Excessive release of syncytiotrophoblast extracellular vesicles (STBMs) from the placenta into the maternal circulation may contribute to the systemic inflammation that is characteristic of pre-eclampsia (PE). Other intravascular cells types (platelets, leukocytes, red blood cells [RBCs], and endothelium) may also be activated and release extracellular vesicles (EVs). We developed a multicolor flow cytometry antibody panel to enumerate and phenotype STBMs in relation to other EVs in plasma from nonpregnant (NonP) and normal pregnant (NormP) women, and women with late-onset PE. Nanoparticle tracking analysis (NTA) was used to determine EV size and concentration. In vitro-derived STBMs and EVs from platelets, leukocytes, RBCs, and endothelial...
Background: The placental syncytiotrophoblast releases micro and nanovesicles (STBM), into the mater...
Cellular microparticles are ubiquitously shed from cell membranes or secreted as endocytic vesicles ...
Cellular microparticles are ubiquitously shed from cell membranes or secreted as endocytic vesicles ...
Excessive release of syncytiotrophoblast extracellular vesicles (STBMs) from the placenta into the m...
Excessive release of syncytiotrophoblast vesicles (STBM) from the placenta into the maternal circula...
Excessive release of syncytiotrophoblast vesicles (STBM) from the placenta into the maternal circula...
Dragovic et al. [1] is the first study using multicolor flow cytometry applying directly conjugated ...
AbstractThe release of extracellular vesicles (EV) by the syncytiotrophoblast (STB) may be an import...
The release of extracellular vesicles (EV) by the syncytiotrophoblast (STB) may be an important mech...
Background: Pre-eclampsia (P-EC) is associated with systemic inflammation, endothelial dysfunction a...
Cellular particles may be larger shed microparticles (>or=100 nm, MPs) that are the products of cell...
The release of extracellular vesicles (EV) by the syncytiotrophoblast (STB) may be an important mech...
Background: Pre-eclampsia (P-EC) is associated with systemic inflammation, endothelial dysfunction a...
Background: Pre-eclampsia (P-EC) is associated with systemic inflammation, endothelial dysfunction a...
expressed in this publication are those of the authors and not necessarily those of the Departmen
Background: The placental syncytiotrophoblast releases micro and nanovesicles (STBM), into the mater...
Cellular microparticles are ubiquitously shed from cell membranes or secreted as endocytic vesicles ...
Cellular microparticles are ubiquitously shed from cell membranes or secreted as endocytic vesicles ...
Excessive release of syncytiotrophoblast extracellular vesicles (STBMs) from the placenta into the m...
Excessive release of syncytiotrophoblast vesicles (STBM) from the placenta into the maternal circula...
Excessive release of syncytiotrophoblast vesicles (STBM) from the placenta into the maternal circula...
Dragovic et al. [1] is the first study using multicolor flow cytometry applying directly conjugated ...
AbstractThe release of extracellular vesicles (EV) by the syncytiotrophoblast (STB) may be an import...
The release of extracellular vesicles (EV) by the syncytiotrophoblast (STB) may be an important mech...
Background: Pre-eclampsia (P-EC) is associated with systemic inflammation, endothelial dysfunction a...
Cellular particles may be larger shed microparticles (>or=100 nm, MPs) that are the products of cell...
The release of extracellular vesicles (EV) by the syncytiotrophoblast (STB) may be an important mech...
Background: Pre-eclampsia (P-EC) is associated with systemic inflammation, endothelial dysfunction a...
Background: Pre-eclampsia (P-EC) is associated with systemic inflammation, endothelial dysfunction a...
expressed in this publication are those of the authors and not necessarily those of the Departmen
Background: The placental syncytiotrophoblast releases micro and nanovesicles (STBM), into the mater...
Cellular microparticles are ubiquitously shed from cell membranes or secreted as endocytic vesicles ...
Cellular microparticles are ubiquitously shed from cell membranes or secreted as endocytic vesicles ...