Available information supports the dominance of the proximal intestine in inorganic phosphate (Pi) absorption. However, there is no strategy for analyzing segmental Pi absorption from a spontaneously propelled meal in an intact animal. We propose a solution using compartmental analysis. After intragastric administration of a 32P-labeled Pi liquid meal containing a nonabsorbable marker, [14C]polyethylene glycol (PEG), rats were killed at 2, 10, 20, 30, 60, 120, and 240 min. The gastrointestinal tract was removed and divided into seven segments, from which 32P and [14C]PEG were recovered. Data was expressed as a percentage of the dose fed, i.e., (32P[in segment] divided by 32P[fed]) and [14C]PEG[in segment] divided by [14C]PEG[fed]), respectively. A compartmental model was constructed and the rate constants for intersegmental transit and segmental absorption were estimated. The "goodness of fit" between the simulated model and the actual data indicates the estimated rate constants reflect in vivo events. The duodenum, with the highest transit and absorption rates, accounted for a third of the total absorption. However, the terminal ileum, with a lower absorption rate but a longer transit time, absorbed an equal amount of Pi. This approach allows the analysis of the mechanism and the regulation of Pi absorption under more authentic in vivo conditions.
L H Kayne, D Z D'Argenio, J H Meyer, M S Hu, N Jamgotchian, D B Lee
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AP Foote, BD Lambert, JA Brady, JP Muir |
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LH Johnson, VK Bhutani |
Fetal and Neonatal Physiology | 2011 |
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International Journal of Nephrology | 2011 |
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Journal of Renal Nutrition | 2010 |
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American journal of physiology. Renal physiology | 2009 |
Nutritional Status and Gastrointestinal Microbes Affect Arsenic Bioaccessibility from Soils and Mine Tailings in the Simulator of the Human Intestinal Microbial Ecosystem
BD Laird, J Yeung, D Peak, SD Siciliano |
Environmental science & technology | 2009 |
Calcium and Phosphate Metabolism Management in Chronic Renal Disease
CH Hsu |
2007 | |
Gastrointestinal Microbes Increase Arsenic Bioaccessibility of Ingested Mine Tailings Using the Simulator of the Human Intestinal Microbial Ecosystem
BD Laird, TR de Wiele, MC Corriveau, HE Jamieson, MB Parsons, W Verstraete, SD Siciliano |
Environmental science & technology | 2007 |
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DJ Drucker |
Physiology of the Gastrointestinal Tract | 2006 |
Inorganic Phosphate Induces Spore Morphogenesis and Enterotoxin Production in the Intestinal Pathogen Clostridium perfringens
VA Philippe, MB Méndez, IH Huang, LM Orsaria, MR Sarker, RR Grau |
Infection and immunity | 2006 |
Bioaccessibility of Arsenic(V) Bound to Ferrihydrite Using a Simulated Gastrointestinal System
DG Beak, NT Basta, KG Scheckel, SJ Traina |
Environmental science & technology | 2006 |
Regulation of Intestinal Phosphate Transport I. Segmental expression and adaptation to low-P i diet of the type IIb Na + -P i cotransporter in mouse small intestine
T Radanovic, CA Wagner, H Murer, J Biber |
AJP Gastrointestinal and Liver Physiology | 2005 |
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Drug Metabolism and Disposition | 2003 |
Different Mg to Fe ratios in the mixed metal MgFe hydroxy-carbonate compounds and the effect on phosphate binding compared with established phosphate binders
H Zhu, M Webb, J Buckley, NB Roberts |
Journal of Pharmaceutical Sciences | 2002 |
Calcium in Internal Medicine
H Morii, Y Nishizawa, SG Massry |
2002 | |
Region-Dependent Modulation of Intestinal Permeability by Drug Efflux Transporters: In Vitro Studies in mdr1a(−/−) Mouse Intestine
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Nutrition | 2001 |
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B J Rankin, H Zhu, M Webb, N B Roberts |
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Proximal Tubular Phosphate Reabsorption: Molecular Mechanisms
H Murer, N Hernando, I Forster, J Biber |
Physiological reviews | 2000 |
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The Journal of nutrition | 1999 |