• 제목/요약/키워드: BRL 34915

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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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$K^+$ Channel 개방제인 BRL 34915의 신장작용에 대한 신장 신경제거 와 선택성 ATP-의존성 $K^+$Channel 차단제인 Glibenclamide의 영향 (Effect of Renal Denervation and Glibenclamide, a selective ATP-sensitive $K^+$ Channel Blocker, on Renal Action of BRL 34915, a ATP-sensitive $K^+$ Channel Opener, in Dog)

  • 고석태;최홍석
    • 약학회지
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    • 제44권4호
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    • pp.362-370
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    • 2000
  • In anesthetized dogs, antidiuretic action of intravenously administered BRL 34915 (10.0~30.0 $\mu$/kg) was blocked by renal denervation, whereas it was not affected by glibenclamide, a selective $K_{ATP}$ blocker, given into renal artery. Diuretic action in ipsilateral kidney produced by intrarenal administration of BRL 34915 was not influenced by renal denervation, but blocked completely by glibenclamide given into the vein. Above results suggest that the antidiuretic action of BRL 34915 is mediated by renal sympathetic nerves and the diuretic action is caused by opening of $K^+$ channel within kidney.

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Cromakalim Blocks Membrane Phosphoinositide Activated Signals in the Guinea Pig Lung Mast Cells Stimulated with Antigen-Antibody Reactions

  • Ro, Jai-Youl;Kim, Ji-Young;Kim, Kyung-Hwan
    • The Korean Journal of Physiology and Pharmacology
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    • 제2권2호
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    • pp.251-260
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    • 1998
  • Cromakalim (BRL 34915), known as an airway smooth muscle relaxant, inhibited the releases of mediators in the antigen-induced mast cell activation. It has been suggested that cromakalim, in part, inhibited mediator releases by inhibiting the initial increase of 1,2-diacylglycerol (DAG) produced by the activation of the other phospholipase system which is different from phosphatidylcholine-phospholipase D pathway. The aim of this study is to further examine the inhibitory mechanism of cromakalim on the mediator release in the mast cell activation. Guinea pig lung mast cells were purified by using enzyme digestion and percoll density gradient. In purified mast cells prelabeled with $[^3H]PIP_2$, phospholipase C (PLC) activity was assessed by the production of $[^3H]$insitol phosphates. Protein kinase C (PKC) activity was assessed by measuring the protein phosphorylated from mast cells prelabeled with $[{\gamma}-32P]ATP$, and Phospholipase $A_2\;(PLA_2)$ activity by measuring the lyso-phosphatidylcholine produced from mast cell prelabeled with 1-palmitoyl-2-arachidonyl $phosphatidyl-[^{14}C]choline$. Histamine was assayed by fluorometric analyzer, and leukotrienes by radioimmunoassay. The PLC activity was increased by activation of the passively sensitized mast cells. This increased PLC activity was decreased by cromakalim pretreatment. The PKC activity increased by the activation of the passively sensitized mast cells was decreased by calphostin C, staurosporine and cromakalim, respectively. The $PLA_2$ activity was increased in the activated mast cells. The pretreatment of cromakalim did not significantly decrease $PLA_2$ activity. These data show that cromakalim inhibits histamine release by continuously inhibiting signal transduction processes which is mediated via PLC pathway during mast cell activation, but that cromakalim does not affect $PLA_2$ activity related to leukotriene release.

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Cromakalim이 해명의 과민반응 매개체 유리에 미치는 영향 (Effects of Crormakalim on the Release of Mediators in Hypersensitivity of Guinea pig)

  • 노재열;김경환
    • 대한약리학회지
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    • 제29권2호
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    • pp.263-274
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    • 1993
  • $K^+$통로는 기도 평활근 세포에 존재하며 이들 통로가 활성화되면 평활근의 과분극의 결과 이완작용이 나타난다. $K^+$통로의 이런 효과는 과민반응과 천식 치료에 응용될 수 있으므로 우리는 $K^+$통로 개방제인 cromakalim (BRL34915, CK)이 $IgG_1$ 항체로 감작시킨 기도 및 폐조직으로 부터 유리되는 매개체 유리에 미치는 영향을 조사하였다. 피동적으로 감작된 두 조직은 $2{\times}10^{-6}\;M$의 CK로 30분동안 superfusion시킨 후 CK와 항원 (Ox-HSA) 0.1 mg/ml로 자극하였다. 또한 비만세포를 이용하여 CK의 효과를 조사하였다. 해명 폐조직 비만세포는 효소에 의한 digestion method (monodispersed; 미분리 정제), count current elutriation에 의한 방법(partially purified; 부분분리정제), 그리고 discontinuous Percoll방법(highly purified; 순수분리정제)에 의해 순수 분리되었다. CK로 전처치한후, 피동적으로 감작된 비만세포는 OA와 CaI의 여러 농도에 의해 자극되었다. 유리된 Hist은 spectrophotofluorometry에 의해, LT는 면역방사법에 의해 측정되었다. CK 전처치는 $IgG_1$ 감작후 항원에 의해 자극된 기도 조직에서 Hist 유리량을 35%까지, LT 유리량은 40%까지 감소시켰으나 기도 평활근 수축력에는 반응을 나타내지 못하였다. 항원 유도 폐조직에 있어서 CK전처치는 Hist유리량을 25%까지 감소시켰으나 LT 유리에는 미약한 감소를 나타내었다. 해명의 미분리정제, 부분분리정제, 그리고 순수 분리 정제된 비만세포로부터 Hist과 LT은 면역자극(OA)이나 비면역자극(CaI)에 의해 농도 의존적으로 유리되었다. 비만세포에서 유리된 LT는 5-lipoxygenase억제제인 A64077에 의해서 억제됨이 확인되었다. CK전처치는 OA유도 및 CaI유도 해명 폐조직 비만세포에서 Hist과 LT 유리량을 20%까지 감소시켰다. $IgG_1$ 감작후 Ox-HSA유도 기도 평활근 조직이나 혹은 OA유도 및 CaI유도 비만세포에서 Hist과 LT유리에 미치는 CK의 억제효과는 TEA와 GBC에 의해 완전히 봉쇄되었다. 이상의 결과에서 폐조직 비만세포는 LT를 유리할 수 있는 세포로 간주되며, 기도 평활근 이완제로 알려져 있는 CK은 특수 항원 유도 기도 평활근조직에서 매개체 유리를 부분적으로 억제하며, CK은 또한 OA유도 및 CaI로 유도된 순수분리 정제된 비만세포에서 매개체 유리를 부분적으로 억제하는 것으로 보아 비만세포가 활성화시 야기되는 여러 생화학적 현상중에서 미약하나마 $K{^+}$통로가 관여할 것으로 사료된다.

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Effects of Lemakalim, a Potassium Channel Opener, on the Contractility and Electrical Activity of the Antral Circular Muscle in Guinea-Pig Stomach

  • Kim, Sung-Joon;Jun, Jae-Yeoul;Choi, Youn-Baik;Kim, Ki-Whan;Kim, Woo-Gyeum
    • The Korean Journal of Physiology
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    • 제28권1호
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    • pp.37-50
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    • 1994
  • Synthetic potassium channel openers (KCOs) are agents capable of opening K-channels in excitable cells. These agents are known to have their maximal potency in the smooth muscle tissue, especially in the vascular smooth muscle. Much attention has been focused on the type of K-channel that is responsible for mediating the effects of KCOs. As the KCO-induced changes are antagonized by glibenclamide, an $K_{ATP}$ (ATP-sensitive K-channel) blocker in the pancreatic ${\beta}-cell,\;K_{ATP}$ was suggested to be the channel responsible. However, there also are many results in favor of other types of K-channel $$(maxi-K,\;small\;conductance\;K_{Ca,}\; SK_{ATP}) mediating the effects of KCOs. Effects of lemakalim, (-)enantiomer of cromakalim (BRL 34915), on the spontaneous contractions and slow waves, were investigated in the antral circular muscle of the guinea-pig stomach. Membrane currents and the effects on membrane currents and single channel activities were also measured in single smooth muscle cells and excised membrane patches by using the patch clamp method. Lemakalim induced hyperpolarization and inhibited spontaneous contractions in a dose-dependent manner. These effects were blocked by glibenclamide and low concentrations of tetraethyl ammonium (< mM). Glibenclamide blocked the effect of lemakalim on the membrane potential and slow waves. The mechanoinhibitory effect of lemakalim was blocked by pretreatment with glibenclamide. In a whole ceIl patch clamp condition, lemakalim largely increased outward K currents. These outward K currents were blocked by TEA, glibenclamide and a high concentration of intracelIular EGTA (10 mM). Volatage-gated Ca currents were not affected by lemakalim. In inside-out patch clamp experiments, lemakalim increased the opening frequency of the large conductance $Ca^{2+}-activated$ K channels $(BK_{Ca},\;Maxi-K).$ From these results, it is suggested that lemakalim induces hyperpolarization by opening K-channels which are sensitive to internal Ca and such a hyperpolarization leads to the inhibition of the spontaneous contraction.

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