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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Pflügers Archiv 379 (1979), S. 49-52 
    ISSN: 1432-2013
    Keywords: Renal collecting duct ; Na+ reabsorption ; Adrenalectomy ; Acetazolamide ; Amiloride
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract Using the shrinking droplet method and simultaneous perfusion of the peritubular capillaries the isotonic reabsorption of Ringer's solution from the papillary collecting ducts was measured. Under control conditions the volume reabsorption from the papillary collecting ducts wasJ v±SE=2.6±0.1 · 10−5 cm3 · cm−2 · s−1. In rats which were on low Na+ diet,J v increased to 127%, and in adrenalectomized animals it decreased to 34% of the control value. Three hours after application of aldosterone in the adrenalectomized animalsJ v was partially restored to 63% of control rats. Amiloride 10−4 M, added to the luminal perfusate, produced a strong inhibition ofJ v (to 32% of control). Acetazolamide, 10−4 M, added to both perfusates, reducedJ v very strongly (to 40% of control), while omission of bicarbonate reduced it only to 77% of control. Acetazolamide, added to bicarbonate-free perfusates, did not result in a significant further reduction ofJ v. The data indicate that the Na+ reabsorption from the papillary collecting duct is controlled by mineralocorticoids. Furthermore, they suggest the existence of two transport mechanisms in the luminal cell membrane: 1. An amiloride-sensitive entry step and 2. an entry step via a Na+−H+-countertransport mechanism, the latter being less important.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1432-2013
    Keywords: Nephron ; Sodium Transport ; Calcium Ions ; Antidiuretic Hormone ; Nierentubuli ; Natriumtransport ; Calciumionen ; Antidiuretisches Hormon
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Description / Table of Contents: Zusammenfassung An proximalen Tubuli und medullären Sammelrohren von Ratten wurde der isotone Natriumtransport ΆNa iso und die Gleichgewichtskonzentrationsdifferenz Δc Na bei Nettosubstanzfluß und Nettovolumenfluß Null gemessen. Die peritubulären Capillaren waren bei diesen Messungen künstlich durchströmt, und zwar in der ersten Serie mit einer Calcium-freien Lösung bzw. einer Lösung, die 3 mÄq Ca++/l enthielt, in einer zweiten Serie mit einer Lösung, die kein ADH bzw. 5 mE/l ADH enthielt. Zugabe von ADH oder Weglassen von Calcium aus dem Perfusat hatten keinen Einfluß auf den isotonen Natriumtransport. Die Natrium-Gleichgewichtskonzentration bei Nettosubstanzfluß Null war jedoch stark erniedrigt. Die Befunde sprechen dafür, daß bei Fehlen von Calcium oder Zugabe von ADH die Permeabilität für Natriumionen erhöht ist, daß aber im Gegensatz zum Verhalten von Amphibienhäuten der aktive Natriumtransport unbeeinflußt bleibt.
    Notes: Summary Isotonic sodium transport, ΆNa iso, and the transtubular concentration difference, Δc Na, at equilibrium under conditions of zero net solvent and solute fluxes were measured in the proximal tubules and medullary collecting ducts of rats. Peritubular capillaries were simultaneously perfused, in the first group of experiments with a solution containing no Ca++ or 3 mEq/l of Ca++, and in the second group with a solution which contained either no ADH or 5 mU/l of ADH. Addition of ADH or omission of Ca++ from the capillary perfusate did not affect isotonic sodium transport. The equilibrium concentration difference of sodium, Δc Na, was, however, greatly reduced under the same conditions. The results indicate that in the absence of Ca++, or in the presence of ADH, the permeability for sodium is increased, but that in contradistinction to the behaviour of amphibian skins, active sodium transport remains unaffected.
    Type of Medium: Electronic Resource
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  • 3
    Electronic Resource
    Electronic Resource
    Springer
    Pflügers Archiv 308 (1969), S. 111-126 
    ISSN: 1432-2013
    Keywords: Micropuncture ; Functional Isolated Collecting Ducts ; Sodium Transport ; Sodium Permeability ; Aldosterone ; Mikropunktion ; funktionell isoliertes Sammelrohr ; Natriumtransport ; Natriumpermeabilität ; Aldosteron
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Description / Table of Contents: Zusammenfassung Durch Mikropunktion und -perfusion der Vasa recta an der freigelegten Nierenpapille von Wistarratten wurde es möglich, die schwankenden Harnstoff- und Natriumkonzentrationen im Interstitium des Nierenmarks zu beseitigen und definierte Versuchsbedingungen für die Sammelrohre zu schaffen. An diesen „funktionell” isolierten Sammelrohrabschnitten wurdenin situ sowohl die Gleichgewichtskonzentrationsdifferenz bei fehlendem Nettosubstanz-und -volumenfluß (ΔC Na) als auch der Nettonatriumtransport (Φ Na) bei gleicher Natriumkonzentration auf beiden Seiten der Sammelrohrwand gemessen. Es konnte gezeigt werden, daß unter diesen Versuchsbedingungen, bei denen die Tiere in Antidiurese sind, die Natriumrückresorption aus den Sammelrohren isoton abläuft. Die Versuche wurden an vier Tiergruppen durchgeführt: an adrenalektomierten Tieren, an normal ernährten Tieren, an salzarm ernährten Tieren und an normal ernährten Tieren, die zusätzlich Aldosteron bekamen. Φ Na iso war bei adrenalektomierten Tieren 1,2·10−5 bei normal ernährten Tieren 3,1·10−5, bei salzarm ernährten Tieren 4,1·10−5 und bei normal ernährten Tieren unter Aldosteronsubstitution 4,2·10−5 μÄq·mm−2·sec−1. Die entsprechenden ΔC Na werte waren 4, 31, 98, 93 mÄq/l. Unter der Annahme, daßΦ Na iso die Transportkapazität des Systems angibt und daß ΔC Na bei gegebenemΦ Na iso umgekehrt proportional der Leckpermeabilität für Natriumionen ist, kann man aus den vorliegenden Daten schließen, daß Aldosteron am Sammelrohr nicht nur die innere Transportkapazität für Na erhöht, sondern auch die Leckpermeabilität für Na herabsetzt.
    Notes: Summary Micropuncture and -perfusion were performed on vasa recta of the exposed renal papilla in Wistar rats in order to abolish uncontrollable changes of sodium and urea concentration within the medullary interstitium. Thereby the collecting tubules could be studied under well defined experimental conditions. The transport of sodium in the absence of a transtubular concentration difference (Φ Na) as well as differences in steady state concentration of sodium (ΔC Na) at zero net flux of water and solutes were measuredin situ in these functionally isolated collecting ducts. Four groups of animals were studied: adrenalectomized rats, control rats on a normal diet, rats on low sodium diet and normally fed rats with additional aldosterone administration. The respectiveΦ Na were 1.2, 3.1, 4.1 and 4.2·10−5 μeq×mm−2×sec−1, while ΔC Na were 4, 31, 98 and 93 meq/l. One may assume thatΦ Na iso is a measure of the transport capacity of the system and that ΔC Na at a givenΦ Na iso is inversely proportional the leak permeability. Under these conditions our data suggest, that aldosterone causes an increase of intrinsic transport capacity and at the same time a decrease of leak permeability for sodium ions.
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  • 4
    ISSN: 1432-2013
    Keywords: Electron-attracting groups ; Electron-donating groups ; Hydrophobicity ; Amiloride ; Cimetidine ; N-methyl-4-phenylpyridinium (MPP+)
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract In order to evaluate whether N-containing substrates interact with the organic “anion” (p-aminohippurate, PAH) or only with the organic “cation” (N 1-methylnicotinamide, NMeN) transport system or with both, the stop-flow peritubular capillary microperfusion method was applied in the rat kidney in situ and the apparent K i values of several classes or organic substrate against contraluminal NMeN and PAH transport were determined. Organic “anion” and organic “cation” transport are in inverted commas because neither transporter sees the degree of ionization in bulk solution, and they also accept nonionizable substrates [Ullrich KJ, Rumrich G (1992) Pflügers Arch 421:286–288]. Amines must be sufficiently hydrophobic (phenylethylamine, piperidine, piperazine) in order to interact with NMeN transport. Additional Cl, Br, NO2 or other electronegative groups render them inhibitory towards PAH transport also. Such bisubstrate amines were identified as follows: metoclopramide, bromopride, diphenhydramine, bromodiphenhydramine, verapamil, citalopram, ketamine, mefloquine, ipsapirone, buspirone, trazodone, H7 and trifluoperazine. Imidazole analogues interact with both transporters if they bear sufficiently hydrophobic alkyl or aryl groups or electronegative sidegroups. Bisubstrate imidazole analogues are tinidazole, pilocarpine, clonidine, azidoclonidine and cimetidine. Pyridines and thiazoles interact with the NMeN transporter if they have an additional ring-attached NH2 group. Again with an additional Cl, Br, or NO2 group the aminopyridines and aminothiazoles also become inhibitors for the PAH transporter. Amongst the guanidines only substances with several electronegative side-groups such as guanfacine, amiloride, benzylamiloride and ranitidine, interact with both transporters. Amongst the phenylhydrazines only 4-bromophenylhydrazine interacts with the NMeN transporter and 4-nitrophenylhydrazine with both transporters. Quinoline (isoquinoline) and its amino and hydroxy analogues interact with both transporters, their pKa values correlate directly with the affinity to the NMeN transporter and reciprocally with their affinity to the PAH transporter. In experiments with labelled substrates only the sufficiently hydrophilic cimetidine, amiloride and ranitidine show a saturable transport, which can be inhibited by probenecid (apalcillin) and tetraethylammonium in an additive manner. The highly hydrophobic substrates verapamil, citalopram, imipramine, diltiazem and clonidine enter the cell very fast in an unsaturable and uninhibitable manner, apparently in the undissociated form, since N-methyl-4-phenylpyridinium, which — disregarding its ionization — is similarly hydrophobic, shows a transport behaviour similar to that of tetraethylammonium [Ullrich et al. (1991) Pflügers Arch 419:84–92]. Ethidium bromide and dimidium bromide, which have a permanent cationic quaternary nitrogen and two sufficiently electronegative NH2 groups, also interact with both transporters. The data indicate that a molecule qualifies as a bisubstrate if it carries both the essentials for organic anion (PAH) transport: hydrophobicity, sufficient acidity or electron-attracting O, OH, Cl, Br, NO2 groups, plus the essentials for organic cation transport: hydrophobicity, sufficient basicity or electron-donating N-containing groups. The nitrogen atoms in the N-containing molecules quinoline (pK a 4.9), isoquinoline (pK a 5.4) and benzylpyridine (pK a 5.13) are of such low basicity that they apparently can also interact with the PAH transporter. Apparent hydrophobicity (disregarding ionization) determines interaction with the transporters, while real hydrophobicity [log (octanol distribution values)] determines the diffusion through the lipid bilayer of the cell membrane.
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  • 5
    ISSN: 1432-2013
    Keywords: Perfusion of Peritubular Capillaries ; Water Reabsorption ; Sodium Transport ; Proximal Convolution ; Collecting Duct ; peritubuläre Capillarperfusion ; Wasserresorption ; Natriumtransport ; proximales Konvolut ; Sammelrohre
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Description / Table of Contents: Zusammenfassung An Ratten wurden Mikropunktionsuntersuchungen am proximalen Tubulus und am Sammelrohr bei Durchblutung der peritubulären Capillaren bzw. Vasa recta sowie bei künstlicher Perfusion dieser Blutgefäße durchgeführt. In Abhängigkeit von der Höhe der interstitiellen Natriumkonzentration wurden der Nettonatriumtransport (ΆNa iso) bei gleicher Natriumkonzentration zu beiden Seiten der Tubuluswand und die Gleichgewichtskonzentrationsdifferenz (Δc Na) bei fehlendem Nettovolumen- und Nettosubstanzfluß gemessen. Bei Variation der Natriumkonzentration im Gewebe durch Perfusion der peritubulären Capillaren mit 155 bzw. 300 mÄq/l Na änderten sich weder ΆNa iso noch Δc Na für den proximalen Tubulus (ΆNa iso 8,4 bzw. 7,9·10−5 μÄq · mm−2 · sec−1; Δc Na 24 bzw. 24 mÄq/l). Veränderung der Natriumkonzentration im Blut durch Infusion hypertoner NaCl Lösung oder Peritonealdialyse mit isotoner Mannitlösung führten zu prinzipiell gleichen Ergebnissen. Bei Perfusion der Vasa recta mit Lösungen, die 145 und 300 mÄq/l Natrium entheilten, blieben ΆNa iso wie Δc Na über die Sammelrohrwand ebenfalls konstant (ΆNa iso 4,1 bzw. 4,1·10−5 μÄq · mm−2 · sec−1; Δc Na 98 bzw. 104 mÄq/l). Proximale Tubuli und Sammelrohre verhalten sich demnach bei Variation der interstitiellen Natriumkonzentration gleich. Da die Wasserresorption aus den Sammelrohren von dem durch Gegenstrommultiplikation erzeugten Natriumkonzentrationsanstieg im Markinterstitium abhängt, die Natriumresorption aus den Sammelrohren aber wie die vorliegenden Befunde zeigen von eben dieser Natriumkonzentration unabhängig ist, ist dem Warmblüterorganismus die Möglichkeit gegeben, Natrium- und Wasserresorption unabhängig voneinander zu variieren. Die Natrium- und Wasserresorption aus den Sammelrohren werden jedoch beide durch den Gehalt der Sammelrohrflüssigkeit an permeablen Nichtelektrolyten, wie z. B. Harnstoff, beeinflußt.
    Notes: Summary Micropuncture experiments were performed on proximal tubules and collecting ducts of rat kidneys with and without artificial perfusion of surrounding capillaries or vasa recta respectively. Net sodium flux (ΆNa iso) was estimated under conditions of varying but equal sodium concentrations on both sides of the tubular wall. The transtubular wall equilibrium concentration difference of sodium (Δc Na) was also measured in these nephron segments under conditions of zero volume and solute fluxes. In the proximal tubule ΆNa iso of 8.4 and 7.9×10−5 μeq × mm−2 × sec−1 at sodium concentrations of 155 and 300 meq/l in the perfusion fluid and Δc Na of 24 and 24 meq/l respectively did not vary significantly. Variations of sodium concentrations in blood produced by hypertonic saline infusion or peritoneal dialysis with mannitol resulted in essentially similar values of ΆNa iso and Δc Na. In the collecting ducts also ΆNa iso and Δc Na remained uninfluenced by induced variations in sodium concentrations of the perfusion fluid. ΆNa iso at sodium concentration of 145 and 300 meq/l in the perfusion fluid of vasa recta was 4.1 and 4.1×10−5 μeq × mm−2 × sec−1 respectively and Δc Na was 98 and 104 meq/l respectively. Water reabsorption in the collecting ducts depends on the increase of sodium concentration produced in the medulla by the countercurrent multiplier system. The results represented here indicate that, in mammals sodium reabsorption is independent from the sodium concentration of the interstitial fluid. Therefore the sodium reabsorption and the water reabsorption can be varied independently from each other. Both, sodium and water reabsorption in the collecting ducts are however dependent upon the concentrations of permeable nonelectrolytes such as urea in the collecting duct fluid.
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  • 6
    Electronic Resource
    Electronic Resource
    Springer
    Pflügers Archiv 320 (1970), S. 261-264 
    ISSN: 1432-2013
    Keywords: Micropuncture ; Collecting Duct ; Sodium Transport ; Sodium Permeability ; Aldosterone ; Schlüsselwörter ; Mikropunktion ; Sammelrohr ; Natriumtransport ; Natriumpermeabilität ; Aldosteron
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary In previous micropuncture studies with collecting ducts from the rat kidney, aldosterone was shown to increase the isotonic sodium reabsorption as well as the transepithelial concentration difference for sodium under steady state conditions with zero net flux. It was thought that the latter effect might have been partially due to a reduced leak permeability for sodium caused by the action of the hormone. To examine this possibility, the24Na efflux from the collecting duct was studied and found to be decreased by aldosterone. It follows that the hormone must cause a substantial decrease in sodium permeability.
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  • 7
    Electronic Resource
    Electronic Resource
    Springer
    Pflügers Archiv 430 (1995), S. 477-492 
    ISSN: 1432-2013
    Keywords: N-Methyl-4-phenyl-pyridinium (MPP+) ; N 1-Methylnicotinamide ; Tetraethylammonium (TEA+) ; Choline ; Amiloride ; Cortisol
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract The efflux of radiolabelled organic cations from the tubular lumen into proximal tubular cells was investigated by using the stop-flow microperfusion method. The efflux rate increased in the sequence: N 1-methylnicotinamide (NMeN+) 〈 cimetidine 〈 tetraethylammonium (TEA+) 〈 N-methyl-4-phenylpyridinium (MPP+). Preloading the animals by i.v. infusion or pre perfusion of the peritubular capillaries with NMeN+ increased the efflux rate of MPP+. Luminal efflux was also augmented when the tubular solution was made alkaline with HCO 3 − or phosphate, whereby HCO 3 − is more effective than phosphate. Replacement of Na+ by Cs+ showed no effect. With i.v. preloading the animals with NMeN+ and with 25 mM HCO 3 − in the luminal perfusate the 2-s efflux follows kinetics with a Michaelis constant K m=0.21 mmol/l and maximal flux J max=0.42 pmol · cm−1 · s−1 and a permeability term with P=37.7 μm2 · s−1. Comparing the apparent luminal inhibitory constant values for MPP+ $$(Ki_{l,MPP^ + } )$$ with the apparent contraluminal $$Ki_{cl,NMeN^ + }$$ values of substrates of homologous series, it was found that (1) limitation by molecular size occurs at the contraluminal cell side earlier than at the luminal cell side; (2) affinity increases with hydrophobicity of the substrates at the luminal cell side, with a steeper or equal slope than at the contraluminal cell side; (3) affinity increases with basicity (i.e. pKa values) at the luminal cell side with a steeper slope than at the contraluminal cell side. Taken together, substrates with low hydrophobicity and low basicity interact at the luminal cell side more weakly than at the contraluminal cell side. On the other hand large, hydrophobic substrates have, at the luminal cell side, a higher affinity than at the contraluminal cell side. Many substrates, however, have equal affinity at the luminal and contraluminal cell sides.
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