Anoxic decrease in potassium outward currents of hippocampal cultured neurons in absence and presence of dithionite
-
Add time:07/24/2019 Source:sciencedirect.com
The effect of brief anoxia on voltage dependent K+-currents of hippocampal cultured neurons was studied. The oxygen scavenger dithionite (hydrosulphite) was previously used for creating zero oxygen pressure. However, dithionite consumes O2 in parallel with generation of superoxide radicals and is a strongly reducing agent. In this study anoxia was produced by perfusion of the neurons with a solution bubbled with nitrogen for 1 h using a chamber with an argon layer isolating the anoxic bath flow from atmospheric oxygen in presence and absence of dithionite. Oxygen partial pressure of dithionite-free solution was determined by oxygen dependent quenching of the phosphorescence of Pd-coproporphyrin to be 0.15±0.02 Torr (values are given as mean±S.D., n=6). Slow (IK)- and fast (IA)-inactivating K+-currents were measured with the patch clamp technique in the whole cell configuration. Exposure of the neurons to anoxia reversibly decreased the amplitude of IK at a test pulse of 0 mV to 77±12% (n=7) in absence and to 83±7% (n=6) in presence of 2 mM dithionite; the amplitude of IA decreased to 78±11% in absence and to 82±9% in presence of 2 mM dithionite. Voltage dependence of activation and inactivation shifted 5 min after exposure to anoxia reversibly by about 6 mV in depolarizing direction. The decay times of inactivation were insensitive to anoxia. Dithionite had no significant effects on K+-currents. In 15 of 21 neurons not employed for analysis on K+-currents, a reversible increase in holding current under dithionite was observed. In absence of dithionite in 4 of 19 neurons the holding current reversibly increased during anoxia. Although dithionite does not affect K+-currents, changes in holding current show that the dithionite may affect neurons independently of oxygen deprivation.
We also recommend Trading Suppliers and Manufacturers of Potassium dithionite (cas 14293-73-3). Pls Click Website Link as below: cas 14293-73-3 suppliers
Prev:Using of ecofriendly α-hydroxycarbonyls as reducing agents to replace sodium dithionite in indigo dyeing processes
Next:Electrochemical behaviour of sodium dithionite and sulfite at a gold electrode in alkaline solution) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Kinetics and mechanism of the oxidation of sodium dithionite at a platinum electrode in alkaline solution07/27/2019
- Rapid Analysis of Plasma Paraquat Using Sodium Dithionite As a Predictor of Outcome in Acute Paraquat Poisoning07/26/2019
- Electrochemical behaviour of sodium dithionite and sulfite at a gold electrode in alkaline solution07/25/2019
- Using of ecofriendly α-hydroxycarbonyls as reducing agents to replace sodium dithionite in indigo dyeing processes07/23/2019
- The kinetics and mechanism of the oxidation of inorganic oxysulfur compounds by potassium ferrate.07/22/2019
- An interesting strategy devoted to fabrication of a novel and high-performance amperometric sodium dithionite sensor07/20/2019
- Arsenic removal using advanced reduction process with dithionite/UV—A kinetic study07/21/2019
- Kinetics and pathway of atrazine degradation by a novel method: Persulfate coupled with dithionite07/19/2019
- Long-term stability of dithionite in alkaline anaerobic aqueous solution07/18/2019
-
Health and Chemical more >
-
Related Products
- Potassium (2S,3S)-3-(ethoxycarbonyl)oxirane-2-carboxylate
- Potassium (4-formylphenyl)trifluoroborate
- Potassium (bromomethyl)trifluoroborate
- Potassium (R)-((3-ethoxy-1-methyl-3-oxoprop-1-enyl)amino)(4-hydroxyphenyl)acetate
- Potassium (R)-(4-hydroxyphenyl)((3-methoxy-1-methyl-3-oxoprop-1-enyl)amino)acetate
- Potassium (R)-[(3-ethoxy-1-methyl-3-oxoprop-1-enyl)amino]phenylacetate
- Potassium [(cyanomethyl)thio]acetate
- Potassium 1,2,3,6-tetrahydro-5-nitro-2,6-dioxopyrimidine-4-carboxylate
- Potassium 2,2-dimethyl-1,3-dioxolane-4-carboxylate
- Potassium 2,3,3-trimethyl-3H-indole-5-sulfonate


