The apparent lack of classical mechanisms for maternal recognition of pregnancy is one of the most intriguing features of canine reproduction. Consequently, similar levels of circulating luteal steroids are observed in pregnant and non-pregnant dogs. However, the early pre-implantation canine embryo locally modulates uterine responses to its presence, facilitating the successful onset of pregnancy. As a part of this interaction, the canine uterus undergoes a species-specific decidualization. Maternal stroma-derived decidual cells develop, the only cells of the canine placenta expressing progesterone receptor (PGR). There exists an acute need for an in vitro stable cell line model for canine decidualization. Therefore, herein our goal was to...
Graduation date: 2012This research investigated the development of a novel canine model to study pre...
In the dog, there is no luteolysis in the absence of pregnancy. Thus, this species lacks any anti-lu...
In the dog, there is no luteolysis in the absence of pregnancy. Thus, this species lacks any anti-lu...
The apparent lack of classical mechanisms for maternal recognition of pregnancy is one of the most i...
The apparent lack of classical mechanisms for maternal recognition of pregnancy is one of the most i...
Background: The uterine response to the presence of embryos is poorly understood in the domestic dog...
Feto-maternal communication in the dog involves the differentiation of stromal cells into decidual c...
Maternal-stroma derived decidual cells, the only cell population in the canine placenta expressing t...
Recently, we established an in vitro model with immortalized dog uterine stromal (DUS) cells for inv...
Among domestic animal species, the reproductive biology of the dog belongs to the most peculiar. Thi...
Although similar at the molecular and cellular levels, endocrine mechanisms governing reproductive f...
In the domestic dog, placentation arises from central implantation, passing through a transitional, ...
BACKGROUND: In the non-pregnant dog, ovarian cyclicity is independent of a uterine luteolysin. This ...
Although similar at the molecular and cellular levels, endocrine mechanisms governing reproductive f...
Although similar at the molecular and cellular levels, endocrine mechanisms governing reproductive f...
Graduation date: 2012This research investigated the development of a novel canine model to study pre...
In the dog, there is no luteolysis in the absence of pregnancy. Thus, this species lacks any anti-lu...
In the dog, there is no luteolysis in the absence of pregnancy. Thus, this species lacks any anti-lu...
The apparent lack of classical mechanisms for maternal recognition of pregnancy is one of the most i...
The apparent lack of classical mechanisms for maternal recognition of pregnancy is one of the most i...
Background: The uterine response to the presence of embryos is poorly understood in the domestic dog...
Feto-maternal communication in the dog involves the differentiation of stromal cells into decidual c...
Maternal-stroma derived decidual cells, the only cell population in the canine placenta expressing t...
Recently, we established an in vitro model with immortalized dog uterine stromal (DUS) cells for inv...
Among domestic animal species, the reproductive biology of the dog belongs to the most peculiar. Thi...
Although similar at the molecular and cellular levels, endocrine mechanisms governing reproductive f...
In the domestic dog, placentation arises from central implantation, passing through a transitional, ...
BACKGROUND: In the non-pregnant dog, ovarian cyclicity is independent of a uterine luteolysin. This ...
Although similar at the molecular and cellular levels, endocrine mechanisms governing reproductive f...
Although similar at the molecular and cellular levels, endocrine mechanisms governing reproductive f...
Graduation date: 2012This research investigated the development of a novel canine model to study pre...
In the dog, there is no luteolysis in the absence of pregnancy. Thus, this species lacks any anti-lu...
In the dog, there is no luteolysis in the absence of pregnancy. Thus, this species lacks any anti-lu...