanc...
Inadequate or inappropriate implantation and placentation during the establishment of human pregnanc...
Inadequate or inappropriate implantation and placentation during the establishment of human pregnanc...
The uterus has the unique ability to undergo morphological and functional changes in different biolo...
Decidualization is essential to the establishment of pregnancy in rodents and primates. Laminin A5 (...
When abundant and activated, matrix metalloproteinases (MMPs, or matrixins) degrade most, if not all...
The human endometrium prepares for implantation of the blastocyst by reorganization of its whole cel...
The human endometrium prepares for implantation of the blastocyst by reorganization of its whole cel...
The human endometrium prepares for implantation of the blastocyst by reorganization of its whole cel...
The human endometrium prepares for implantation of the blastocyst by reorganization of its whole cel...
Decidualization involves the proliferation and differentiation of fibroblast-like endometrial stroma...
Abstract Background Decidualization of the human endometrium, which involves a dramatic morphologica...
During early pregnancy the endometrium undergoes a major transformation in order for it to become re...
<div><p>Inadequate or inappropriate implantation and placentation during the establishment of human ...
The differentiation of uterine stromal fibroblasts into decidual cells is critical for establishing ...
Inadequate or inappropriate implantation and placentation during the establishment of human pregnanc...
Inadequate or inappropriate implantation and placentation during the establishment of human pregnanc...
Inadequate or inappropriate implantation and placentation during the establishment of human pregnanc...
The uterus has the unique ability to undergo morphological and functional changes in different biolo...
Decidualization is essential to the establishment of pregnancy in rodents and primates. Laminin A5 (...
When abundant and activated, matrix metalloproteinases (MMPs, or matrixins) degrade most, if not all...