• 제목/요약/키워드: central diuretic action

검색결과 29건 처리시간 0.029초

ATP-의존성 $K^+$ Channel 차단제인 Glibenclamide의 중추적 이뇨작용에 대한 신장 신경제와의 Cromakalim의 영향 (Effects of Renal Denervation and Cromakalim on Central Diuretic Action of Glibenclamide, an ATP-dependent $K^+$ Channel Blocker, in Dogs)

  • 고석태;임광남;정경희
    • 약학회지
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    • 제43권5호
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    • pp.674-681
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    • 1999
  • This study was performed to investigate the effects of renal denervation and cromakalim, a K+ Channel opener, on central diuretic action of glibenclamide, an ATP-dependent K+ Channel blocker, in dog. Diuretic action of glibenclamide administered into the vein was weakened markedly by renal denervation and pretreatment of of cromakalim. Above results suggest that central diuretic action of glibenclamide is mediated by renal nerves and K+ Channel localized in kidney.

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Dopamine Dl Recptor 효능제인 SKF 81297의 이뇨작용에 대한 신장 신경 제거 및 Dopamine Dl Receptor차단제인 SCH 23390의 영향 (Effects of Renal Denervation and SCH 23390, Dopamine Dl Receptor Antagonist, on Diuretic Action of SKF 81297, Dopamine Dl Receptor Agonist, in Dog)

  • 고석태;정경희;임동윤
    • Biomolecules & Therapeutics
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    • 제10권1호
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    • pp.50-58
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    • 2002
  • lt had been reproted previously that (${\pm}$)6-chloro-7,8-dihydroxy-1-phenyl 2,3,4,5-tetra-hydro -lH-3benzazepine (SKF 81297), dopamine $D_1$ receptor agonist, produced diuresis by both Indirect action through central function and direct action being induced in kidney. This study was attempted in order to examine the diuresis mechanism of such SKF 81297 Diuretic action of SKF 81297 given into the vein or the carotid artery was not affected by renal denervation, whereas diuretic action of SKF 81297 administered into a renal artery was blocked completely by renal denervation, and then diuretic action of SKF 81297 injected into carotid artery was inhibited by SCH 23390, dopamine $D_1$ receptor antagonist, given into carotid artery. Above results suggest that indirect diuretic action of SKF 81297 elicites through central dopamine $D_1$ receptor and direct diuresis in kidney by influence of renal nerves.

돔페이돈의 신장작용 (Renal Action of Domperidone in Dog)

  • 고석태;최홍석
    • 약학회지
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    • 제37권6호
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    • pp.561-570
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    • 1993
  • Renal action of domperidone known as dopamine receptor blocker and effect of domperidone on renal function of dopamine were investigated in dog. Domperidone, when administered into vein, produced diuretic action by the improvement of renal hemodynamic state, when given into a renal artery, elicited diuretic action accompanied with natriuresis in only experimental kidney, whereas domperidone given into carotid artery exhibited antidiuretic action by the decrease of Na$^{+}$ excretion in urine. Diuretic action of dopamine was not influenced by domperidone given into vein or into a renal artery, was blocked by domperidone given into carotid artery. Above results suggest that domperidone produced both peripheral diuretic and central antidiuretic action, and domperidone do not block diuretic action by renal hemodynamic improvement of dopamine in kidney.

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Diltiazem의 신장작용에 대한 신신경제거의 영향 (Effect of Renal Denervation on Renal Action of Diltiazem in Dog)

  • 고석태;유강준;김해석
    • Biomolecules & Therapeutics
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    • 제1권1호
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    • pp.84-92
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    • 1993
  • This study was performed to elucidate the mechanism of antidiuretic action of diltiazem by infusion into the vein and carotid artery, of diuretic action into a renal artery in dog. Renal denervation caused a reversal of the effect of diltiazem from the antidiuretic to the diuretic when infused into vein or carotid artery, and potentiated the diuretic effect when infused into a renal artery. The changes of renal function in diuretic circumstances as described above included the increase in renal plasma flow, osmolar clearance, the amounts of sodium and potassium excreted in urine and the decrease in reabosrption rate of sodium and potassium in renal tubules. Above results suggest that antidiuretic action of diltiazem may be mediated by central nervous system, not by endogenous substance, diuretic action by direct renal action.

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한국산(韓國産) 하고초류(夏枯草類)의 약물학적(藥物學的) 연구(硏究)(II) -중추신경(中樞神經) 및 이뇨작용(利尿作用)에 대하여- (Pharmacological Studies on Prunellae Herba and Thesii Herba (II) -On Central Nervous and Diuretic Actions-)

  • 고인자;유승조;이은방
    • 생약학회지
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    • 제17권3호
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    • pp.242-247
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    • 1986
  • This study is an attempt to investigate the effects of the water extracts of the whole plants of Prunella vulgaris (Labiatae) and Thesii chinense (Santalaceae) on the acute toxicity, the activities on central nervous system and the diuretic action. The acute toxicities shown by $LD_{50}$ were estimated to be more than 3000 mg/kg p.o. and 1,000 mg/kg s.c. in the extracts of Prunellae Herba and Thesii Herba, respectively, in mice. The extracts at a dose of 2,000 mg/kg p.o. did not show any activities on central nervous system, i.e, sedative, analgesic, hypothermic and anticonvulsant actions. The urination in rats was increased by 45.5% and 57.6% when 100mg/kg of each of the extracts were given orally. The results obtained revealed that the water extracts possessed weak diuretic actions without any of central nervous system activities. Furthermore, it is considered that the potassium in the extract may play a role in the diuretic action.

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Methoxyverapamil의 신장작용에 미치는 신 신경제거의 영향 (Effect of Renal Denervation on Renal Action of Methoxyverapamil in Dogs)

  • 고석태;이수정;유강준
    • Biomolecules & Therapeutics
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    • 제2권3호
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    • pp.229-235
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    • 1994
  • In dogs, renal denervation did not affect the diuretic action accompanied with renal hemodynamic chanties and inhibition of electrolytes reabsorption rates in renal tubules by methoxyverapamil infused into the vein or into a renal artery, while renal denervation blocked the antidiuretic action due to the decreased free water and osmolar clearances along with the reduced sodium amounts excreted in urine by methoxyverpamil infused into the carotid artery. These experimental results suggest that methoxyverapamil may cause diuresis by direct action in kidney but the antidiuretic action through central function mediated by renal nerves.

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Dopamine $D_1$ Receptor 효능제인 SKF 81297의 신장작용 (Renal Action of SKF 81297, Dopamine $D_1$ Receptor Agonist, in Dogs)

  • 고석태;정경희
    • Biomolecules & Therapeutics
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    • 제9권3호
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    • pp.209-217
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    • 2001
  • This study was attempted to investigate on renal effect of ($\pm$)6-chloro-7,8-dihydroxy-1-phenol 2,3,4,5-tetrahydro-lH-3 benzazepine (SKF 81297), dopamine $D_1$ receptor agonist, in dog. SKF 81297, when gluten intravenously, produced diuretic action along with the increases of renal plasma flow (RPF), glomerular filtration rate (GFR), amounts of N $a^{+}$ and $K^{+}$ excreted into urine ( $E_{Na}$ , $E_{K}$) and osmolar clearance ( $C_{osm}$). It also decreased the reabsorption rates of N $a^{+}$ and $K^{+}$ in renal tubule ( $R_{Na}$ , $R_{K}$) and free water clearance ( $C_{H2O}$), whereas ratios of $K^{+}$ agonist N $a^{+}$ in urine and filtration fraction (FF) was not changed. SKF 81297, when administered into a renal artery, elicited diuresis both in experimental kidney given the SKF 81297 and control kidney not given, while the effect was more remarkable in experimental kidney than those exhibited in control kidney. SKF 81297 given into carotid artery also exhibited diuresis, the potency at this time, compared to those induced by intravenous SKF 81297, was magnusgreat. Above results suggest that SKF 81297 produces diuresis by both indirect action through changes of central function and direct action being induced in kidney. Central diuretic action is mediated by improvement of renal hemodynamics, but direct action by inhibition of electrolytes reabsorption in renal tubule.enal tubule. tubule.

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5-Hydroxytryptamine(5-HT)이 개의 신장기능에 미치는 영향 (Effect of 5-Hydroxytryptamine(5-HT) on Renal Function in Dog)

  • 고석태;나한광;최인
    • Biomolecules & Therapeutics
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    • 제4권1호
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    • pp.7-18
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    • 1996
  • 5-Hydroxytryptamine(5-HT, serotonin), when given into the vein, produced antidiuretic action accompanied with reduction of glomerular filtration(GFR), renal plasma flow(RPF), osmolar clearance(Cosm) and amounts of sodium or potassium excreted in urine( $E_{Na}$ , $E_{K}$), with the augmented reabsorption rates of sodium and potassium in renal tubules. 5-HT, when infused into a renal artery, exhibited diuretic action accompanied with the augmented RPF and increased $E_{Na}$ and $E_{K}$ in only infused kidney. Antidiuretic action of 5-HT infused into the vein was not influenced by ketanserin, 5-H $T_2$receptor blockade, given into a renal artery, vein or carotid artery, by methysergide, 5-H $T_1$receptor blockade, given into a renal artery, whereas above antidiuretic action was inhibited by methysergide given into vein or carotid artery. Diuretic action of 5-HT infused into a renal artery in only experimental kidney was blocked by ketanserin injected into a renal artery, was not influenced by methysergide administered into a renal artery. Above results suggest that 5-hydroxytryptamine(5-HT) produced the antidiuretic action through central 5-H $T_1$receptor and the diuretic action through 5-H $T_2$receptor located in renal tubules of kidney.ney.

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개의 신장기능에 미치는 Guanabenz의 영향 (Effects of Guanabenz on Renal Function in Dog)

  • 이상현;고석태
    • 약학회지
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    • 제32권4호
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    • pp.258-273
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    • 1988
  • In this study attempts were made to observe the effects of guanabenz on renal function in dog, which manifests the antihypertensive action by inhibition of sympathetic tone through stimulating the presynaptic adrenoceptor (${\alpha}_2-adrenoceptor$). Guanabenz, when injected at a dose of $30.0{\mu}g/kg$, or infused at a dose of $3.0{\mu}g/kg/min$ intravenously, produced diuretic action with increased amounts of $Na^+\;and\;K^+$ in urine, and with decreased reabsorption rates of $Na^+\;and\;K^+$ in renal tubules. It was also observed that the rates of osmolar and free water clearances were increased, but the glomerular filtration rate and renal plasma flow were not changed. Guanabenz injected at a dose of $3.0{\mu}g/kg$ into a carotid artery or infused intravenously at a dose of $3.0{\mu}g/kg/min$ in a state of water diuresis elicited the diuretic action of the similar aspect as a case of guanabenz given intravenously. The diuretic action produced by guanabenz was completly blocked by pretreatment of i.v. prazosin, ${\alpha}_1-adrenoblocking$ agent, or of i.v. yohimbine, ${\alpha}_2-adrenergic$ blocking agent. Prazosin, when given into a renal artery, inhibited the diuretic action by i.v. guanabenz in only injected kidney, whereas in case of yohimbine the action was inhibited in both kidney. Guanabenz infused at a dose of $1.0{\mu}g/kg/min$ into a renal artery exhibited no significant changes of renal function in both kidney. In denervation experiments, guanabenz given intravenously produced typical diuretic action in innervated kidney, whereas in denervated kidney, it did not affect the action at initial period but exhibited the action with increase of only free water clearance at later period. These results suggest that guanabenz produced diuretic action in dog by inhibition of electrolyte reabsorption rates in renal tabules, mainly proximal tubule and of ADH release, which is mediated by stimulating of central sympathetic ${\alpha}_2-receptor$.

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$\alpha$$_2$-아드레날린 효능제인 UK 14,304의 이뇨작용에 대한 신장신경 제거의 영향 (Effect of Renal Denervation on Diuretic Action of UK 14,304, $\alpha$$_2$-Adrenergic Agonist, in Dog)

  • 고석태;나한광
    • Biomolecules & Therapeutics
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    • 제5권4호
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    • pp.351-356
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    • 1997
  • This study was performed in order to investigate the effect of renal denervation on diuretic action of UK 14, 304, $\alpha$$_2$-Adrenergic Agonist, administered into the vein and the carotid artery in dog. The diuretic action of UK 14, 304 administered into the vein or the carotid artery was reversed to the antidiuretic action by renal denervation, this time, the decrease of N $a^{+}$excretion amounts in urine ( $E_{Na}$ ) and the increase of N $a^{+}$ reabsorption rates in renal tubule ( $R_{Na}$ ) were exhibited. This results suggest that central diuretic action of UK 14, 304 is mediated by renal nerves and the antidiuretic action of UK 14, 304 in denervation kidney is caused by the increase of N $a^{+}$reabsorption rates ( $R_{Na}$ ) in renal tubules in dog.n dog.

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