The human umbilical cord is a biological sample that can be easily obtained just after birth. A methodology was developed to perform cultures of human umbilical artery smooth muscle cells (HUASMC) expressing contractile proteins and functional ionic channels. To avoid fibroblast and endothelial cell contamination, we mechanically separated the tunica media, which only contains HUASMC and matrix proteins. To isolate the cells, collagenase V and elastase were used as hydrolyzing enzymes. The isolated cells were plated in collagen-coated dishes to obtain cultures of HUASMC. The cells obtained after different passages (1 to 6) exhibit the characteristic vascular smooth cell morphology and express smooth muscle alpha-2 actin, myosin heavy chain ...
The human population has started to live for longer periods of time indicating that there might be a...
Blood outgrowth smooth muscle cells (BO-SMCs) offer the means to study vascular cells without the re...
AbstractPurpose: The vascular smooth muscle cell plays a pivotal role in the development of atherosc...
Primary culture of vascular smooth muscle cells is an important in vitro model for the dissection of...
Cerebral amyloid angiopathy (CAA) results from amyloid accumulation within arteries of the cerebral ...
Background In vitro fabricated tissue engineered vascular constructs could provide an alternative to...
Human arterial smooth muscle cells (hASMC) from explants of the inner media of uterine arteries were...
The human umbilical cord (UC) has attracted interest as a source of cells for many research applicat...
Vascular smooth muscle cells display a certain level of phenotype plasticity. Under specific conditi...
Through their control of cell membrane potential, potassium (K+) channels are among the best known r...
Complete transcriptome profiling of contractile smooth muscle cells (SMCs) differentiated from embry...
Human umbilical vein endothelial cell (HUVEC) isolated from umbilical cord is widely used as endothe...
Contraction of blood vessels for the regulation of blood flow and pressure is dependent on vascular ...
Our method for producing tissue-engineered blood vessels based exclusively on the use of human cells...
Relatively limited information is available regarding the mechanisms controlling vasomotricity in hu...
The human population has started to live for longer periods of time indicating that there might be a...
Blood outgrowth smooth muscle cells (BO-SMCs) offer the means to study vascular cells without the re...
AbstractPurpose: The vascular smooth muscle cell plays a pivotal role in the development of atherosc...
Primary culture of vascular smooth muscle cells is an important in vitro model for the dissection of...
Cerebral amyloid angiopathy (CAA) results from amyloid accumulation within arteries of the cerebral ...
Background In vitro fabricated tissue engineered vascular constructs could provide an alternative to...
Human arterial smooth muscle cells (hASMC) from explants of the inner media of uterine arteries were...
The human umbilical cord (UC) has attracted interest as a source of cells for many research applicat...
Vascular smooth muscle cells display a certain level of phenotype plasticity. Under specific conditi...
Through their control of cell membrane potential, potassium (K+) channels are among the best known r...
Complete transcriptome profiling of contractile smooth muscle cells (SMCs) differentiated from embry...
Human umbilical vein endothelial cell (HUVEC) isolated from umbilical cord is widely used as endothe...
Contraction of blood vessels for the regulation of blood flow and pressure is dependent on vascular ...
Our method for producing tissue-engineered blood vessels based exclusively on the use of human cells...
Relatively limited information is available regarding the mechanisms controlling vasomotricity in hu...
The human population has started to live for longer periods of time indicating that there might be a...
Blood outgrowth smooth muscle cells (BO-SMCs) offer the means to study vascular cells without the re...
AbstractPurpose: The vascular smooth muscle cell plays a pivotal role in the development of atherosc...