The goal of the present study is to construct a biophysical model of the coronary artery endothelial cell response to bradykinin. This model takes into account intracellular Ca2+ dynamics, membrane potential, a non-selective cation channel, and two Ca(2+)-dependent K+ channels, as well as intra- and extracellular Ca2+ sources. The model reproduces the experimental data available, and predicts certain quantities which would be hard to obtain experimentally, like the individual K+ channel currents when the membrane potential is allowed to freely evolve, the implication of epoxyeicosatrienoic acids (EETs), and the total K+ released during stimulation. The main results are: (1) the large-conductance K+ channel participates only very little in t...
1. The apamin-sensitive small-conductance Ca 2+-activated K + channel (SK Ca) was characterized in p...
Opening of intermediate-conductance calcium-activated potassium channels (KCa3.1) produces membrane ...
Opening of intermediate-conductance calcium-activated potassium channels (KC a 3.1) produces membran...
The goal of the present study is to construct a biophysical model of the coronary artery endothelial...
The goal of the present study is to construct a biophysical model of the coronary artery endothelial...
International audienceUsing the cell‐attached and inside‐out modes of the patch‐clamp technique, we ...
International audienceUsing the cell‐attached and inside‐out modes of the patch‐clamp technique, we ...
In coronary arteries, bradykinin opens endothelial intermediate- and small-conductance Ca 2+-sensiti...
The effects of membrane potential on resting and bradykinin-stimulated changes in [Ca2+]i- were meas...
1. This study characterizes the K + channel(s) underlying charybdotoxin-sensitive hyperpolarization ...
Thesis (M.S.)--Humboldt State University, Environmental Systems: Mathematical Modeling, 2011Atherosc...
The effects of membrane potential on resting and bradykinin-stimulated changes in [Ca2+]i- were meas...
British Heart Foundation Grant RG/15/15/31742 and was facilitated by the National Institute for Heal...
1. Isolated native endothelial cells, obtained by treatment, of rabbit aortic endothelium with papai...
Rationale: Electrical conduction through gap junction channels between endothelial cells of resistan...
1. The apamin-sensitive small-conductance Ca 2+-activated K + channel (SK Ca) was characterized in p...
Opening of intermediate-conductance calcium-activated potassium channels (KCa3.1) produces membrane ...
Opening of intermediate-conductance calcium-activated potassium channels (KC a 3.1) produces membran...
The goal of the present study is to construct a biophysical model of the coronary artery endothelial...
The goal of the present study is to construct a biophysical model of the coronary artery endothelial...
International audienceUsing the cell‐attached and inside‐out modes of the patch‐clamp technique, we ...
International audienceUsing the cell‐attached and inside‐out modes of the patch‐clamp technique, we ...
In coronary arteries, bradykinin opens endothelial intermediate- and small-conductance Ca 2+-sensiti...
The effects of membrane potential on resting and bradykinin-stimulated changes in [Ca2+]i- were meas...
1. This study characterizes the K + channel(s) underlying charybdotoxin-sensitive hyperpolarization ...
Thesis (M.S.)--Humboldt State University, Environmental Systems: Mathematical Modeling, 2011Atherosc...
The effects of membrane potential on resting and bradykinin-stimulated changes in [Ca2+]i- were meas...
British Heart Foundation Grant RG/15/15/31742 and was facilitated by the National Institute for Heal...
1. Isolated native endothelial cells, obtained by treatment, of rabbit aortic endothelium with papai...
Rationale: Electrical conduction through gap junction channels between endothelial cells of resistan...
1. The apamin-sensitive small-conductance Ca 2+-activated K + channel (SK Ca) was characterized in p...
Opening of intermediate-conductance calcium-activated potassium channels (KCa3.1) produces membrane ...
Opening of intermediate-conductance calcium-activated potassium channels (KC a 3.1) produces membran...