labmaster tl40 interface (Labmaster)
90
Structured Review
Labmaster
labmaster tl40 interface
Labmaster Tl40 Interface, supplied by Labmaster, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/labmaster+interface/labmaster+tl40+interface/pm24980981-39-29-29
Average 90 stars, based on 1 article reviews
Labmaster Tl40 Interface, supplied by Labmaster, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/labmaster+interface/labmaster+tl40+interface/pm24980981-39-29-29
Average 90 stars, based on 1 article reviews
labmaster tl40 interface - by Bioz Stars,
2026-10
90/100 stars
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other:Article Title: Block of calcium-activated potassium channels in mammalian arterial myocytes by tetraethylammonium ions Article Snippet: LANGTON, P. D., M. T. NELSON, Y. HUANG, AND N. B. STANDEN.. Block of calcium-activated potassium channels in mammalian arterial myocytes by tetraethylammonium ions.. Am. Article Title: Dynamic Ca2+-induced inward rectification of K+ current during the ventricular action potential. Article Snippet: The command potentials for the V-clamp amplifier were supplied through a Membrane:Article Title: Calcium rapidly down-regulates human renal epithelial sodium channels via a W-7-sensitive mechanism. Article Snippet: Increases in intracellular calcium (Ca) inhibit renal sodium (Na) absorption in cortical collecting ducts, but the precise mechanism is unclear.. We, therefore, studied the effects of raising intracellular Ca (using 10 lmol/L A23187, a Ca ionophore) on wild-type and Liddle-mutated human epithelial Na channels (hENaC) expressed in Xenopus oocytes, using the dual-electrode voltage clamp technique.. A23187 decreased amiloridesensitive Na current by 55 % in oocytes expressing wildtype hENaC, an effect prevented by co-exposure to 50 lmol/L W-7 (to inhibit the Ca/calmodulin complex). Article Title: Rapid stimulation of human renal ENaC by cAMP in Xenopus laevis oocytes. Article Snippet: Among the compensatory mechanisms restoring circulating blood volume after severe haemorrhage, increased vasopressin secretion enhances water permeability of distal nephron segments and stimulates Na reabsorption in cortical collecting tubules via epithelial sodium channels (ENaC).. The ability of vasopressin to upregulate ENaC via a cAMP-dependent mechanism in the medium to long term is well established.. This study addressed the acute regulatory effect of cAMP on human ENaC (hENaC) and thus the potential role of vasopressin in the initial compensatory responses to haemorrhagic shock. Software:Article Title: Calcium rapidly down-regulates human renal epithelial sodium channels via a W-7-sensitive mechanism. Article Snippet: Increases in intracellular calcium (Ca) inhibit renal sodium (Na) absorption in cortical collecting ducts, but the precise mechanism is unclear.. We, therefore, studied the effects of raising intracellular Ca (using 10 lmol/L A23187, a Ca ionophore) on wild-type and Liddle-mutated human epithelial Na channels (hENaC) expressed in Xenopus oocytes, using the dual-electrode voltage clamp technique.. A23187 decreased amiloridesensitive Na current by 55 % in oocytes expressing wildtype hENaC, an effect prevented by co-exposure to 50 lmol/L W-7 (to inhibit the Ca/calmodulin complex). Article Title: Rapid stimulation of human renal ENaC by cAMP in Xenopus laevis oocytes. Article Snippet: Among the compensatory mechanisms restoring circulating blood volume after severe haemorrhage, increased vasopressin secretion enhances water permeability of distal nephron segments and stimulates Na reabsorption in cortical collecting tubules via epithelial sodium channels (ENaC).. The ability of vasopressin to upregulate ENaC via a cAMP-dependent mechanism in the medium to long term is well established.. This study addressed the acute regulatory effect of cAMP on human ENaC (hENaC) and thus the potential role of vasopressin in the initial compensatory responses to haemorrhagic shock. |