Area of research
Genetics · Endocrinology, Diabetes and Metabolism
Research interest
Research interests include Estrogen, Angiogenesis, Internal medicine, Chemokine, Estrogen receptor, and Biology.
Sex and sex steroids as determinants of cardiovascular risk
Fentanyl enhances immune cell response through TLR4/MD-2 complex
Gender differences and pharmacological regulation of angiogenesis induced by synovial fluids in inflammatory arthritis
Clinical efficacy and safety of angiogenesis inhibitors: sex differences and current challenges
Sex Differences in the Pro-Angiogenic Response of Human Endothelial Cells: Focus on PFKFB3 and FAK Activation
Non‐genomic mechanisms in the estrogen regulation of glycolytic protein levels in endothelial cells
Activation profiles of monocyte-macrophages and HDL function in healthy women in relation to menstrual cycle and in polycystic ovary syndrome patients
Convenience versus Biological Significance: Are PMA-Differentiated THP-1 Cells a Reliable Substitute for Blood-Derived Macrophages When Studying in Vitro Polarization?
Estrogen, Angiogenesis, Immunity and Cell Metabolism: Solving the Puzzle
Self-renewal and phenotypic conversion are the main physiological responses of macrophages to the endogenous estrogen surge
The Glycolytic Enzyme PFKFB3 Is Involved in Estrogen-Mediated Angiogenesis via GPER1
Therapeutic concentrations of digitoxin inhibit endothelial focal adhesion kinase and angiogenesis induced by different growth factors
Inflammatory stimuli induce acyl-CoA thioesterase 7 and remodeling of phospholipids containing unsaturated long (≥C20)-acyl chains in macrophages
Bone Marrow Macrophages Contribute to Diabetic Stem Cell Mobilopathy by Producing Oncostatin M
Increased dietary levels of α-linoleic acid inhibit mammary tumor growth and metastasis
Alternative Activation of Human Macrophages Is Rescued by Estrogen Treatment In Vitro and Impaired by Menopausal Status
Phenotypic activation and pharmacological outcomes of spontaneously differentiated human monocyte-derived macrophages
An unbalanced monocyte polarisation in peripheral blood and bone marrow of patients with type 2 diabetes has an impact on microangiopathy
Macrophage Function and Polarization in Cardiovascular Disease
Prenylated and Geranylated Flavonoids Increase Production of Reactive Oxygen Species in Mouse Macrophages but Inhibit the Inflammatory Response