• 제목/요약/키워드: excretion and reabsorption rates of Na and K

검색결과 7건 처리시간 0.02초

딜티아젬의 개 신장기능에 미치는 영향 (Effect of Diltiazem on Renal Function in the Dog)

  • 고석태;임광남
    • 약학회지
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    • 제38권5호
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    • pp.568-578
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    • 1994
  • This study was performed in order to investigate the effect of diltiazem, which is a $Ca^{2+}$ channel blocker of benzothiazepine derivatives, on renal function in the dog. Diltiazem, when infused into the vein or carotid artery, produced the antidiuresis accompanied with the decreased excretion rates of sodium and potassium in urine$(E_{Na},\;E_K)$ and the increased reabsorption rates of sodium and potassium in renal tubules$(R_{Na},\;R_K)$. Diltiazem, when infused into a renal artery, exhibited the diuresis along with the increased renal plasma flow(RPF), osmolar clearance$(C_{osm})$, $E_{Na}$ and $E_K$, and decreased $R_{Na}$ and $R_K$ in only infused kidney. Above results suggest that diltiazem possess both antidiuretic action through central action and diuretic action by direct inhibition of electrolytes reabsorption rates in renal tubules, mainly distal tubule.

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개의 신장기능에 미치는 Captopril의 영향 (Effect of Captopril on Renal Function in Dog)

  • 고석태;이민재
    • 약학회지
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    • 제34권2호
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    • pp.88-101
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    • 1990
  • Captopril, angiotensin converting enzyme (ACE) inhibitor, when given intravenously in dog, elicited the diuretic action along with the increases of glomerular filtration rates (GFR), renal plasma flow (RPF) and osmolar clearances (Cosm) with no changes of free water clearnces ($C_{H_2O}$), and then captopril produced the enlargement of excretion rates of electrolytes in urine and the reduction of reabsorption rates of electrolytes in renal tubles. Captopril, when given into a renal artery, exhibited no changes of renal function in the experinental kidney, whereas diuretic action with the same mechanism as shown in intravenous captopril in control kidney. Captopril, when injected into a carotid artery, showed increases in rates of urine flow in a small does which did not affect on renal action when it was administered intravenusly. Diuretic action induced by captopril was not influenced by renal artery denervation, propranolol and angiotensin II inhibiters. Above results suggest that captopril produced diuretic action along with renal hemodynamic changes by slight contraction of vas efferense and reduction of reabsorption rate of electrolytes in renal tubules, especilly distal tubules, that may be mediatedby endogenous substances.

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Dopamine $D_2$Receptor 효능제인 TNPA의 신장작용 (Renal Action of TNPA, a Dopamine $D_2$Receptor Agonist, in Dog)

  • 고석태;황명성
    • 약학회지
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    • 제45권2호
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    • pp.205-213
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    • 2001
  • The dopaminergic receptors were consisted of two distinct subtypes, $D_1$and $D_2$, each having different function. The present study was attempted to investigate the effects of R(-)-2,10,11-trihydroxy-N-n-propylnoraporphine (TNPA), a dopamine $D_2$receptor agonist, on renal function in dog. TNPA (5.0~15.0 $\mu$g/kg), when given into the vein, produced a dose-dependently antidiuresis along with the decrease in osmolar clearance ( $C_{osm}$) and urinary excretion of sodium and potassium ( $E_{Na}$ , and $E_{K}$). It also increased reabsorption rates of sodium and potassium in renal tubules ( $R_{Na}$ , $R_{K}$) without any changes in glomerular filtration rate (GFR), renal plasma flow (RPF) and free water clearance ( $C_{H2o}$). TNPA (0.5~1.5 $\mu$g/kg/min) infused into a renal artery decreased urine flow both in the experimental and the control kidneys. TNPA (1.5~5.0 $\mu$g/kg) administered via the carotid artery also greatly exhibited antidiuresis even at intravenously ineffective doses. Changes of renal function by TNPA given into both the renal artery and the carotid artery were almost the same aspect to those induced by intravenous TNPA. These results obtained from the present study suggest that TNPA produces antidiuresis by increasing the reabsorption rates of electrolytes in renal tubules, mainly distal tubule, through changing of central function.unction.

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ATP 의존성 $K^+$ Channel 차단작용이 있는 Glibenclamide가 개의 신장기능에 미치는 영향 (Effects of Glibenclamide, an ATP-dependent $K^+$ Channel Blocker, on Renal Function in Dog)

  • 고석태;임광남
    • Biomolecules & Therapeutics
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    • 제7권3호
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    • pp.249-256
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    • 1999
  • Glibenclamide(GLY)(1.0 and 3.0 mg/kg), an ATP-dependent $K^+$ channel blocker, when given into the vein in dogs, produced the diuretic action accompanied with the increase of osmolar clearance($C_{osm}$), urinary excretion of $Na^+$ and $K^+$ ($E_{Na}$, $E_K$), and with the decrease in reabsorption rates for $Na^+$ and $K^+$ in renal tubules ($R_{Na}$, $R_K$), and then ratios of $K^+$ against $Na^+$($K^+$/$Na^+$) were decreased. GLY did not affect mean arterial pressure at any doses used. At a low dose(0.1 mg/kg), GLY injected into a renal artery brought about the diurectic action in both experimental and control kidney, however at a higher dose(0.3 mg/kg), GLY appeared significant diuretic action in the control kidney, but not in experimental kidney and the decrease of glomerular filtration rates(GFR), renal plasma flow(RPF), $E_K$, and the increase in $E_{Na}$. In the control kidney, these changes in renal function exhibited the same aspect as shown in intravenous experiments. In experiments given into carotid artery of GLY(0.5 and 1.5 mg/kg), changes in all renal function included the increase in urine volume were the same pattern as shown in intravenous experiments. The above results suggest that glibenclamide produces diuretic action through central function and the action site of the GLY in kidney is the renal distal tubules in dogs.

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개의 신장기능에 미치는 메톡시베라파밀의 영향 (Effect of Methoxyverapamil on Renal Function of Dogs)

  • 고석태;이한구;나한광
    • 약학회지
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    • 제36권1호
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    • pp.46-55
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    • 1992
  • Methoxyverapamil, $Ca^{2+}$ channel blocker, when given intravenously by means of bolus, produced the transient increase of urine flow, and then methoxyverapamil was infused in this experiments. Methoxyverapamil, when infused into vein, elicited the increase of urine flow ancampanied with the increased glomeralar filtration rate(GFR), renal plasma flow(RPF), excretion amounts of sodium and potassium in urine($E_{Na},\;E_k$) and osmolar clearance(Cosm), wherease produced the no change of free water clearance($C_{H2O}$) and the reduction of reabsorption rates of sodium and potassium in reral tubules($R_{Na},\;R_k$). Methoxyverapamil, when infused into a renal artery, exhibited the diuretic action in only infused Kidney, at this time changes of renal function were the same aspect to that of intravenously infused methoxyverapamil. Methoxyverapamil, when infused into a carotid artery, exhibited the decreased urine flow along with the reduction of Cosm, $C_{H2O}\;and\;E_{Na}$. Above results suggest that methoxyverapamil possess both the diuretic action by direct action in kidney and antidiuretic action through the central function.

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Dopamine $D_2$ Receptor 차단제인 Raclopride의 신장작용 (Renal Action of Raclopride, a Dopamine $D_2$ Receptor Antagonist, in Dogs)

  • 고석태
    • 약학회지
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    • 제45권6호
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    • pp.683-693
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    • 2001
  • This study was attempted to investigate the effect of raclopride, a dopamine $D_2$ receptor antagonist, on renal function in dog. Raclopride (70-220$\mu\textrm{g}$/kg), when given intravenously, Produced antidiuresis along with the decrease in free water clearance ( $C_{H_2O}$), urinary excretion of sodium and potassium ( $E_{Na}$ , $E_{K}$), partially decreased osmolar clearance ( $C_{osm}$) and increased reabsorption rates of sodium and potassium in renal tubules ( $R_{Na}$ , $R_{K}$). Raclopride administered into a renal artery did not influence on renal function in small doses (10 and 30$\mu\textrm{g}$/kg), whereas exhibited the decrease of urine volume (Vol) and $C_{H_2O}$ both in experimental and control kidney in much dose (100$\mu\textrm{g}$/kg), at this time, the decreased rates of both Vol. and $C_{H_2O}$) were more prominent in control kidney rather than that elicited in experimental kidney, and then only via was decreased in control kidney but increased in experimental kidney. Raclopride administered via carotid artery (30-200$\mu\textrm{g}$/kg) did not influence at all on renal function. Antidiuretic action induced by raclopride given intravenously was not affected by renal denervation. Raclopride given into carotid artery was little effect on renal function without relation to renal denervation. Above results suggest that raclopride produces antidiuresis by potentiation of antidiuretic hormone (ADH) action in blood without increase of ADH secretion in posterior pituitary gland, it is not related to renal nerve function in dogs.ogs.s.

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가토 신장기능에 미치는 측뇌실내 Yohimbine의 영향 (Influence of Intracerebroventricular Yohimbine on the Renal Function of the Rabbit)

  • 국영종;김경근;김세종
    • 대한약리학회지
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    • 제21권2호
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    • pp.119-127
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    • 1985
  • 신장의 기능은 중추신경계 특히 교감신경계의 큰 영향을 받고 있으므로 ${\alpha}$-adrenoceptor의 길항제로 알려진 yohimbine을 가토의 측뇌실내로 (i.c.v.) 투여하여 신장 기능의 변동을 관찰하였다. Yohimbine 10 ${\mu}g/kg$ i.c.v. 로써 일관성인 Na 배설 증가와 함께 뇨량, 신혈류 및 사구체 여과율의 증가 경향을 볼 수 있었으나, 투여량을 증가시키면 그와 같은 작용은 소실되고 100 ${\mu}g/kg$ 과 300 ${\mu}g/kg$에 있어서는 신혈류 및 사구체 여과율의 심한 감소와 함께 현저한 항이뇨 작용과 Na 배설의 감소가 관찰 되었다. 이때 전신 혈압은 일과성으로 증가를 나타내었다. Reserpine 전처치 가토에 있어서는 100 ${\mu}g/kg$ i.c.v. yohimbine에 의한 항이뇨, Na 배설 감소작용, 신혈류 역학의 감퇴등이 소실되어 유의한 변동을 관찰할 수 없었다. 이때 전신 혈압의 상승도 소실 되었다. 일측 신장 신경을 제거하고 반대측 신장을 대조로 둔 표본에 있어서 yohimbine 100 ${\mu}g/kg$을 측뇌실내로 투여하면 대조신에서는 정상 가토에서와 같은 전형적인 항이뇨 작용이 나타났으나, 제신경(실험)신에 있어서는 신혈류 역학에는 변동이 없으나 Na 및 K 배설과 Cosm 및 뇨량의 유의한 증가를 나타냈다. 이때 신세뇨관에서의 Na 재흡수가 억제되었다. 전신 혈압의 변동은 정상 가토에서와 같이 일과성인 증가를 볼 수 있었다. 이상의 실험으로, 가토 측뇌실내 yohimbine은 신기능에 대하여 두 가지 상반되는 영향을 미치며, 첫째는 교감신경 긴장도의 증가로써 신혈류 및 사구체 여과율을 감소시켜 항이뇨 및 Na 배설 감소를 초래하는 작용과, 둘째는 신경 경로를 통하지 않고, 아마도 humoral factor를 통하여 신세뇨관에서 Na 재흡수를 억제하는 작용이 복합적으로 나타내는 것을 알 수 있었다.

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