FAPESP - FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULOCAPES - COORDENAÇÃO DE APERFEIÇOAMENTO DE PESSOAL E NÍVEL SUPERIORAlthough redox processes closely interplay with mechanoresponses to control vascular remodeling, redox pathways coupling mechanostimulation to cellular cytoskeletal organization remain unclear. The peri/epicellular pool of protein disulfide isomerase-A1 (pecPDIA1) supports postinjury vessel remodeling. Using distinct models, we investigated whether pecPDIA1 could work as a redox-dependent organizer of cytoskeletal mechanoresponses. In vascular smooth muscle cells (VSMCs), pecPDIA1 immunoneutralization impaired stress fiber assembly in response to equibiaxial stretch and, under uniaxial stretch, significantly perturb...
Vascular smooth muscle phenotype is regulated by environmental factors, such as mechanical forces, w...
Vascular smooth muscle can adapt to increased intraluminal pressure by remodelling and hypertrophy, ...
Rationale: Calcium entry through Orai1 channels drives vascular smooth muscle cell migration and neo...
Vascular Smooth Muscle Cell (VSMC) migration into vessel neointima is a therapeutic target for ather...
A proteína dissulfeto isomerase (PDI) tem ganhado destaque em processos de sinalização celular. O ob...
O remodelamento vascular é um determinante fundamental do lúmen em doenças vasculares, porém os meca...
Extracellular vesicles (EVs) mediate interactions between cells and with the extracellular matrix. T...
International audienceThe vascular system is precisely regulated to adjust blood flow to organismal ...
SummaryBackgroundMechanical forces regulate cell behavior and function during development, different...
A migração de células musculares lisas (VSMC) da camada média do vaso para a íntima é essencial para...
Smooth muscle cells residing in the blood vessel media are constantly exposed to mechanical forces e...
The vascular wall has a remarkable capacity to adapt to mechanical forces exerted by the intralumina...
SummaryThe mechanically activated non-selective cation channel Piezo1 is a determinant of vascular a...
The mechanically activated non-selective cation channel Piezo1 is a determinant of vascular architec...
Objective— PDI (protein disulfide isomerase A1) was reported to support Nox1 (NADPH oxidase) activa...
Vascular smooth muscle phenotype is regulated by environmental factors, such as mechanical forces, w...
Vascular smooth muscle can adapt to increased intraluminal pressure by remodelling and hypertrophy, ...
Rationale: Calcium entry through Orai1 channels drives vascular smooth muscle cell migration and neo...
Vascular Smooth Muscle Cell (VSMC) migration into vessel neointima is a therapeutic target for ather...
A proteína dissulfeto isomerase (PDI) tem ganhado destaque em processos de sinalização celular. O ob...
O remodelamento vascular é um determinante fundamental do lúmen em doenças vasculares, porém os meca...
Extracellular vesicles (EVs) mediate interactions between cells and with the extracellular matrix. T...
International audienceThe vascular system is precisely regulated to adjust blood flow to organismal ...
SummaryBackgroundMechanical forces regulate cell behavior and function during development, different...
A migração de células musculares lisas (VSMC) da camada média do vaso para a íntima é essencial para...
Smooth muscle cells residing in the blood vessel media are constantly exposed to mechanical forces e...
The vascular wall has a remarkable capacity to adapt to mechanical forces exerted by the intralumina...
SummaryThe mechanically activated non-selective cation channel Piezo1 is a determinant of vascular a...
The mechanically activated non-selective cation channel Piezo1 is a determinant of vascular architec...
Objective— PDI (protein disulfide isomerase A1) was reported to support Nox1 (NADPH oxidase) activa...
Vascular smooth muscle phenotype is regulated by environmental factors, such as mechanical forces, w...
Vascular smooth muscle can adapt to increased intraluminal pressure by remodelling and hypertrophy, ...
Rationale: Calcium entry through Orai1 channels drives vascular smooth muscle cell migration and neo...