Premium
Studies of water and electrolyte movement from oral rehydration solutions (rice‐ and glucose‐based) across a normal and secreting gut using a dual isotope tracer technique in a rat perfusion model
Author(s) -
Wall C. R.,
Bates M. S.,
Cleghorn G. J.,
Ward L.
Publication year - 1997
Publication title -
alimentary pharmacology and therapeutics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.308
H-Index - 177
eISSN - 1365-2036
pISSN - 0269-2813
DOI - 10.1046/j.1365-2036.1997.00171.x
Subject(s) - perfusion , tritiated water , medicine , absorption (acoustics) , sodium , absorption of water , small intestine , large intestine , chemistry , endocrinology , gastroenterology , biology , tritium , physics , botany , organic chemistry , nuclear physics , acoustics
Aims: To establish a model to measure bidirectional flow of water from a glucose oral rehydration solution (G‐ORS) and a newly developed rice‐based oral rehydration solution (R‐ORS) using a dual isotope tracer technique in a rat perfusion model. To measure net water, sodium and potassium absorption from the ORS. Method: In vivo steady‐state perfusion studies were carried out in normal and secreting (induced by cholera toxin) rat small intestine ( n =11 in each group). To determine bidirectional flow of water from the ORS the animals were initially labelled with tritium, and deuterium was added to the perfusion solution. Sequential perfusate and blood samples were collected after attainment of steady‐state conditions and analysed for water and electrolyte content. Results: There was a significant increase in net water absorption from the R‐ORS compared to the G‐ORS in both the normal ( P <0.02) and secreting intestine ( P <0.05). Water efflux was significantly reduced in the R‐ORS group compared to the G‐ORS group in both the normal ( P <0.01) and the secreting intestine ( P <0.01). There was an increase in sodium absorption in the R‐ORS group compared to the G‐ORS. The G‐ORS produced a significantly greater blood glucose level at 75 min compared to the R‐ORS ( P <0.03) in the secreting intestine. Conclusions: This study demonstrates the improved water absorption from a rice‐based ORS in both the normal and secreting intestine. Evidence that the absorption of water may be influenced by the osmolality of the ORS was also demonstrated.