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September 1, 1988Journal of Clinical Investigation149 citationsOpen Access

Atrial natriuretic peptides inhibit conductive sodium uptake by rabbit inner medullary collecting duct cells.

MZMark L. ZeidelDKD. KikeriPSP Silva

Key Result

Atrial natriuretic peptides and amiloride inhibited potential-stimulated sodium uptake in rabbit inner medullary collecting duct cells by 65% and 73%, respectively.

Structured PICO

Do atrial natriuretic peptides inhibit conductive sodium uptake in rabbit inner medullary collecting duct cells?

P
Population
In vitro study using fresh suspensions of rabbit inner medullary collecting duct cells to examine sodium transport mechanisms and regulation by atrial natriuretic peptides.
I
Intervention
Atrial natriuretic peptides (ANP) and amiloride
C
Comparator
Control conditions (vehicle)
O
Outcome
Sodium uptake (measured by 22Na) and membrane potentialsurrogate

Atrial natriuretic peptides inhibit luminal sodium entry in the inner medullary collecting duct via a conductive, amiloride-sensitive sodium channel, contributing to its natriuretic effect.

Main Result

Effect estimate: 65% inhibition

p-value: p=<0.02

Limitations

  • In vitro cell suspension model may not fully replicate in vivo conditions
  • Species differences between rabbit and rat IMCD cells regarding loop diuretic sensitivity

Abstract

The inner medullary collecting duct (IMCD) effects net sodium reabsorption under the control of volume regulatory hormones, including atrial natriuretic peptides (ANP). These studies examined the mechanisms of sodium transport and its regulation by ANP in fresh suspensions of IMCD cells. Sodium uptake was inhibited by amiloride but insensitive to furosemide, bu-metanide, and hydrochlorthiazide. These results are consistent with uptake mediated by a sodium channel or Na+/H+ exchange. To determine the role of sodium channels, cells were hyperpolarized by preincubation in high potassium medium followed by dilution into potassium-free medium. Membrane potential measurements using the cyanine dye, Di(S)-C3-5 verified a striking hyperpolarization of IMCD cells using this protocol. Hyperpolarization increased the apparent initial rate of sodium uptake fourfold. Amiloride and ANP inhibited potential-stimulated sodium uptake 73% and 65%, respectively; the two agents together were not additive. Addition of 5 mM sodium to hyperpolarized cells resulted in a significant amiloride-sensitive depolarization. Half-maximal inhibition of potential-driven sodium uptake occurred at 3 X 10(-7) M amiloride, and 5 X 10(-11) M ANP. We conclude that sodium enters IMCD cells via a conductive, amiloride-sensitive sodium channel, which is regulated by ANP. ANP inhibition of luminal sodium entry in the IMCD appears to contribute to the marked natriuretic effect of this hormone in vivo.

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Cite This Study

Zeidel et al. (1988) studied this question. Atrial natriuretic peptides (ANP) vs. Vehicle/Control was evaluated on Potential-stimulated sodium uptake (65% inhibition, p=<0.02). Atrial natriuretic peptides and amiloride inhibited potential-stimulated sodium uptake in rabbit inner medullary collecting duct cells by 65% and 73%, respectively.

synapsesocial.com/papers/6a229154b04f494b27541711https://doi.org/10.1172/jci113663
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