• 제목/요약/키워드: Na-K-ATPase

검색결과 274건 처리시간 0.023초

SELECTIVE TOXICITY OF CHRONIC LEAD INGESTION TO CENTRAL CATECHOLAMINERGIC NERVOUS SYSTEM IN RATS

  • Ryu, Jong-Hoon;Cheong, Jae-Hoon;Chin, Kang;Ko, Kwang-Ho
    • Toxicological Research
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    • 제6권2호
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    • pp.131-142
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    • 1990
  • The selective toxicity of lead was tested in central catecholaminergic nervous system of postnatally lead exposed rats. Three groups of animals were prepared; 1) rats exposed to low dose of lead (0.05%PbAc); 2) rats exposed to high dose of lead(0.2%PbAc); 3) age-matched normal control rats. At2, 4, 6 and 8 weeks of age brain and body weight gain, and lead concentrations in brain tissues were measured. At the same ages tyrosine hydroxylase and Na-K ATPase activities were measured in the 4 brain areas of each animal. Body weight gain was decreased after 6 weeks of age in rats exposed to high dose of lead. Concentrations of lead in whole brain tissues were increased from 0.37 to 0.83 (ng/mg wet tissue) in these animals. in lead exposed rats, tyrosine hydroxylase activities were higher but Na-K ATPase activities were lower than those of age-matched control animals. Brain areas where tyrosine hydroxylase activities were detected without concomitant changes of Na-K ATPase activities were pons-medulla (2 weeks of age) and telencephalon (6 weeks of age) in rats exposed to low dose of lead, and those in rats exposed to high dose of lead were midbrain (4 and 6 weeks of age). These data indicate that catecholaminergic nervous system in the brain areas described above could selectively be affected by lead.

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인삼 알콜 추출물이 개구리 피부를 통한 short circuit current에 미치는 영향 (Effect of Ginseng Alcohol Extract on Short-Circuit Current Across the Frog Skin)

  • 이중우;김희중;강두희
    • The Korean Journal of Physiology
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    • 제10권1호
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    • pp.35-40
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    • 1976
  • In an attempt to examine the effect of ginseng on sodium transport across the biological membrane, we have studied effects of ginseng alcohol extract on the short-circuit current(SCC) and the $Na^+-K^+$-activated ATPase activity in isolated frog skin preparations. 1. Ginseng alcohol extract applied to the mucosal surface of the frog skin significantly increased SCC at low concentration($1{\sim}10mg%$) but decreased SCC at higher concentration($50{\sim}250mg%$). 2. Similarly, when the drug was added to the serosal bathing medium, the SCC was stimulated at low doses($5{\sim}25mg%$) and inhibibited at high doses($50{\sim}250mg%$). 3. $Na^+-K^+$-activated ATPase activity of the frog skin epidermal homogenate was significantly inhibited by ginseng alcohol extract, the effect being proportional to the concentration of the drug in the incubation mixture. These results may suggest that a low dose of ginseng alcohol extrat enhances the transepithelial sodium transport probably by increasing the permeability of outer membrane of the transporting cell to sodium ion, whereas a high dose of drug reduces the sodium transport primarly by inhibiting $Na^+-K^+$ ATPase mediated active transport step.

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Glycyrrhizin의 항산화 활성 및 Gentamincin 유도 급성 신부전 백서 신장의 Na,K-ATPase 발현에 미치는 영향 (Antioxidant Activities of Glycyrrhizin and its Effect on Renal Expression of Na,K-ATPase in Gentamicin-induced Acute Renal Failure Rats)

  • 손은진;강대길;이안숙;이윤미;윤명호;염기복;노숙연;이호섭
    • 동의생리병리학회지
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    • 제17권2호
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    • pp.542-548
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    • 2003
  • The present study was aimed to investigate whether glycyrrhizin, which is the major component of Glycyrrhiza uralensis, has an antioxidant effect and regulatory effect on Na,K-ATPase in gentamicin-induced acute renal failure (ARF) rats . It is well known that reactive oxygen species (ROS), such as superoxide anion and hydroxyl radical, are main pathophysiological factor in gentamicin-induced ARF. Glycyrrhizin showed potent in vitro antioxidant activity, especially superoxide scavenging activity, in a dose-dependent manner. Plasma lipid peroxide level was restored to normal level by oral administration of glycyrrhizin (200 mg/kg) in the gentamicin-induced ARF rats. The expression of Na,K-ATPase α1 subunit was restored in the gentamicin-induced ARF rats by administration of glycyrrhizin, whereas β1 subunit was not restored. The renal functional parameters including urine volume, cleatinine clearance, urine osmolality, solute-free water reabroption were also partially restored in gentamicin-ARF rats by administration of glycyrrhizin. Taken together, the amelioration of renal functions and the expression of sodium pump by administration of glycyrrhizin in the gentamicin-induced ARF was appear to be mediated by the scavenging of ROS.

성향정기산(星香正氣散)이 저산소(低酸素) 발작상태(發作狀態)의 고양이 대뇌(大腦) 피질(皮質) 절편(切片)의 이온 함량(含量)과 대사(代謝)에 미치는 효과(效果) (Effects of Sunghyangchungisan(SHCS) on Cellular Ion Contents and Metabolism in Cat Brain Cortical Slices under Hypoxic Insult)

  • 김영균;권정남;조수인;김나리
    • 대한한방내과학회지
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    • 제22권4호
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    • pp.537-546
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    • 2001
  • 목적: 고양이 대뇌피질 절편을 사용하여 저산소 발작을 유발한 뒤, 성향정기산이 세포의 이온 환경과 대사의 변화와 관련하여 어떤 영향을 미치는지 연구하였다. 방법: 고양이의 대뇌 피질 절편에 저산소 발작을 유발한 뒤 flame photometry scintillation, Spectrophotometry, method of Jorgensen and Skou, method of Fiske and Subbarow, oxygen monitor, luciferin-luciferase assay 등을 이용하여 세포내 이온함량과 세포대사를 측정하였다. 결과: 성향정기산은 저산소증으로 유발된 세포내의 $K^+$$Na^+$의 함량의 변화를 현저하게 지연시켰다. 성향정기산은 Na-K-ATPase의 억제제인 와바인 또는 대사억제제인 2.4-DNP로 유발된 세포내 $K^+$함량의 변화에 어떤 효과도 보이지 않았다. 또한, 정상 상태의 절편뿐만 아니라 저산소 상태의 절편에서 분리된 과립체의 분설에 있어서 Na-K-ATPase의 활동도에 영향을 미치지 않았다. 성향정기산은 저산소 발작하에서 산소 소비량과 세포의 ATP함량이 떨어지는 것을 현저하게 막았다. 또한 ATP를 생산하는 기능을 보호하는 저산소 조직의 사립체를 돕는데 효과적이었다. 결론: 성향정기산은 대뇌 조직의 저산소 발작하에서 세포의 이온 환경과 대사를 보호하는 유익한 효과가 있음을 알 수 있다.

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이가 양이온과 세포막 인산화 반응의 억제제가 Synaptosome에서의 소듐-칼슘 교환이동에 미치는 영향 (Influences of Divalent Cations and Membrane Phosphorylation Inhibitors on $Na^+-Ca^{++}$ Exchange in Synaptosomes)

  • 신용규;이정수;이광수
    • 대한약리학회지
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    • 제24권2호
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    • pp.179-187
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    • 1988
  • 소듐에 의한 칼슘의 유리는 verapamil, TTX, TEA의 영향을 받지 않았다. $100\;{\mu}M\;Cd6{++}$$Zn^{++}$은 소듐에 의한 칼슘 유출을 유의하게 억제하였다. $Cd^{++}$$Ki\;100\;{\mu}M\;Cd6{++}$로써 비상경적으로 소듐-칼슘 교환이동을 억제하였다. $Cd^{++}$은 SH기의 산화를 초래하였으나, $Zn^{++}$은 거의 영향을 나타내지 않았다. $Cd^{++}$$Zn^{++}$$Na^+-Ca^{++}$ ATPase를 효과적으로 억제하였으나 $Ca^{++}-Mg^{++}$ ATPase를 약간 억제시켰다. Carbonyl cyanide chlorophenylhydrazone, 2,4-dinitrophenol과 sodium arsenate는 소듐에 의한 칼슘 유리를 촉진하였다. Dibucaine과 oligomycin은 소듐에 의한 칼슘의 유리를 약간 억제하였으나, 이에 반하여 ouabain은 약간 촉진하였다. 이상의 실험 결과로부터 신경 세포막에서의 소듐-칼슘 교환은 이온 통로를 통하여 이루어지지 않을 것으로 시사되었다. 소듐-칼슘 교환이동은 $Cd^{++}$에 민감하게 억제되고 이 이동기전에 synaptosome막의 SH기가 관여할 것으로 사료되었다. 또한 소듐-칼슘 교환은 세포막 단백질 성분의 인산화 반응 동안에 억압될 것으로 추정되었다.

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황금약침액(黃芩藥鍼液)이 가토(家兎) 신피질절편(腎皮質切片)에서 수은(水銀)에 의한 세포막(細胞膜) 물질이동(物質移動) 기능장애(機能障碍)에 미치는 영향(影響) (Beneficial Effect of Scutellaria baicalensis Georgi Extract on Mercury Chloride-Induced Membrane Transport Dysfunction in Rabbit Renal Cortical Slices)

  • 김홍수;송춘호
    • 대한약침학회지
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    • 제4권2호
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    • pp.49-56
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    • 2001
  • This study was undertaken to determine whether Scutellaria baicalensis Georgi (SbG) extract exerts the protective effect against $HgCl_2$-induced alterations in membrane transport function in rabbit renal cortical slices. The slices were treated with 0.1 mM $HgCl_2$ for 60 min at $37^{\circ}C$. $HgCl_2$ caused an inhibition in PAH uptake by renal cortical slices. Such an effect was accompanied by depressed $Na^+-K^+$-ATPase activity and ATP depletion. SbG prevented $HgCl_2$-induced inhibition of PAH uptake in a dose-dependent manner at the concentration ranges of 0.01-0.1%. $HgCl_2$-induced inhibition of $Na^+-K^+$-ATPase activity and ATP depletion were significantly prevented by 0.05% SbG. These results suggest that SbG prevents $HgCl_2$-induced alterations in membrane transport function in rabbit renal cortical slices. Such protective effects of SbG may be attributed to inhibition of peroxidation of membrane lipid.

($KNO_3$를 첨가한 양액에서 상추의 생육 및 마이크로솜 ATPase 활성 변화 (Growth and Microsomal ATPase Activity of Lettuce(Lactuca sativa. L.) Cultured in the $KNO_3-Added$ Nutrient Solution)

  • 이경자;강보구;김현주;민경범;김영기
    • 한국환경농학회지
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    • 제20권1호
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    • pp.28-33
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    • 2001
  • 본 시험에서 사용된 상추는 대조구인 양액과 양액에 30 mM $KNO_3$, 혹은 양액에 50 mM $KNO_3$를 첨가한 염류농도가 다른 3가지의 양액에서 재배하였으며 이들 양액의 EC는 각각 1.0, 4.5, 6.5 ds/m이었다. 상추의 생육은 처리간에 차이를 보였으며 $KNO_3$를 첨가하여 염류농도를 높여준 용액에서 재배한 상추는 잎끝이 마르는 생리적 장해를 보이면서 발아율의 감소는 물론 초장, 경태, 엽장 및 엽폭 등 성장이 대조구와 비교하여 현저히 부진하였다. 이들 양액에서 자란 상추의 뿌리로부터 마이크로솜을 분리하여 ATPase의 특성을 조사하였다. 마이크로솜 ATPase의 활성은 대조구에 비하여 양액에 30 mM $KNO_3$와 50 mM $KNO_3$를 첨가한 용액에서 자란 상추에서 더 높았다. 상추뿌리로부터 분리한 마이크로솜 ATPase의 총활성은 재배양액 조건에 관계없이 pH 7.0에서 최대로 나타났다. ATPase의 활성은 반응용액의 $K^+$ 농도를 증가시키면 증가하였고 반응용액에 $Na^+$ 농도를 증가시키면 감소하였다. $K^+$에 의한 활성증가 효과는 양액에서 재배한 대조구보다 $KNO_3$를 첨가하여 EC를 높여준 양액에서 재배한 상추뿌리의 마이크로솜 ATPase에서 더 크게 나타났다. 이러한 결과는 생육환경내 $KNO_3$ 농도의 증가에 따라 뿌리의 생리활성을 조절하는 ATPase의 활성이 증가함을 보여준다.

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Effects of High Glucose on Na,K-ATPase and Na/glucose Cotransporter Activity in Primary Rabbit Kidney Proximal Tubule Cells

  • Han, Ho-Jae
    • The Korean Journal of Physiology
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    • 제29권1호
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    • pp.69-80
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    • 1995
  • Renal proximal tubular hypertrophy and hyperfunction are known to be early manifestations of experimental and human diabetes. As the hypertrophy and hyperfunction have been suggested to be central components in the progression to renal failure, an understanding of their underlying causes is potentially important for the development of therapy. A primary rabbit kidney proximal tubule cell culture system was utilized to evaluate the possibility that the renal proximal tubular hypertrophy and hyperfunction observed in vivo in diabetes mellitus, can be attributed to effects of elevated glucose levels on membrane transport systems. Primary cultures of rabbit proximal tubules, which achieved confluence at 10 days, exhibited brush-border characteristics typical of proximal tubular cells. Northern analysis indicated $2.2{\sim}2.3$ and 2.0 kb Na/glucose cotransporter RNA species appeared in fresh and cultured proximal tubule cells after confluence, repectively. The cultured cells showed reduced Na/glucose cotransporter activity compared to fresh proximal tubules. Primary cultured proximal tubule cells incubated in medium containing 20 mM glucose have reduced ${\alpha}-MG$ transport compared to cells grown in 5 mM glucose. In the proximal tubule cultures incubated in medium containing 5 mM or 20 mM glucose, phlorizin at 0.5 mM inhibited 0.5 mM ${\alpha}-MG$ uptake by 84.35% or 91.85%, respectively. The uptake of 0.5 mM ${\alpha}-MG$ was similarly inhibited by 0.1 mM ouabain (41.97% or 48.03% inhibition was observed, respectively). In addition, ${\alpha}-MG$ uptake was inhibited to a greater extent when $Na^{+}$ was omitted from the uptake buffer (81.86% or 86.73% inhibition was observed, respectively). In cell homogenates derived from the primary cells grown in 5 mM glucose medium, the specific activity of the Na/K-ATPase $(6.17{\pm}1.27\;{\mu}mole\;Pi/mg\;protein/hr)$ was 1.56 fold lower than the values in cell homogenates treated with 360 mg/dl D-glucose, 20 mM $(9.67{\pm}1.22\;{\mu}mole\;Pi/mg\;protein/hr)$. Total $Rb^{+}$ uptake occurred at a significantly higher rate (1.60 fold increase) in primary cultured rabbit kidney proximal tubule cell monolayers incubated in 20 mM glucose medium $(10.48{\pm}2.45\;nM/mg\;protein/min)$ as compared with parallel cultures in 5 mM glucose medium. $Rb^{+}$ uptake rate in 5 mM glucose medium was reduced by 28% when the cultures were incubated with 1 mM ouabain. The increase of the $Rb^{+}$ uptake by rabbit kidney proximal tubule cells in 20 mM glucose could be attributed primarily to an increase in the rate of ouabain-sensitive $Rb^{+}$ uptake $(5\;mM\;to\;20\;mM;\;4.68{\pm}0.85\;to\;8.38{\pm}1.37\;nM/mg\;protein/min)$. In conclusion, the activity of the renal proximal tubular Na,K-ATPase is elevated in high glucose concentration. In contrast, the activity of the Nafglucose cotransport system is inhibited.

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인삼이 적혈구세포의 해당과정 및 막 투과도에 미치는 영향 (Effect of Panax Ginseng Saponin on Metabolism and Ion Transport in Human Erythrocytes)

  • 강복순;한경희
    • The Korean Journal of Physiology
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    • 제17권2호
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    • pp.125-133
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    • 1983
  • Red cell glycolytic intermediates, metabolites and metabolic ratios were studied. Glycolytic intermediates were measured in neutralized perchloric acid extracts of red cell suspensions after 3 hr incubation at $37^{\circ}C$ in the presence and absence of saponin. Adenosine triphosphate(ATP), adenosine diphosphate(ADP), pyruvate and lactate were measured by enzymatic procedures involving stoichiometric oxidation or reduction of a pyridine nucleotide. Glucose was determined using glucose oxidase after zinc hydroxide extraction. The redox state was calculated from the lactate dehydrogenase equilibrium. Adenosine triphosphatase activity(ATPase) was measured by determining the amount of phosphate released from ATP by washed erythrocyte membranes(ghost) during 20 min. incubation. Both total hydrolysis and the amount of hydrolysis that occured in the presence of ouabain were measured. The second measurement yields Mg-ATPase and represents nonspecific ATPase activity of the membranes. The difference between total and Mg-ATPase activity can be attributed to Na-K-ATPase. For the measurement of sodium fluxes, human erythrocytes were preincubated in $^{22}Na$ for 3 hr at $37^{\circ}C$, washed and suspended in a tracer-free medium. The amount of $^{22}Na$ transported out of cells at any time was determined by analysis of supernatant samples taken at various time after addition of the labeled cells to isotope-free medium. The cells and medium were separated and the radioactivity appearing in the medium was measured. From the total radioactivity in the suspension and the radioactivity appearing in the medium at known time, the rate constant for sodium release was computed. The results are summarized as follows: 1) ATP and ATP/ADP were found to increase at every concentration of saponin tested whereas ADP declined at every cone. of saponin. The increase in pyruvate and lactate were observed at every cone, of saponin and thus $NAD^+/NADH$ computed from pyruvate/lactate also increased. Glucose utilization was stimulated by saponin. 2) $Na^+-K^+-ATPase$ activities showed a biphasic response to saponin, first increasing in lower concentration and then decreasing in higher concentration of saponin. 3) The efflux of sodium was significantly increased by saponin in the range of 5 to 10 mg%. The stimulatory effect of saponin on the rate constants for active(ouabain-sensitive) sodium efflux was inhibited by addition of ouabain.

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Effects of High Glucose Levels on the Protein Kinase C Signal Transduction Pathway in Primary Cultured Renal Proximal Tubule Cells

  • Han, Ho-Jae;Kang, Ju-Won;Park, Kwon-Moo
    • The Korean Journal of Physiology
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    • 제30권2호
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    • pp.257-267
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    • 1996
  • Diabetes mellitus is associated with a wide range of pathophysiologic changes in the kidney. This study was designed to examine the mechanisms by which glucose modulates the expression of polarized membrane transport functions in primary cultured rabbit renal proximal tubule cells. Results are as follows: The rate of 30 minute $Rb^{+}$ uptake was significantly higher($137.76{\pm}5.40%$) in primary renal tubular cell cultures treated with 20 mM glucose than that of 5 mM glucose. Not the level of mRNA for the ${\alpha}$ subunit of Na, K-ATPase but that of ${\beta}$ subunit was elevated in primary cultures treated with high glucose. The initial rate of methyl-${\alpha}$-D-glucopyranoside(${\alpha}$-MG) uptake was significantly lower($71.91{\pm}3.02%$) in monolayers treated with 20 mM glucose than that of 5 mM glucose. There was a tendency of an increase in phlorizin binding site in cells treated with 5 mM glucose. However, 3-O-methyl-D-glucose(3-O-MG) uptake was not affected by glucose concentration in culture media. TPA inhibited $Rb^{+}$ uptake by $63.61{\pm}1.94\;and\;45.80{\pm}1.36%$ and ${\alpha}$-MG uptake by $48.54{\pm}3.69\;and\;41.87{\pm}6.70%$ in the cells treated with 5 and 20 mM glucose, respectively. Also TPA inhibited mRNA expression of Na/glucose cotransporter in cells grown in 5mM glucose medium. cAMP significantly stimulated ${\alpha}$-MG uptake by $114.65{\pm}5.70%$ in cells treated with 5mM glucose, while it did not affect ${\alpha}$-MG uptake in cell treated with 20 mM glucose. However, cAMP inhibited $Rb^{+}$ uptake by $76.69{\pm}4.16\;and\;66.87{\pm}2.41%$ in cells treated with 5 and 20 mM glucose, respectively. In conclusion, the activity of the renal proximal tubular Na,K-ATPase is elevated in high glucose concentration. In contrast, the activity of the Na/glucose cotransport system is inhibited. High glucose may in part affect the activity of the Na,K-ATPase and the Na/glucose cotransport system by controlling the protein kinase C and/or A signal transduction pathway in primary cultured renal proximal tubule cells.

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