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Citations to this article

Regulation of ammonia production by mouse proximal tubules perfused in vitro. Effect of luminal perfusion.
G T Nagami, K Kurokawa
G T Nagami, K Kurokawa
Published March 1, 1985
Citation Information: J Clin Invest. 1985;75(3):844-849. https://doi.org/10.1172/JCI111781.
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Research Article

Regulation of ammonia production by mouse proximal tubules perfused in vitro. Effect of luminal perfusion.

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Abstract

To investigate factors regulating ammonia (NH3) production by isolated defined proximal tubule segments, we examined the rates of total NH3 (NH3 + NH+4) production by individual proximal tubule segments perfused in vitro under a variety of perfusion conditions. Segments consisting of late convoluted and early straight portions of superficial proximal tubules were incubated at 37 degrees C in Krebs-Ringer bicarbonate (KRB) buffer containing 0.5 mM L-glutamine and 1.0 mM sodium acetate, pH 7.4. The rate of total ammonia production was calculated from the rate of accumulation of total NH3 in the bath. The total ammonia production rate by unperfused proximal segments was 6.0 +/- 0.2 (+/- SE) pmol/mm per minute, which was significantly lower than segments perfused at a flow rate of 22.7 +/- 3.4 nl/min with KRB buffer (21.5 +/- 1.4 pmol/mm per minute; P less than 0.001) or with KRB buffer containing 0.5 mM L-glutamine (31.9 +/- 2.5; P less than 0.001). The rate of NH3 production was higher in segments perfused with glutamine than in segments perfused without glutamine (P less than 0.01). The perfusion-associated stimulation of NH3 production was characterized further. Analysis of collected luminal fluid samples revealed that the luminal fluid total NH3 leaving the distal end of the perfused proximal segment accounted for 91% of the increment in NH3 production observed with perfusion. Increasing the perfusion flow rate from 3.7 +/- 0.1 to 22.7 +/- 3.4 nl/min by raising the perfusion pressure resulted in an increased rate of total NH3 production in the presence or absence of perfusate glutamine (mean rise in rate of total NH3 production was 14.9 +/- 3.7 pmol/mm per minute in segments perfused with glutamine and 7.8 +/- 0.9 in those perfused without glutamine). In addition, increasing the perfusion flow rate at a constant perfusion pressure increased the rate of luminal output of NH3. Total NH3 production was not affected by reducing perfusate sodium concentration to 25 mM and adding 1.0 mM amiloride to the perfusate, a condition that was shown to inhibit proximal tubule fluid reabsorption. These observations demonstrate that the rate of total NH3 production by the mouse proximal tubule is accelerated by perfusion of the lumen of the segment, by the presence of glutamine in the perfusate, and by increased perfusion flow rates. The increased rate of NH3 production with perfusion seems not to depend upon normal rates of sodium reabsorption. The mechanism underlying the stimulation of NH3 production by luminal flow is unknown and requires further study.

Authors

G T Nagami, K Kurokawa

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Total citations by year

Year: 2016 2014 2013 2012 2008 2004 2002 1992 1991 1990 1989 1988 1987 1986 1985 1981 Total
Citations: 1 1 1 5 1 1 1 2 3 2 3 1 1 2 1 1 27
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article (27)

Title and authors Publication Year
Non–Anion Gap Metabolic Acidosis: A Clinical Approach to Evaluation
M Rastegar, GT Nagami
American Journal of Kidney Diseases 2016
Comprehensive Physiology
SN Cheuvront, RW Kenefick
Comprehensive Physiology 2014
Seldin and Giebisch's The Kidney
CJ Cooper, LD Dworkin, WL Henrich
Seldin and Giebisch's The Kidney 2013
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2012
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2012
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2012
Comprehensive Physiology
R Terjung
Comprehensive Physiology 2012
Brenner and Rector's The Kidney
C Brugnara, KU Eckardt
Brenner and Rector's The Kidney 2012
Role of angiotensin II in the enhancement of ammonia production and secretion by the proximal tubule in metabolic acidosis
GT Nagami
American journal of physiology. Renal physiology 2008
Ammonia production and secretion by S3 proximal tubule segments from acidotic mice: role of ANG II
GT Nagami
American journal of physiology. Renal physiology 2004
Enhanced ammonia secretion by proximal tubules from mice receiving NH 4 Cl: role of angiotensin II
GT Nagami
American journal of physiology. Renal physiology 2002
Effect of angiotensin II on ammonia production and secretion by mouse proximal tubules perfused in vitro
GT Nagami
Journal of Clinical Investigation 1992
Cellular NH4+/K+ transport pathways in mouse medullary thick limb of Henle. Regulation by intracellular pH
D Kikeri, A Sun, ML Zeidel, SC Hebert
The Journal of General Physiology 1992
Regulation of renal ammoniagenesis in metabolic acidosis
AC Schoolwerth
Kidney International 1991
Electrophysiology of ammonia transport in renal straight proximal tubules
H Völkl, F Lang
Kidney International 1991
Role of Ammonia in the Induction of Renal Hypertrophy
I Kurtz
American Journal of Kidney Diseases 1991
Effect of bath and luminal potassium concentration on ammonia production and secretion by mouse proximal tubules perfused in vitro
GT Nagami
Journal of Clinical Investigation 1990
Induction of renal growth and injury in the intact rat kidney by dietary deficiency of antioxidants
KA Nath, AK Salahudeen
Journal of Clinical Investigation 1990
Induction of hypertrophy in cultured proximal tubule cells by extracellular NH4Cl
K Golchini, J Norman, R Bohman, I Kurtz
Journal of Clinical Investigation 1989
Ammonia Production and Secretion by the Proximal Tubule
GT Nagami
American Journal of Kidney Diseases 1989
Ammonia Transport in the Proximal Tubule In Vivo
LL Hamm, EE Simon
American Journal of Kidney Diseases 1989
Luminal secretion of ammonia in the mouse proximal tubule perfused in vitro
GT Nagami
Journal of Clinical Investigation 1988
Ammonia transport by early and late proximal convoluted tubule of the rat
DW Good, TD DuBose
Journal of Clinical Investigation 1987
Ammonia production by isolated mouse proximal tubules perfused in vitro. Effect of metabolic acidosis
GT Nagami, CM Sonu, K Kurokawa
Journal of Clinical Investigation 1986
Formation and excretion of NH3↔NH 4 + . new aspects of an old problem
S Silbernagl, D Scheller
Klinische Wochenschrift 1986
Contribution of individual superficial nephron segments to ammonium handling in chronic metabolic acidosis in the rat. Evidence for ammonia disequilibrium in the renal cortex
E Simon, D Martin, J Buerkert
Journal of Clinical Investigation 1985
Contemporary Nephrology
S Klahr, SG Massry
1981

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