Nutrient transport remains a major limitation in the design of biomaterials. One approach to overcome this constraint is to incorporate features to induce angiogenesis-mediated microvasculature formation. Angiogenesis requires a temporal presentation of both pro- and anti-angiogenic factors to achieve stable vasculature, leading to increasingly complex biomaterial design scheme. The endometrium, the lining of the uterus and site of embryo implantation, exemplifies a non-pathological model of rapid growth, shedding, and re-growth of dense vascular networks regulated by the dynamic actions of estradiol and progesterone. In this study, we examined the individual and combined response of endometrial epithelial cells and human umbilical vein end...
Delivery of genetically modified cells overexpressing Vascular Endothelial Growth Factor (VEGF) is a...
Endometrial stromal and epithelial cell function is typically studied in vitro using standard two-di...
Current tissue engineering strategies lack materials that promote angiogenesis. Here the authors dev...
Nutrient transport remains a major limitation in the design of biomaterials. One approach to overcom...
BACKGROUND: We recently showed that vascular endothelial growth factor (VEGF) expression by endometr...
Objective: Successful implantation and placentation depend on the interaction between the endometriu...
For regenerative medicine applications, a common limitation to biomaterial cultures and implants is ...
The endometrium is the secretory lining of the uterus that undergoes dynamic changes throughout the ...
The human endometrium is a complex tissue comprised of different cell types, including epithelial, s...
The endometrium is the inner lining of the uterus. Following specific cyclic hormonal stimulation, e...
The human endometrium undergoes dramatic changes in morphology and function during the menstrual cyc...
Delivery of genetically modified cells overexpressing Vascular Endothelial Growth Factor (VEGF) is a...
The endometrium is the inner lining of the uterus. Following specific cyclic hormonal stimulation, e...
Background: Because angiogenesis is a major feature of different physiological and pathological situ...
Endometrial angiogenesis is not well studied, but has potential as a model for studies of physiologi...
Delivery of genetically modified cells overexpressing Vascular Endothelial Growth Factor (VEGF) is a...
Endometrial stromal and epithelial cell function is typically studied in vitro using standard two-di...
Current tissue engineering strategies lack materials that promote angiogenesis. Here the authors dev...
Nutrient transport remains a major limitation in the design of biomaterials. One approach to overcom...
BACKGROUND: We recently showed that vascular endothelial growth factor (VEGF) expression by endometr...
Objective: Successful implantation and placentation depend on the interaction between the endometriu...
For regenerative medicine applications, a common limitation to biomaterial cultures and implants is ...
The endometrium is the secretory lining of the uterus that undergoes dynamic changes throughout the ...
The human endometrium is a complex tissue comprised of different cell types, including epithelial, s...
The endometrium is the inner lining of the uterus. Following specific cyclic hormonal stimulation, e...
The human endometrium undergoes dramatic changes in morphology and function during the menstrual cyc...
Delivery of genetically modified cells overexpressing Vascular Endothelial Growth Factor (VEGF) is a...
The endometrium is the inner lining of the uterus. Following specific cyclic hormonal stimulation, e...
Background: Because angiogenesis is a major feature of different physiological and pathological situ...
Endometrial angiogenesis is not well studied, but has potential as a model for studies of physiologi...
Delivery of genetically modified cells overexpressing Vascular Endothelial Growth Factor (VEGF) is a...
Endometrial stromal and epithelial cell function is typically studied in vitro using standard two-di...
Current tissue engineering strategies lack materials that promote angiogenesis. Here the authors dev...