• Title/Summary/Keyword: Renal excretion

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Effects of Renal Arterial Trifluoperazine on the Renal Function in Conscious Rabbit (무마취가토 신동맥내 투여에 의한 Trifluoperazine의 신장기능에 미치는 영향)

  • Koh, Gou Y.;Cho, Kyung W.
    • The Korean Journal of Physiology
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    • v.19 no.1
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    • pp.25-33
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    • 1985
  • Renal arterial infusion of renotropic agents has been a very useful technique in the renal function studies. This type of experiments have usually been conducted in the large animals such as dogs and sheep. In these animals a catheter can be placed in the site without much disturbances of renal blood flow. Rabbits as an experimental model, however, caused a disturbances of renal blood flow by a catheterization of renal artery by its properties. Therefore we have developed a new technique that allows a simple and selective access to one side of renal arteries and the other as a control, without any disturbances of renal function. The distance between the both bifurcations of renal arteries on abdominal aorta is about 7 mm. To locate the tip of catheter on one side renal artery, ascending cannulation performed via femoral artery was done. We did an experiment with the technique to clarify the effect of calmodulin inhibitor on the renal function. One of the phenothiazine derivatives, trifluoperazine known as a powerful calmodulin inhibitor. Trifluoperazine, actual dose ranges of $2.76-5.20\;ug\;{\cdot}\;kg^{-1}\;{\cdot}\;min^{-1}$, increased urine volume and glomerular filtration rate significantly. Significant increases in urinary excretion of sodium, chloride and potassium were found. Fractional excretion of sodium and free water clearance increased significantly. These data suggest that this new technique is very useful in field of renal physiology and that striking effect of trifluoperazine on the renal function may be caused by increasing the renal hemodynamics, and by the inhibition of sodium, chloride and potassium reabsorption in the renal tubules.

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Effect of Corticosteroids on Renal Excretion of Lithium (Lithium 이온의 배설에 미치는 Corticosteroid의 영향)

  • Oh, Shin-Yul;Ha, Jeoung-Hee;Lee, Kwang-Youn;Kim, Won-Joon
    • Journal of Yeungnam Medical Science
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    • v.3 no.1
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    • pp.229-235
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    • 1986
  • Lithium salts are being used increasingly to treat patient with affective disorders, especially acute mania, or bipolar manic-depressive illness. For therapeutic effect the lithium content must be maintained at or above a particular level. Lithium poisoning due to overdosage may be seen occasionally, and its course is determined primarily by the rate of renal lithium elimination. A search is therefore indicated for procedures that could raise the lithium clearance. In a number of reports renal lithium excretion has been studied in relation to the excretion of water, sodium, potassium and hydrogen, but effects of sodium or water on the lithium excretion has not yet been clarified. Hence the present study was undertaken to investigate the effects of corticosteroid on the excretion of lithium ion. The female rat(Sprague-Dowley), weighing from 200 to 300g, was injected with 50mg/kg of lithium chloride intraperitoneally, and then injected with graded dosage of fludrocortisone and dexamethasone in each group. During the injected rats were incubated in metabolic cage, 24 hour urine of rats were collected. At 24 hours after injection, the rats were sacrificed with guillotin, the blood were collected. And then the concentratios of $Na^+$, $K^+$, $Li^+$ of collected urine and serum were checked by Flame photometer. The results are summarized as follows; 1. Fludrocortisone decreased the serum concentration of lithium and increased the urinary excretion of lithium. 2. In the group treated with low dose of dexamethasone(0.1mg/kg), the serum concentration of lithium was decreased and high dose of dexamethasone (1mg/kg) increased the urinary excretion of lithium. 3. Fludrocortisone increased the urinary $[Na^+]/[K^+]$ in serum and decreased $[Na^+]/[K^+]$ in urine, but opposite effects were occurred in dexamethasone. By above results, it may be concluded that corticosteroid increased the urinary excretion of lithium and decreased the serum concentration of lithium, but it seems to be there is no relationship between these effects of corticosteroid and of the renal $Na^+$ or $K^+$ transport.

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Effects of Schizandriae fructus Extract on the Renal Function by Cardiovascular Regulation (심혈관 계통의 조절을 통한 신장 기능에 미치는 오미자의 효과)

  • Park Sung-Hye;Hahm Tae-Shik
    • Journal of the East Asian Society of Dietary Life
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    • v.15 no.5
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    • pp.558-565
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    • 2005
  • In this study, Schizandriae fructus which has been used in oriental medicine and folks remedy, was studied to apply to functional foods and oriental medicinal cuisine. The aim of this experiments was to investigate the effects of Schizandriae fructus water extract(SFE) on the renal function, plasma renin activity, plasma levels of aldosterone and arterial natriuretic peptide(ANP) in rats. Spargue-Dawley rats weigh 200g, were randomly assigned to 3 groups such as basal diet only(BDG), basal diet with $0.5{\mu}L/g$ SFE(LAG) and basal diet with $1.0{\mu}L/g$ SFE(HAG). The results were as follows. Water balance decreased significantly after administration for 2 weeks compared with the control period in HAG. Urine volume increased significantly after administration for 1 week compared with the control period in LAG and HAG. Urinary excretion of sodium increased significantly after administration for 1 week and for 2 weeks compared with the control period in LAG and HAG. Urinary excretion of creatinine increased significantly after administration for 2 weeks compared with the control period in HAG. Plama levels of ANL decreased significantly after administration of $SFE(0.5{\mu}L/g)$. Plasma levels of aldosterone decreased significantly after administration of $SFE(1.0{\mu}L/g)$. There results indicated that Schizandriae fructus can improve the renal function through increased urine volume and sodium excretion. These results imply that SFE could be used as a potent food resource for diet therapy or clinical nutrition.

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A Study on the Mechanism of Urinary and Biliary Excretion of Chloramphenicol in the Dog (개에 있어서 Chloramphenicol의 뇨(尿) 및 담즙중(膽汁中) 배설기전(排泄機轉)에 관(關)한 연구(硏究))

  • Kim, Sung-Won
    • Journal of Pharmaceutical Investigation
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    • v.7 no.1_4
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    • pp.38-50
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    • 1977
  • A study on the mechanism of biliary and urinary excretion of chloramphenicol has been performed in the dog. 1) Chloramphenicol administered intravenously to dogs with ligated renal pedicle, readily appeared in bile greater than in plasma. 6.9% of a 50mg /kg i. v. dose of chloramphenicol were excreted into bile within 100 minutes. During the same periods of above experiment, the bile/plasma concentration ratios(B/P ratios) were 46 to 87. 2) Chloramphenicol injected into the vein of dog was rapidly excreted into urine. 18% of the administered dose were excreted into urine within 70 minutes. In the same periods of this experiment, Ccm/Ccr ratios were greater than 1.0 in most cases. 3) In experiment of simultaneous measurement of biliary and urinary excretion of chloramphenicol, Ccm/Ccr ratios were less than 1.0 and B/P ratios were 50 to 52. 4) In experiment measured simultaneously biliary and urinary excretion both Ccm/Ccr and $C^Hcm$(hepatic clearance) were significantly declined by probenecid, but not affected by 2,4-DNP and aminophylline although 2,4-DNP increased only bile flow and aminophylline both bile and urine volume. 5) Ccm/Ccr and $C^Hcm$ were increased in proportion to increment of plasma concentration ranging from 3.3 to 30 mg% of chloramphenicol. But when plasma concentration were increased to 70mg %, Ccm/Ccr were not increased and $C_Hcm$ were reduced about 30% in comparison with values obtajned at 30mg% of chloramphenicol. 6) Free/Bound(free to bouid from) ratios ranging from 1.0 to 90.0mg% of chloramphenicol were 76.2+3.72% $(mean{\pm}S.E.)$ Above results suggest that chloramphenicol is excreted into bile by a process of active trasport, that excretion of chloramphenicol into urine was made up with dual process, reabsorption and secretion, and that renal secretion was attained by active trasport process although renal reabsorption process could not understand.

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Pharmacokinetic Study on DWC-751, a New Cephalosporin, in Rats and Mice (신규 세파로스포린계 항생물질 DWC-751의 흰쥐 및 생쥐 체내동태)

  • 심창구;최은진;이성원;박남준;강영숙;유영효
    • Biomolecules & Therapeutics
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    • v.1 no.2
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    • pp.204-210
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    • 1993
  • The distribution and excretion of DWC-751, a new cephalosporin, were examined in rats and mice following a single intravenous administration. DWC-751 in plasma and urine was determined by both HPLC and microbiological assay. The plasma concentration of the drug declined biexponentially. The initial and terminal half lives of the drug were 3.0 and 28.3 min, respectively. Binding of the drug to plasma proteins was 42.3%. The distribution volume at steacly-state ($Vd_{ss}$) was only 0.341 ι/kg, which is well correlated with the low n-octanol/water partition coefficient of the drug ($K_{o/w{\cong}0$) Actually, the drug was distributed to liver, kidney and lung with very low organ/plasma concentration ratio. The drug, was excreted mainly via renal excretion, i.e., the total($CL_T$) and apparent renal($CL_{R}$) clearances of the drug were 10.8 and 7.5 ml/min/kg, respectively.

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Effect of Unilateral Renal Arterial Infusion of Angiotensin II on Renal Function and Renin Secretion in Unanesthetized Rabbit (신동맥내 투여한 Angiotensin II가 신장기능 및 Renin 분비에 미치는 영향)

  • Kim, Jong-Hun;Kang, Nam-Poo;Kim, Young-Jin;Kim, Suhn-Hee;Cho, Kyung-Woo
    • The Korean Journal of Physiology
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    • v.23 no.2
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    • pp.363-375
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    • 1989
  • It has been well known that peripheral infusion of angiotensin II results in an increase of blood pressure, and an elevation of aldosterone secretion, and an inhibition of renin relase. However, the direct effect of angiotensin II on renal function has not been clearly established. In the present study, to investigate the effect of angiotensin II on renal function and renin release, angiotensin II (0.3, 3 and 10 ng/kg/min) was infused into a unilateral renal artery of the unanesthetized rabbit and changes in renal function and active and inactive renin secretion rate (ARSR, IRSR) were measured. In addition, to determine the relationship between the renal effect of angiotensin II and adenosine, the angiotensin II effect was evaluated in the presence of simultaneously infused 8-phenyltheophylline (8-PT, 30 nmole/min), adenosine A 1 receptor antagonist. Angiotensin II infusion at dose less than 10 ng/kg/min decreased urine flow, clearances of para-amino-hippuric acid and creatinine, and urinary excretion of electrolytes in dose-dependent manner. The changes in urine flow and sodium excretion were significantly correlated with the change in renal hemodynamics. Infusion of angiotensin II at 10 ng/kg/min also decreased ARSR, but it has no significant effect on IRSR. The change in ARSR was inversely correlated with the change in IRSR. The plasma concentration of catecholamine was not altered by an intarenal infusion of angiotensin II. In the presence of 8-PT in the infusate, the effect of angiotensin II on renal function was significantly attenuated, but that on renin secretion was not modified. These results suggest that the reduction in urine flow and Na excretion during intrarenal infusion of angiotensin II was not due to direct inhibitions of renal tubular transport systems, but to alterations of renal hemodynamics which may partly be mediated by the adenosine receptor.

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Pharmacokinetics and Renal Excretion of Sulfamethoxazole in Sheep

  • Shah, Bukhtiar;Mawaz, M.;Ijaz-Javed;Anwar-ul-Hassan-Gilani
    • Archives of Pharmacal Research
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    • v.12 no.3
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    • pp.154-159
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    • 1989
  • Pharmacokinetics and urinary excretion of sulfamethoxazole were investigated in healthy sheep. From the plasma disappearance curves after intravenous bolus injection (50 mg/kg), the half-life and volume of distribution were found to be 76 $\PM$14 min and 0.41 $\PM$ 0.18 lit/kg respectively. Body clearance was 4.06 $\PM$ 1.03 ml/kg/min. Very low Concentration of ddrug was present in plasma after 3 hours of administration and plasma level at 6 hour was only 4.4 $\PM$ 2.0 $\mu$g/ml. The renal clearance of sulfamethoxazole (22 $\PM$ 2.17 ml/min/10 kg) exeeded the creatinine clearance (9.78 $\PM$ 1, 57 ml/min/ 10 kg) which may be due to involvement of active tubular secretion and pH dependent back diffusion. Half of the dose of sulfamethoxazole was excreted as unchanged free drug while acetylated amine comprised of 20 percent within the first 6 hours of drug administration.

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Pharmacokinetics of Sulfamethoxazole in Rabbits with Experimental Renal Failure (실험적 신장장해 가토에서 설파메톡사졸의 약물동태학적 연구)

  • Choi, Jun-Shik;Lee, Chong-Ki
    • Journal of Pharmaceutical Investigation
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    • v.16 no.4
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    • pp.152-157
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    • 1986
  • The pharmacokinetics of sulfamethoxazole were investigated in rabbits with folate-induced renal failure. The blood level, area under the blood concentration curve (AUC) and biological half-life were increased significantly, and the urinary excretion was decreased significantly compared with those of normal rabbits. Correlation of serum creatinine concentration and AUC, biological half-life, and correlation of creatinine clearance and renal clearance have linear relationship respectively. From these results, dosage regimen of sulfamethoxazole is considered to be adjusted for effective and safe therapy in renal failure.

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Pharmacokinetics of Acetaminophen in Rabbits with Experimental Renal Failure (실험적 신장장해 가토에서 아세트아미노펜의 약물동태학적 연구)

  • 최준식;이종기
    • YAKHAK HOEJI
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    • v.29 no.4
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    • pp.216-219
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    • 1985
  • The phormacokinetics of acetaminophen were investigated in rabbits with folate-induced renal failure. The blood level, the area under the blood concentraction curve(AUC) and the biological half-life were increased significantly, and the urinary excretion was decreased significantly as compared with those of normal rabbits. Serum creatinine concentration and AUC, creatinine clearance and renal clearance have linear relationship respectively. Dosage regimen of acetaminophen was considered to be adjusted in renal failure.

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Effect of Glycyrrhizae Radix Extract on Ischemia-Induced Acute Renal Failure in Rabbits (감초(甘草) 추출물이 허혈에 의한 토끼의 급성 신부전에 미치는 영향)

  • Kim Gyung-Ho;Jeong Hyun-Woo;Park Jin-Young;Lee Young-Joon;Cho Su-In
    • Journal of Physiology & Pathology in Korean Medicine
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    • v.20 no.1
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    • pp.98-102
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    • 2006
  • The present stuby was carried out to determine if Radix Glycyrrhizae extract exerts beneficial effect against the ischemia-induced acute renal failure in rabbits. Radix Glycyrrhizae was known to reinforce the function of the spleen and replenish Qi, remove heat and counteract toxicity, dispel phlegm and relieve cough, alleviate spasmodic pain, and to moderate drug actions. It's indications are weakness of the spleen and the stomach marked by lassitude and weakness; cardiac palpitation and shortness of breath; cough with much phlegm; spasmodic pain in the epigastrium, abdomen and limbs; carbuncles and sores. It is often used for reducing the toxic or drastic actions of other drugs. Rabbits were treated with Radix Glycyrrhizae extract via i.v., followed by renal ischemia/reperfusion. Fractional excretion of glucose and phosphate, lipid peroxidation and light microscopy were done to evaluate the beneficial effect of Radix Glycyrrhizae extract on ischemia/reperfusion induced acute renal failure. Renal ischemia/reperfusion caused increase of fractional excretion of glucose and phosphate increased in ischemia-induced animals, which was partially prevented by Radix Glycyrrhizae extract treatment. Ischemia/reperfusion increased lipid peroxidation, which was prevented by Radix Glycyrrhizae extract administration. And the beneficial effect of Radix Glycyrrhizae extract on ischemia/reperfusion induced kidney injury was shown through the light micrographic observation. These results indicate that lipid peroxidation plays a critical role in ischemia-induced acute renal failure. Radix Glycyrrhizae extract exerts the protective effect against acute renal failure induced by renal ischemia/reperfusion.