Abstract
D-Glucose equilibrates within liver cells. We have studied its process of entry into and exit from these cells with the multiple indicator dilution technique. Labeled red cells (a vascular indicator), labeled sucrose (an extracellular reference), and labeled D-glucose were rapidly injected into the portal vein, and from serially sampled hepatic venous blood, normalized outflow-time patterns were obtained. The labeled red cell curve rises to an early high peak, and decays rapidly; and that for sucrose reaches a later and lower peak and decays less rapidly, but generates an equivalent area. The curve for labeled D-glucose begins with that for labeled sucrose, gradually rises to a peak which is later and substantially lower than that for sucrose, and then decreases slowly. At high glucose levels this curve assumes a squared-off shape, rises fairly quickly to its highest level, at the time of the sucrose peak, and then slowly decreases. Phlorizin and galactose infusion result in the emergence of a pronounced early peak, under the sucrose peak; and the curve for tracer L-glucose approaches that for sucrose. We resolve from the D-glucose curves, by model analysis, two components: throughout material, which has not entered the cells; and exchanging material, which has entered and later returned to the circulation. The analysis provides estimates of the kinetic entrance and exist coefficients; and from these, saturation of both the entrance and exit processes was evident. The characteristic transport parameters were determined. For both entrance and exit, a common Km, 2,170 mg/100 ml, and transport maximum, 5.13 mg s-1 (ml intracellular fluid)-1, were found. Both these values are exceedingly large. Several other phenomena were defined which additionally characterize the transport process: phlorizin and galacose produced competitive inhibition; the transport process was found to be relatively stereospecific; and sudden infusion of hypertonic glucose produced counter-transport of labeled D-glucose.
MeSH Terms
Animals
Biological Transport
Cell Membrane/metabolism
Extracellular Space/metabolism
Galactose/metabolism
Glucose/metabolism
Liver/metabolism
Methylglucosides/metabolism
Chemicals
Methylglucosides
methylglucoside
Glucose
Galactose
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Goresky C A
McGill University Medical Clinic, Montreal General Hospital, Montreal, Quebec, Canada.
Nadeau B E
References (19)
19 references, click to expand
-
On the uptake of materials by the intact liver. The concentrative transport of rubidium-86.
J Clin Invest. 1973 May;52(5):975-90
PMID: 4573355
-
On the uptake of materials by the intact liver. The transport and net removal of galactose.
J Clin Invest. 1973 May;52(5):991-1009
PMID: 4573356
-
Glucose penetration into liver.
Am J Physiol. 1958 Mar;192(3):491-6
PMID: 13520941
-
The physiological significance of the secretion of endogenous insulin into the portal circulation. IV. Hepatic uptake of glucose during glucose infusion in non-diabetic dogs.
J Clin Invest. 1961 Sep;40:1706-18
PMID: 13694894
-
The concept of carrier transport and its corollaries in pharmacology.
Pharmacol Rev. 1961 Jun;13:109-83
PMID: 13785205
-
A unified kinetic hypothesis of carrier mediated transport: its applications.
Biophys J. 1965 Jul;5(4):487-509
PMID: 5893156
-
Glucose transport carrier in dog kidney: its concentration and turnover number.
Am J Physiol. 1966 Sep;211(3):581-7
PMID: 5927885
-
Stereospecific transport of glucose in the perfused rat liver.
Am J Physiol. 1968 Nov;215(5):1200-9
PMID: 5687514
-
Role of insulin in the hepatic handling of glucose.
Arch Intern Med. 1969 Mar;123(3):284-92
PMID: 4885675
-
The exchange of glucose across the liver cell membrane.
Can J Physiol Pharmacol. 1969 Apr;47(4):361-7
PMID: 5772631
-
D-glucose interactions with renal tubule cell surfaces.
Am J Physiol. 1970 Mar;218(3):735-42
PMID: 4905482
-
Renal and intestinal hexose transport in familial glucose-galactose malabsorption.
J Clin Invest. 1970 Mar;49(3):576-85
PMID: 5415683
-
Hepatocellular uptake of inulin, sucrose, and mannitol in rats.
Am J Physiol. 1970 Dec;219(6):1568-73
PMID: 5485675
-
Liver distribution and uptake of molecules studied by rapid indicator-dilution technique.
Am J Physiol. 1971 Nov;221(5):1449-55
PMID: 4941905
-
Impairment of red cell transit through the canine lungs following injections of hypertonic fluids.
Circ Res. 1972 Oct;31(4):590-601
PMID: 4561634
-
Liver circulation and function.
Physiol Rev. 1963 Jan;43:115-213
PMID: 14015033
-
EFFECT OF CORRECTION OF CATHETER DISTORTION ON CALCULATED LIVER SINUSOIDAL VOLUMES.
Am J Physiol. 1964 Oct;207:883-92
PMID: 14220080
-
Transcapillary exchange of water and of other substances in certain organs of the dog.
Am J Physiol. 1955 Nov;183(2):221-34
PMID: 13268666
-
A linear method for determining liver sinusoidal and extravascular volumes.
Am J Physiol. 1963 Apr;204:626-40
PMID: 13949263