نتایج جستجو برای: katp channels
تعداد نتایج: 140093 فیلتر نتایج به سال:
ATP-sensitive potassium (KATP) channels are well characterized in cardiac, pancreatic and many other muscle cells. In the present study, functional expression of the KATP channel was examined in non-pregnant murine longitudinal myometrium. Isometric contraction measurements and Western blot were used. KATP channel openers (KCOs), such as pinacidil, cromakalim, diazoxide and nicorandil, inhibite...
ATP-sensitive potassium (KATP) channel openers have a relaxation effect due to the lower cellular membrane potential and inhibit calcium influx. There has been considerable interest in exploring KATP channel openers in the treatment of various diseases such as cardiovascular, cerebrovascular, and urinary system disease and premature labor. The purpose of this study was to synthesize 3,3,6,6-tet...
ATP-sensitive potassium (KATP) channel openers have a relaxation effect due to the lower cellular membrane potential and inhibit calcium influx. There has been considerable interest in exploring KATP channel openers in the treatment of various diseases such as cardiovascular, cerebrovascular, and urinary system disease and premature labor. The purpose of this study was to synthesize 3,3,6,6-tet...
26 The pancreatic ATP-sensitive potassium (KATP) channel consisting of four Kir6.2 and 27 four sulfonylurea receptor SUR1 subunits play a key role in insulin secretion by 28 linking glucose metabolism to membrane excitability. Syntaxin 1A is a plasma 29 membrane protein important for membrane fusion during exocytosis of insulin 30 granules. Here, we show that syntaxin 1A and KATP channels endog...
Background: Renal ischemia reperfusion (IR) injury has been a major source of concern during the past decades and angiotensin converting enzyme (ACE) inhibitors have been successfully used to prevent this injury. There have been some controversial reports about the involvement of KATP channels in the mechanism of action of ACE inhibitors. In this study, we examined the effect of KATP channel bl...
In many cells, ATP-sensitive K+ channels (KATP channels) couple metabolic state to excitability. In pancreatic beta cells, for example, this coupling regulates insulin release. Although KATP channels are abundantly expressed in the brain, their physiological role and the factors that regulate them are poorly understood. One potential regulator is H2O2. We reported previously that dopamine (DA) ...
background: simvastatin is a widely used medication in cardiac care. here we evaluate the role of atp sensitive potassium (katp) channels in simvastatin induced renal protection after renal ischemia/reperfusion (i/r) injury. methods: a total of 81 male wistar rats, were treated with simvastatin (10 and 20mg/kg/day gavage, one week). some groups received glibenclamide (katp channel inhibitor ...
Medial temporal lobe structures are essential for memory formation which is associated with coherent network oscillations. During ontogenesis, these highly organized patterns develop from distinct, less synchronized forms of network activity. This maturation process goes along with marked changes in intrinsic firing patterns of individual neurons. One critical factor determining neuronal excita...
SINCE THEIR DISCOVERY OVER 25 years ago, ATP-sensitive K (KATP) channels have been studied extensively in many tissues, including heart, pancreas, brain, skeletal and smooth muscle, pituitary, and kidney (6, 10, 18, 19). KATP channels are critical sensors that couple cellular metabolic state to membrane excitability and organ function and regulate a wide range of cellular functions including ho...
The ATP-dependent potassium channels (KATP channels) were originally identified in isolated membrane patches prepared from guinea pig ventricular myocytes by Noma in 1983. Since their discovery in cardiac cells, KATP channels have also been discovered in many other tissues, such as smooth muscle, skeletal muscle, pancreas, and brain, in which they have been shown to couple cellular metabolism t...
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