Keyphrases
Angiogenic
100%
Estradiol
100%
Collagen Scaffold
100%
Endometrial Epithelial Cells
100%
Endogenous Estradiol
100%
Biomaterials
50%
Angiogenesis
50%
Endothelial Cells
50%
Collagen Biomaterials
50%
Endometrium
50%
Three-dimensional (3D)
25%
Dose Effect
25%
Conditioned Medium
25%
Vasculature
25%
Vascular Network
25%
Regenerative Medicine
25%
Signal Transduction Pathway
25%
Regrowth
25%
Progesterone
25%
Uterus
25%
Biomaterial Design
25%
Medicine Application
25%
Microvasculature
25%
Human Umbilical Vein Endothelial Cells (HUVECs)
25%
Endothelial Cell Culture
25%
Functional Change
25%
Cell Signaling Pathways
25%
Nutrient Transport
25%
Dynamic Action
25%
Rapid Growth
25%
Covalent Immobilization
25%
Combined Response
25%
Non-pathogenic
25%
Design Scheme
25%
Embryo Implantation
25%
Individual Response
25%
Pathological Model
25%
Co-culture Experiments
25%
Antiangiogenic Factors
25%
Immunology and Microbiology
Angiogenesis
100%
Coculture
100%
Endometrium
100%
Angiogenic Factor
50%
Vascularization
50%
Vasculotropin
50%
Umbilical Vein Endothelial Cell
50%
Microvasculature
50%
Nidation
50%
Medicine and Dentistry
Epithelial Cell
100%
Diethylstilbestrol
100%
Biocompatible Material
71%
Angiogenesis
28%
Endothelial Cell
28%
Endometrium
28%
Medicine
14%
Vasculotropin
14%
Vascularity
14%
Vascular Network
14%
Angiogenic Factor
14%
Microvessel
14%
Human Umbilical Vein Endothelial Cell
14%
Antiangiogenic
14%
Nidation
14%
Progesterone
14%
Minoxidil
14%
Cell Transduction
14%
Agricultural and Biological Sciences
Epithelial Cells
100%
Estradiol
100%
Biocompatible Material
71%
Endothelial Cells
28%
Coculture
28%
Endometrium
28%
Angiogenesis
28%
Human Umbilical Vein Endothelial Cell
14%
Vascular Network
14%
Embryo Implantation
14%
Regenerative Medicine
14%
Progesterone
14%
Regrowth
14%
Vascular Endothelial Growth Factor
14%
Nutrient Transport
14%
Biochemistry, Genetics and Molecular Biology
Estradiol
100%
Coculture
28%
Angiogenesis
28%
Endometrium
28%
Progesterone
14%
Vascularization
14%
Vascular Endothelial Growth Factor
14%
Nidation
14%