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Effect of sorbin derivatives on cholera toxin-induced intestinal secretion in rat in vivo.

The effect of synthetic sorbin derivatives was determined on cholera toxin-stimulated jejunal secretion in anesthetized rats in vivo, using both perfused and ligated loop. An inhibitory effect on water secretion induced by cholera toxin was shown with C-terminal sorbin peptides: C20 (YEPGKSSILQHERPVTKPQA-amide), C10 and Dala 7 heptapeptide-amide of sorbin, given by subcutaneous (SC) or intraduodenal administration. When perfused intravenously, C20-sorbin inhibited the cholera-induced stimulation of net flux of water, Na+ and K+, in the jejunum and at the same time the net flux of water and Cl- in the duodenum, which was not in contact with the toxin. 5-hydroxytryptamine was not significantly changed in plasma or fluid. Prostaglandin E2 release in jejunal as well as duodenal fluid was significantly stimulated by cholera toxin, but was not significantly different from basal value after C20 administration.

Amino Acid Sequence↗

[Quantification of fecal excretion of trace elements in newborns as expression of fetal intestinal secretion].

OBJECTIVE: Trace elements have acquired major importance in the knowledge concerning corporal composition and in the comprehension of their metabolic participation in organic processes. The objective of this study was to know the concentration of trace elements in biological material (serum, meconium and feces) from preterm and fullterm infants during the neonatal period. PATIENTS AND METHODS: Concentrations of Al, Ca, Cr Cu, Fe, Mg, Mn, Mo, P, Pb and Zn were determined simultaneously in stools and serum by induction coupled argon plasma-atomic-emission spectrometry (ICP) of 12 preterm and 38 fullterm infants. Stools were collected for the 1st (meconium), 10th and 20th day and serum on the 10th day. RESULTS: Compared to serum from preterm infants, fullterm infants had an elevated (p < 0.05) value of potentially toxic trace elements (Al and Pb). Compared meconium from fullterm infants, preterm infants had an elevated excretion of Cu (p < 0.001) and Fe (p < 0.01). Compared to stools from the 10 and 20th day from preterm infants, fullterm infants had an elevated excretion of Fe (p < 0.05). Stool excretion of all of the trace elements increases throughout the days during the neonatal period, whereas Mn decreases. CONCLUSIONS: The mineral content of meconium and stools in newborns rarely has been described and ICP is an interesting method of assessment of trace elements in these biological samples during the neonatal period.

Feces↗

Intestinal secretion of IgA and IgM: a hypothetical model.

The secretory component (SC) has recently been found to be associated with IgM in external secretions, although in a less stable complex than secretory IgA. Moreover, SC combines spontaneously in vitro with both IgA and IgM. A prerequisite is that the immunoglobulins contain the J chain, which is present only in dimers and polymers. This polypeptide is essential for the formation of an SC-binding site which appears already at the cytoplasmic level in IgA- and IgM-producing immunocytes. Locally formed J-chain-containing immunoglobulins are therefore readily available for complexing with SC present in the membranes of columnar secretory epithelial cells of glandular sites. This complexing initiates pinocytosis and external transport. Immunohistochemically the gland cells are shown to contain SC, IgA and IgM in identical locations, except that SC alone appears in the Golgi zone. Locally formed IgA and IgM antibodies are thus efficiently transferred to the mucosal surface where they exert an immunological exclusion of antigens. Conversely, IgG antibodies, which are not actively drained away from the lamina propria, may rather become engaged in complement activation and cell-mediated cytotoxicity with potentially deleterious effects on the tissue. Secondary to severe inflammatory reactions, secretory epithelium may show decreased production of SC; the selective external transport of SC-stabilized secretory IgA and IgM is thus jeopardized, and a vicious circle may be set up in the mucosa.

Animals↗

Mechanism of intestinal secretion: effect of cyclic AMP on rabbit ileal crypt and villus cells.

Cyclic AMP-dependent secretagogues such as cholera toxin inhibit the coupled absorption of Na+ and Cl- and stimulate the secretion of HCO3- and Cl- in the ileum. Aside from Cl- secretion, little is known about the mechanism of these cyclic AMP-mediated effects. We therefore determined the effect of forskolin, an agent known to increase intracellular cyclic AMP by stimulation of adenylyl cyclase, on Na+/H+ and Cl-/HCO3- exchange in isolated crypt and villus cells from rabbit ileum. Forskolin increased cyclic AMP in the villus cells and decreased intracellular pH. The effect of forskolin on pH in villus cells was HCO3- independent, Na+ dependent, and amiloride sensitive. Further, the rate of recovery from an acid load was decreased by forskolin. These data suggest that increasing cyclic AMP inhibits Na+/H+ exchange in villus cells. In crypt cells also, forskolin increased cyclic AMP; however, forskolin increased intracellular pH in these cells. The effect of forskolin in crypt cells was also HCO3- independent, Na+ dependent, and amiloride sensitive. However, the rate of recovery from an acid load was increased by forskolin, the opposite effect of that seen in villus cells. These data suggest that increasing cyclic AMP in crypt cells stimulates Na+/H+ exchange. Inhibition of Na+/H+ exchange on the brush border membrane in villus cells would be expected to inhibit coupled NaCl absorption (which occurs by coupling of Na+/H+ and Cl-/HCO3- exchange). Stimulation of Na+/H+ exchange in crypt cells, present only on the basolateral membrane, alkalinizes the cell, which would be expected to stimulate HCO3- secretion by stimulating the Cl-/HCO3- exchanger on the brush border membrane. Thus, these results provide a mechanism for some of the previously unexplained in vivo and in vitro effects of cyclic AMP on ileal electrolyte transport.

Amiloride↗

Antisecretory activities of orally administered loperamide and loperamide oxide on intestinal secretion in rats.

In-vivo experiments in the rat jejunum have been performed to compare the antisecretory effect of orally administered loperamide with the effect of its pro-drug, loperamide oxide. Both loperamide and loperamide oxide, administered orally, reduced the secretory effect of prostaglandin E2 (32 ng min-1, intra-arterially) in the jejunum and the colon. Differences between the two drugs as to time course and dose response can be seen. Loperamide oxide shows its antisecretory effect in the jejunum, and at a dose of 2 mg kg-1 also shows its effect in the colon 1 h after administration. The effect was maximal after 2 h and decreased after 4 h. A dose-response relationship was demonstrated at 2 h in the jejunum and the colon. In comparison, the effect of loperamide started later, and a good dose-response relationship was not observed in the jejunum or in the colon, higher doses always appearing less effective than lower doses.

Administration, Oral↗

Mechanism of production of intestinal secretion by negative luminal pressure.

The relationships between luminal hydrostatic pressure and fluid transport by dog jejunum in vivo studied as a sheet in the Wells clamp were compared with quantitative predictions from a model proposed for the mechanism of the secretion produced by elevated venous pressure. According to the model, the secretion produced by increasing venous pressure and the secretion produced by negative luminal pressure are both passive filtrates contingent on a transepithelial pressure of a few centimeters of H2O. We consider that the agreement between the observed and predicted responses to luminal pressure provides strong support for the model. In particular, a) the observations displayed a predicted gross asymmetry in rates of fluid transfer with isotonic fluids depending on whether the luminal pressure was positive or negative; b) the observed magnitude of the negative luminal pressure required for the onset of secretion agreed with predictions; and c) the secretion contained significant amounts of protein at about 25% of the plasma concentration.

Animals↗

Organic acid proton donors decrease intestinal secretion caused by enterotoxins.

The effects of several weak acids on the secretory actions of cholera toxin and the heat-stable enterotoxin of Escherichia coli (ST) have been examined in ligated jejunal loops in weanling pigs. Ascorbic and acetic acids had no effect, but L-lactic acid reduced the net fluid secretion caused by cholera toxin. Glutaric acid and p-aminobenzoic acid blocked net fluid secretion caused by cholera toxin or by ST. Antisecretory effects were pH dependent for p-aminobenzoic acid in this study and for nicotinic acid in a previous report (6). At a pH of 5.0, p-aminobenzoic acid treatment increased lumen-to-blood sodium flux and decreased the blood-to-lumen sodium flux caused by cholera toxin. These weak acid effects were more marked on fluid fluxes in enterotoxin-treated loops than in control loops and persisted for 20-30 min after acid removal from loops. These findings are discussed in terms of requirements for antisecretory activity and possible modes of action of antisecretory compounds.

Animals↗