• 제목/요약/키워드: Potassium Channel

검색결과 220건 처리시간 0.032초

$K^+$ 통로개방제 Pinacidil이 종양이식 생쥐에서 Tl-201의 체내분포에 미치는 영향 (Effects of Pinacidil, a Potassium-Channel Opener, on Biodistribution of Thallium-201 in Tumor-Bearing Mice)

  • 이재태;천경아;이상우;강도영;안병철;전수한;이규보;하정희
    • 대한핵의학회지
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    • 제34권4호
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    • pp.303-311
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    • 2000
  • 목적: 생체 내에서 potassium과 유사한 역학을 보이는 thallium은 종양의 영상에 널리 사용된다. $K^+$ 통로개방제는 세포 내의 potassium을 외부로 배출되게 하는 기능이 있어 Tl-201을 이용한 종양영상에도 영향을 미칠 수 있을 것이라 생각된다. 본 연구는 강력한 $K^+$ 통로개방제의 하나인 pinacidil이 Tl-201을 이용한 종양의 국소화에 어떠한 영향을 미치는 가를 알아보기 위하여, 종양을 가진 생쥐에서 pinacidil에 의한 Tl-201의 체내분포 변화를 알아보았다. 대상 및 방법: 생쥐 유방암세포주를 이식받은 Balb/c 생쥐를 3주간 사육한 후 실험에 이용하였다. Tl-201 185 KBq를 꼬리정맥을 통해 주입한 후 일정시간에 실험동물을 희생시켜 Tl-201의 체내 분포를 알아 보았으며, pinacidil $100{\mu}g$ 투여에 따른 분포 변화를 알아보았다. 또한 Tl-201 3.7 MBq를 꼬리정맥을 통해 주입하여 Tl-201의 시간에 따른 전신 잔류율을 측정하였고, pinacidil 투여에 의한 전신 잔류율 변화를 구하였다. 결과: pinacidil 투여시 대조군에 비해 혈액 내 Tl-201의 방사능치를 약간 감소시키나 신장에서는 현저한 감소를 일으켰다. 또한 간, 근육, 및 장관의 방사능은 pinacidil 투여에 의해 변하지 않았다. 종양 내 Tl-201 섭취율 및 종양조직/혈액 무게당 섭취비는 대조군에 비해 pinacidil 투여군에서 낮았으며, Tl-201의 24시간 전신 잔류율도 pinacidil 투여군에서 낮았다. 결론: $K^+$ 통로개방제는 Tl-201의 체외 배설을 촉진시키고, 신장 섭취를 감소시켜나, 종양 섭취량도 감소시켰다. 그러므로 Tl-201 종양영상 판독시 $K^+$ 통로개방제를 사용하는 경우에는 오히려 Tl-201 종양영상의 질이 향상되기 보다는 저하될 수 있다는 사실을 고려하여야 할 것으로 생각된다.

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Mechanical Hyperalgesia Induced by Blocking Calcium-activated Potassium Channels on Capsaicin-sensitive Afferent Fiber

  • Lee, Kyung-Hee;Shin, Hong-Kee
    • The Korean Journal of Physiology and Pharmacology
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    • 제11권5호
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    • pp.215-219
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    • 2007
  • Small and large conductance $Ca^{2+}$-activated $K^+(SK_{Ca}\;and\;BK_{Ca})$ channels are implicated in the modulation of neuronal excitability. We investigated how changes in peripheral $K_{Ca}$ channel activity affect mechanical sensitivity as well as the afferent fiber type responsible for $K_{Ca}$ channel-induced mechanical sensitivity. Blockade of $SK_{Ca}$ and $BK_{Ca}$ channels induced a sustained decrease of mechanical threshold which was significantly attenuated by topical application of capsaicin onto afferent fiber and intraplantar injection of 1-ethyl-2-benzimidazolinone. NS1619 selectively attenuated the decrease of mechanical threshold induced by charybdotoxin, but not by apamin. Spontaneous flinching and paw thickness were not significantly different after $K_{Ca}$ channel blockade. These results suggest that mechanical sensitivity can be modulated by $K_{Ca}$ channels on capsaicin-sensitive afferent fibers.

흰쥐에서의 관상동맥 결찰/재관류로 유도된 부정맥에 대한 benzopyran계 $K^+$ channel opener의 전기생리학적인 효과 (The Electrophysiological Effects of Benzopyran Potassium Channel Openers on Coronary Artery Occlusion/Reperfusion-induced Arrhythmias in the Rat)

  • 이재흥;신화섭;권광일
    • 한국임상약학회지
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    • 제6권2호
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    • pp.32-40
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    • 1996
  • The electrophysiological effects of benzopyran potassium channel openers (PCOs: lemakalim, KR-30450 and KR-30818) on the ischemia/reperfusion-induced arrythmias were investigated. In anesthetized rats, subjected to 45 min occlusion of the left anterior descending coronary artery (LAD) followed by 90 min reperfusion, ventricular arrythmias were identified according to the Lambeth Conventions by lead II ECG. Rats were intravenously given vehicle ($1\%$ DMSO), lemakalim, KR-30450, and KR-30818 alone or in combination with a selective $K_{ATP}$ blocker glibenclamide, 30 min prior to coronary occlusion. Compared to vehicle, lemakalim ($30{\mu}g/kg$ i.v.), the active enantiomer of cromakalim, had a tendancy to increase the duration of ventricular tachycardia (Vl) and ventricular fibrillation (VF), the number of premature ventricular complexes (PVC) and the incidence of VF, especially in the early post-occlusion peroid ($0\~15$ min), while increasing ST-segment elevation. Both KR-30450 ($30{\mu}g/kg$, i.v.) and KR-30818 (30, $100{\mu}g/kg$, i.v.) showed similar proarrhythmic effects to lemakalim (PVC, duration of VT, and incidence of VF) with a tendancy to decrease the duration of VF and ST-segment elevation. Unlike other PCOs, however, glibenclamide (0.3, 1.0 mg/kg) had opposite effects on the induction of arrhythmias (PVC, the duration of VF); it had a tendancy to increase the duration of VT with a slight elevation of ST-segment. It seems likely that glibenclamide (0.3 mg/kg, i.v.), reduced the effects of lemakalim or KR-30450 ($30{\mu}g/kg$, i.v.) on arrhythmias (PVC, VT, VF and ST-segment). These results indicate that, in the coronary occluded rat model of ischemia, lemikuiln and KR-30450 exert a proarrhythmic activity, the effect being considered related to the opening of KATP channel.

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The Effect of Papaverine on the Calcium-dependent $K^+$ Current in Rat Basilar Smooth Muscle Cells

  • Bai, Guang-Yi;Cho, Jae-Woo;Han, Dong-Han;Yang, Tae-Ki;Gwak, Yong-Geun;Kim, Chul-Jin
    • Journal of Korean Neurosurgical Society
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    • 제38권5호
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    • pp.375-379
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    • 2005
  • Objective : Papaverine has been used in treating vasospasm following subarachnoid hemorrhage[SAH]. However, its action mechanism for cerebral vascular relaxation is not clear. Potassium channels are closely related to the contraction and relaxation of cerebral smooth muscle. Therefore, to identify the role of potassium and calcium channels in papaverine-induced vascular relaxation, we examine the effect of papaverine on potassium channels in freshly isolated smooth muscle cells from rat basilar artery. Methods : The isolation of rat basilar smooth muscle cells was performed by special techniques. The whole cell currents were recorded by whole cell patch clamp technique in freshly isolated smooth muscle cells from rat basilar artery. Papaverine was added to the bath solution. Results : Papaverine of $100{\mu}M$ into bath solution increased the amplitude of the outward $K^+$ current which was completely blocked by BKCa[large conductance calcium dependent potassium channels]blocker, IBX[iberiotoxin], and calcium chealator, BAPTA[l,2-bis[o-aminophenoxy]ethane-N,N,N',N'-tetraacetic acid], in whole cell mode. Conclusion : These results strongly suggest that potassium channels may play roles in papaverine-induced vascular relaxation in rat basilar artery.

Influence of Quinine on Catecholamine Release Evoked by Cholinergic Stimulation and Membrane Depolarization from the Rat Adrenal Gland

  • Jang, Suk-Jung;Kim, Jong-In;Lim, Dong-Yoon
    • Archives of Pharmacal Research
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    • 제24권3호
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    • pp.240-248
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    • 2001
  • The present study was attempted to investigate the effect of quinine on secretion of catecholamines (CA) etroked by cholinergic stimulation and membrane depolarization from the isolated perfused rat adrenal gland. The perfusion of quinine (15-150${\mu}$M) into an adrenal vein for 60 min produced dose- and time-dependent inhibition in CA secretion evoked by ACh ($5.32{\times}10^{-3}M$), high $K^{+}5.6{\times}10^{-2}M$, DMPP ($10^{-4}M$ for 2 min), McN-A-343 ($10^{-4}M$ for 2 min), cyclopiazonic acid ($10^{-5}$ for 4 min) and Bay-K-8644 ($10^{-5}$ M for 4 min). Also, under the presence of pinacidil ($10^{-4}$ M), which is also known to be a selective potassium channel activator, CA secretory responses evoked by ACh, high potassium, DMPP McN-A-343, Bay-K-8644 and cyclopiazonic acid were also greatly reduced. When preloaded along with quinine ($5{\times}10^{-5}M$) and glibenclamide ($10^{-6}$ M), a specific blocker of ATP-regulated potassium channels, CA secretory responses evoked by ACh, high potassium, DMPP McN-A-343, Bay-K-8644 and cyclopiazonic acid were recovered as compared to those of quinine-treatment only. taken together, these results demonstrate that quinine inhibits CA secretion evoked by stimulation of cholinergic (both nicotinic and muscarinic) receptors as well as by membrane depolarization through inhibiting influx of extracellular calcium and release in intracellular calcium in the rat adrenmodullary chromaffin cells. These findings suggest that activation of potassium channels may be involved at least in inhibitory action of quinine on CA secretion from the rat adrenal gland.

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K+ 통로 조절 약물이 마우스 골격근의 피로현상에 미치는 영향 (Effects of potassium channel modulators on the fatigue velocity of mouse skeletal muscle)

  • 이기호;류판동;이문한;이항
    • 대한수의학회지
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    • 제35권2호
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    • pp.245-254
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    • 1995
  • The density of ATP-sensitive potassium($K_{APT}$) channels, that open as intracellular ATP concentration falls below a critical level, is very high in skeletal muscle surface membrane and those high density may imply that $K_{ATP}$ channels have very important physiological roles. To elucidate a role of $K_{ATP}$ in relation to fatigue, the modulating effects of potassium channel openers and blockers on the fatigue velocity(FV) of mouse extensor hallucis longus muscle(EHL) were investigated in vitro. Twitch contraction was induced by an electrical field stimulation (EFS: 24-48V, 20ms, 0.2-4Hz) and resulting contraction force was isometrically recorded. The twitch forces were gradually decreased to 25% of initial contraction force(ICF) in $37.52{\pm}1.55sec$($mean{\pm}s.e.m.$, n=135), indicating the fatigue phenomena. The mean velocity for development of the fatigue was measured during the period that twitch force decreased to half($FV_{0/0.5}$) and during the period from half to 25%($FV_{0.5/0.25}$) of ICF. The fatigue was induced once every one hour and the tissue response was stable for up to 4 hours. In control condition, ICF was $5.8{\pm}0.12g$ (n=144) and decreased to 50% of ICF with the mean fatigue velocity of $0.182{\pm}0.006g/sec$($FV_{0/0.5}$, n=135) and from 50% to 25% of ICF with $0.084{\pm}0.004g/sec$($FV_{0.5/0.25}$, n=135). Cromakalim($50{\mu}M$) significantly increased $FV_{0.5/0.25}$(n=4). Glibenclamide($IC_{50}>50{\mu}M$), $Ba^{2+}$($IC_{50}=10{\mu}M$), 4-aminopyridine($FV_{0/0.5}$, $IC_{50}=0.5mM$; $FV_{0.5/0.25}$, $IC_{50}=2mM$) decreased both $FV_{0/0.5}$ and $FV_{0.5/0.25}$ concentration-dependently up to 75%. $TEA^+$(30mM), E-4031($10{\mu}M$), tolbutamide(1mM) decreased $FV_{0.5/0.25}$, but apamin(300nM) and $TEA^+$(10mM) showed no significant effects. Our results suggest that activation of the $K_{ATP}$ channels may be major cause of $K^+$ outflux during development of the fatigue and the isolated EHL muscle could be an useful experimental preparation in studying the fatigue phenomena in skeletal muscle. In addition, the possibility of activation of delayed rectifier during the fatigue development remains to be studied further.

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Activation of Lysophosphatidic Acid Receptor Is Coupled to Enhancement of $Ca^{2+}$ -Activated Potassium Channel Currents

  • Choi, Sun-Hye;Lee, Byung-Hwan;Kim, Hyeon-Joong;Hwang, Sung-Hee;Lee, Sang-Mok;Nah, Seung-Yeol
    • The Korean Journal of Physiology and Pharmacology
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    • 제17권3호
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    • pp.223-228
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    • 2013
  • The calcium-activated $K^+$ ($BK_{Ca}$) channel is one of the potassium-selective ion channels that are present in the nervous and vascular systems. $Ca^{2+}$ is the main regulator of $BK_{Ca}$ channel activation. The $BK_{Ca}$ channel contains two high affinity $Ca^{2+}$ binding sites, namely, regulators of $K^+$ conductance, RCK1 and the $Ca^{2+}$ bowl. Lysophosphatidic acid (LPA, 1-radyl-2-hydroxy-sn-glycero-3-phosphate) is one of the neurolipids. LPA affects diverse cellular functions on many cell types through G protein-coupled LPA receptor subtypes. The activation of LPA receptors induces transient elevation of intracellular $Ca^{2+}$ levels through diverse G proteins such as $G{\alpha}_{q/11}$, $G{\alpha}_i$, $G{\alpha}_{12/13}$, and $G{\alpha}s$ and the related signal transduction pathway. In the present study, we examined LPA effects on $BK_{Ca}$ channel activity expressed in Xenopus oocytes, which are known to endogenously express the LPA receptor. Treatment with LPA induced a large outward current in a reversible and concentration-dependent manner. However, repeated treatment with LPA induced a rapid desensitization, and the LPA receptor antagonist Ki16425 blocked LPA action. LPA-mediated $BK_{Ca}$ channel activation was also attenuated by the PLC inhibitor U-73122, $IP_3$ inhibitor 2-APB, $Ca^{2+}$ chelator BAPTA, or PKC inhibitor calphostin. In addition, mutations in RCK1 and RCK2 also attenuated LPA-mediated $BK_{Ca}$ channel activation. The present study indicates that LPA-mediated activation of the $BK_{Ca}$ channel is achieved through the PLC, $IP_3$, $Ca^{2+}$, and PKC pathway and that LPA-mediated activation of the $BK_{Ca}$ channel could be one of the biological effects of LPA in the nervous and vascular systems.

Polystyrene Latex Bead에 의한 뇌혈관연축 모델에서 K+ 통로활성제의 전신투여 (Systemic Administration of the Potassium Channel Activator in the Polystyrene Latex Bead-Induced Cerebral Vasospasm)

  • 장성조;강성돈;윤기중
    • Journal of Korean Neurosurgical Society
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    • 제29권6호
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    • pp.719-724
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    • 2000
  • Objectives : It has been reported that the presence of a pharmacologically inactive foreign substance, polystyrene latex bead, in subarachnoid space activates a non-specific immunological response and elicits arterial narrowing. Recently the activation of potassium($K^+$) channels may be of benefit in relieving cerebral vasospasm. The present study examined the effects of systemic administration of a ATP-sensitive $K^+$ channel activator, cromakalim, on the polystyrene latex bead-induced cerebral vasospasm. Methods : The spasm models similar to that caused by subarachnoid blood injection were created by injection of bead into rabbit cisterna magna. Intravenous injections of cromakalim were administered twice daily(bid) 30 minutes after induction of vasospasm. Animals were killed by perfusion-fixation 2 days after vasospasm. Basilar arteries were removed and sectioned, and the luminal cross-sectional areas were measured. Results : Injection of bead elicited an arterial constriction, reducing arterial diameter to 33.3% of resting tone. Cromakalim inhibited bead-induced constriction at a dose of 0.3mg/kg(Mann-Whitney test, p<0.01). Conclusion : These results support the concept that the cellular events triggered by inactivation of ATP-sensitive $K^+$ channels are responsible for the pathogenesis of vasospasm. The findings also indicate that cromakalim represents a potential therapeutic agents for the treatment of cerebral vasospasm.

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$K^+$ Channel 개방제인 BRL 34915의 신장작용 (Renal Action of BRL 34915, a $K^+$ Channel Opener, in Dog)

  • 고석태;최홍석
    • 약학회지
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    • 제44권3호
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    • pp.205-212
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    • 2000
  • The effect of BRL 34915, a $K^{+}$ channe$Na^{+}$l opener, on renal function was investigated in anesthetized dog. BRL 34915, when given into the vein, elicited the decrease of urine volume accompanied with the reduction of renal plasma flow (RPF), osmolar clearance ($C_{osm}$) and amounts of sodium excreted into urine ($E_{na}$), whereas reabsorption rate of sodium in renal tubules ($R_{na}$), ratio of $K^{+}$ against $Na^{+}$ in urine ($K^{+}$ /$Na^{+}$) were elevated significantly with a partial fall of mean arterial pressure (MAP). BRL 34915 injected into a renal artery produced the diuretic action along with the increase in RPF $C_{osm}$, $E_{na}$ and amounts of potassium excreted in urine ($E_{k}$), and the decrease in $R_{na}$, reabsorption rate of potassium in renal tubules ($R_{k}$), free water clearance ($C_{H20}$) and $K^{+}/Na^{+}$ ratio in only ipsilateral kidney, however changes of the renal function were not observed in control kidney. BRL 34915 given into carotid artery exhibited the same aspect as changes of renal function induced by intravenous BRL 34915. These results suggest that BRL 34915 has dual effects, renally acting diuretic and centrally acting antidiuretic action.n.

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A novel mutation of ABCC8 gene in a patient with diazoxide-unresponsive congenital hyperinsulinism

  • Park, Ji Sook;Lee, Hong-Jun;Park, Chan-Hoo
    • Clinical and Experimental Pediatrics
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    • 제59권sup1호
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    • pp.116-120
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    • 2016
  • Congenital hyperinsulinism (CHI) is a rare condition that can cause irreversible brain damage during the neonatal period owing to the associated hypoglycemia. Hypoglycemia in CHI occurs secondary to the dysregulation of insulin secretion. CHI has been established as a genetic disorder of islet-cell hyperplasia, associated with a mutation of the ABCC8 or KCNJ11 genes, which encode the sulfonylurea receptor 1 and the inward rectifying potassium channel (Kir6.2) subunit of the ATP-sensitive potassium channel, respectively. We report the case of a female newborn infant who presented with repetitive seizures and episodes of apnea after birth, because of hypoglycemia. Investigations revealed hypoglycemia with hyperinsulinemia, but no ketone bodies, and a low level of free fatty acids. High dose glucose infusion, enteral feeding, and medications could not maintain the patient's serum glucose level. Genetic testing revealed a new variation of ABCC8 mutation. Therefore, we report this case of CHI caused by a novel mutation of ABCC8 in a half-Korean newborn infant with diazoxide-unresponsive hyperinsulinemic hypoglycemia.