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The mechanism of epithelial shedding after ischemic damage to the small intestinal mucosa. A light and electron microscopic investigation.

The intestinal mucosa of the rat was examined by light and electron microscopy 15, 30, 60 and 120 min after complete ligation of the vessel arcades of the proximal jejunum. The characteristic sign of ischemic damage to the small intestinal mucosa and the reason for epithelial shedding is the appearance of membrane enclosed cytoplasmic blebs which arise at the cell base of the enterocytes and detach the epithelium from the basement membrane. This process begins at the tip of the villi before the enterocytes display signs of irreversible damage and progress to the base of the villi with continuation of the ischemia.

Animals

[The activity and properties of adenosine triphosphatase in various swine organs (liver, cerebral and kidney cortex, small intestinal mucosa)].

Studies into the activity of adenosine triphosphatase (ATPase) in homogenates of liver, cerebral cortex, renal cortex, and mucosa of small intestine of swine have shown differentiated activity patterns, with peak activity developing in the liver. This has been related to a particularly high metabolism performance of the liver in fattening pigs. No difference was found to exist between magnesium activation of ATPase of swine tissue homogenates and that in tissue obtained from ruminants. ATPase which could be activated by sodium and potassium ions and inhibited by ouabain was detectable from cerebral and renal cortex. Sodium and potassium ATPases accounts from some 25 per cent of the total activity. ATPase that could be stimulated by calcium ions was recorded only from liver homogenate. The optimum pH values of ATPase were between 7.5 and 8 in the liver, 9 in mucosa of small intestine, and 9.5 in cerebral and renal cortex.

Adenosine Triphosphatases

Developmental studies on gamma-glutamyl transferase in rat intestinal mucosa.

The activity of gamma-GT in rat intestinal mucosa has been studied during normal development. No significant differences in enzymatic activity have been recorded between 21-day-old fetuses, neonates tested at 3, 10, 20 and 30 days and older animals (65 days). Only in the period immediately prior to birth did the liver gamma-GT display activity levels similar to those of intestinal gamma-GT. In neonates and in adult rats, the intestinal gamma-GT activity was much higher as compared to the enzymatic activity in the liver, possibly revealing a species feature in rats. The results of the studies show that the rat is particularly suitable for experimental studies on intestinal gamma-GT in pathological conditions.

Animals

Isolation and characterization of four peptide hydrolases from the cytosol of rat intestinal mucosa.

The high speed supernatant fluid prepared from rat intestinal mucosa was subjected to ion-exchange chromatography on diethlaminoethyl-cellulose eluted with a linear gradient of sodium chloride (0 to 0.27 M). Assay of eluted fractions for Phe-Gly hydrolase activity revealed four distinct peaks of enzyme activity. These cytosol enzymes have been designated I, II, III, and IV in order of their elution from the column. Examination of the substrate specificity of the four enzymes by use of 20 mM peptide concentrations indicated the most discriminating substrates for the four enzymes were Leu-Gly-Gly, His-Met, Ser-Phe, and leucine amide, respectively. The mean distribution of the recovered peptide hydrolase activities against these substrates among the four enzymes I, II, III, and IV was 96.1, 1.4, 1.7, and 0.8%, respectively, for Leu-Gly-Gly; 0.6, 96.4, 2.4, and 0.6% for His-Met; 0, 0, 95.8, and 4.2% for Ser-Phe; and 20.8, 19.8, 5.6, and 53.8% for leucine amide. Ion-exchange chromatography resulted in increases in specific activity of 19-, 19-, 46-, and 3.5-fold for enzymes I, II, III, and IV, respectively. The activity of all four enzymes, but especially III and IV, were stabilized by the presence of 150 muM dithioerythritol. Activity of each of the four enzymes was decreased 79 to 100% by 1mM ethylenediaminetetraacetate, HgCl2, 1, 10-phenanthroline, or 0.5 mM p-hydroxymercuribenzoate, except that the activity of enzyme I was decreased only 15% by ethylenediaminetetraacetate. No significant activation of the partially purified enzymes occurred in the presence of 500 muM Zn++, Co++, or Mg++. The four enzymes exhibited distinct pH profiles with optima at 7.5, 7.5, 8.5, and 8.0 for enzymes I, II, III, and IV, respectively. Molecular weights of the four enzymes determined by gel filtration on Sephadex G-200 were 58,500, 74,000, 97,500, and 113,000, respectively. All four enzymes lost more than 85% of their activity after 1 hr at temperatures of 50 degrees C or higher in sodium phosphate buffer, pH 7.0. The Km values determined with the most specific substrates for each enzyme were 0.76, 0.44, 3.82, and 8.3 mM for enzymes I, II, III, and IV, respectively. Recent evidence suggests that a significant amount of some small peptides are absorbed intact and hydrolyzed by cytosol peptide hydrolases. Adequate understanding of the function and control of these intracellular enzymes requires knowledge of the characteristics and substrates specificity of individual enzymes. The study described here demonstrates the presence of at least four cytosol peptide hydrolases with distinct substrate specificities. Substrates almost exclusively hydrolyzed by each of three of the enzymes, and therefore suitable for assay of each of these enzymes in the presence of the others, have been identified.

Animals

[Activity and properties of alkaline phosphatase in the plasma and various organs (kidney, liver, small intestine mucosa, bone) of the swine].

There was a high activity of alkaline phosphatase in the blood plasma of piglets during the first few days of live; enzyme obtained at this time had high heat stability and was readily inhibited by L-phenylalanine (5 mM). The enzyme in blood was inhibited to a greater extent than alkaline phosphatase from intestinal mucosa. With increasing age there was a fall in heat stability and in the ease with that the enzyme could be inhibited by phenylalanine. The proportion of alkaline phosphatase derived from bone and present in blood plasma increased with increasing age. Two isoenzymes were detected in liver, kidney, lung, intestinal mucosa and endometrial mucosa by electrophoresis in polyacrylamide gel. Heat lability and inhibition by phenylalanine were good criteria for differentiating different types of alkaline phosphatase in pigs. In the case of alkaline phosphatase in blood plasma, disodium phenylphosphate was split more readily than p-nitrophenyl phosphate and very much more readily than phenolphthalein diphosphate and beta-glycerophosphate.

Age Factors

The small-intestinal mucosa in cow's milk allergy.

Two infants investigated for allergy to cow's milk proteins exhibited a local reaginic reaction in the small intestine after ingesting cow's milk, as shown by increased mucosal IgE plasma-cells and degranulation of mast cells. IgM plasma-cells and the staining of connective tissue and basement membranes with antisera to IgG and C3 complement were also increased, indicating several simultaneous immune reactions in the intestinal mucosa. These findings may provide a sound basis for diagnosis of such an allergy and for the treatment of similar patients with disodium cromoglycate.

Biopsy

[Alkaline phosphatases in human feces, intestinal mucosa and bile, and the occurrence of 5'-nucleotidase in feces (author's transl)].

Alkaline phosphatase (EC 3.1.3.1) in extracts of human feces resembles alkaline phosphatase in extracts of duodenal mucosa, except for its electrophoretic mobility in starch gel. It is very probable that the normal feces alkaline phosphatase derives from intestinal mucosa. Gall bladder alkaline phosphatase, which is markedly different, has not been found in normal feces. Some patients with acute viral hepatitis or protozoasis excrete an alkaline phosphatase which resembles gall bladder alkaline phosphatase and has the characteristics of 5'-nucleotidase (EC 3.1.3.5). The appearance of this enzyme correlates with low total alkaline phosphatase activity of the excreta.

Adult

Some characteristics of early appearing isomaltase in intestinal mucosa of suckling rat.

Characteristics of early appearing free isomaltase in the soluble fraction were investigated in rat intestinal mucosa. Soluble isomaltase and membrane-bound sucrase-isomaltase complex were prepared from 15-day-old rat intestine. Immunochemical properties, optimal pH and heat sensitivity of soluble isomaltase were compared with those of membrane-bound isomaltase. Optimal pH of free isomaltase in the soluble fraction was lower than that of membrane-bound isomaltase. Soluble and membrane-bound isomaltase showed different sensitivities for temperature. Furthermore, membrane-bound isomaltase in 15-day-old suckling rat intestine gave a single line with antiserum. However, soluble isomaltase gave no precipitin line. From these results, it could be concluded that soluble isomaltase is not derived from the isomaltase moiety of membrane-bound sucrase-isomaltase complex as a result of mechanical fragility and rather it would be lysosomal in origin.

Animals

HCO-3-activated adenosine triphosphatase in intestinal mucosa of the eel.

An HCO-3-activated and SCN--inhibited ATPase (ATP phosphohydrolase, EC 3.6.1.3) found in homogenates of intestinal mucosa of the eel was solubilized by Triton X-100. Optimal HCO-3-concentration and pH for the enzyme were 25 mM and 8.7, respectively. HCO-3-ATPase activity in both homogenate and solubilized preparations increased after seawater adaptation. This adaptive increase in enzyme activity was also observed in the gills and the kidney. The HCO-3-ATPase seems to be related to transport mechanisms, especially for Cl-, in osmoregulatory surfaces of the eel.

Adenosine Triphosphatases

Cell-mediated immunity to gliadin within the small-intestinal mucosa in coeliac disease.

In an attempt to demonstrate local cell-mediated immunity (C.M.I.) to gliadin in patients with coeliac disease, fragments of jejunal-biopsy specimens were cultured in the presence and absence of alpha-gliadin and the culture-medium was assayed for its capacity to inhibit migration of normal human peripheral-blood leucocytes (i.e., for a migration-inhibition factor [M.I.F.]). No M.I.F. activity was detected in the culture-medium when biopsy specimens from patients with coeliac disease or controls were cultured without added antigen. However, an M.I.F. was secreted into the culture-medium when biopsy specimens from patients with coeliac disease were cultured with alpha-gliadin. These findings suggest that there is a population of lymphocytes which are sensitised to gliadin in the intestinal mucosa of patients with untreated coeliac disease. They support the theory that a local C.M.I. reaction to gliadin may be the cause of villous atrophy and crypt hyperplasia in coeliac disease.

Adult

Phospholipid-deacylating enzymes of rat small intestinal mucosa.

1. Two phospholipase activities, provisionally designated as phospholipase activity I and phospholipase activity II, were found to be present in the mucosal homogenates of rat small intestine. These phospholipase activities were present in the membraneous particle fraction and were characterized in this study without further purification, using phosphatidylcholine as a substrate. Phospholipase activity I was assayed at pH 5.9 in the absence of deoxycholate, whereas phospholipase activity II was assayed at pH 9.4 in the presence of deoxycholate. Phospholipase activity I was more easily inactivated by heat treatment and trypsin digestion than phospholipase activity II. Both phospholipase activities were inhibited by diisopropyl-fluorophosphate but not by SH-binding reagents. 2. Phospholipase activity I had a pH optimum at 5.9. A sigmoid curve was obtained when the amount of the enzyme preparation was plotted against the phospholipase activity I. The unusually low activity found at low enzyme concentrations was enhanced by addition of the heat-inactivated enzyme preparation to a level where a linear relationship was found between the amount of enzyme and the activity. The effector present in the enzyme preparation was tentatively identified as fatty acid(s). The addition of oleic acid or linoleic acid to the incubation mixture enhanced the phospholipase activity I. At 1 mM levels of these fatty acids the highest activity was obtained when 1.5 mM phosphatidylcholine was used as a substrate. 3. The phospholipase activity II increased on addition of deoxycholate. In the presence of 5 mM deoxycholate, a pH optimum was found at 9.6. It was found that the maximal extent of hydrolysis of phosphatidylcholine in the incubation mixture was dependent on the concentration of deoxycholate. This indicates that deoxycholate facilitates the action of phospholipase activity II, presumably by forming deoxycholate-phosphatidylcholine mixed micelles. Phospholipase activity II was found to deacylate specifically the 2-acyl moiety of phospholipids.

Animals

[The activity and properties of fructose-1,6-diphosphatase in various tissues (Liver, Kidneys, skeletal muscle, small intestine mucosa) in swine].

The following parameters are recommended for activity determination of FDPase by release of inorganic phosphate at 37 degrees C of enzyme from liver and kidneys of swine: pH 7.5, 2 mMol concentration of fructose-1,6-diphosphate, 5 mMol concentration of Mg ions, and ten minutes of incubation. When the activity of FDPase was analysed with temperatures of 22 degrees C, and 45 degrees C, rises were recorded up to the highest temperature. ADTA was strongly activating along with 2 mMol of Mg ions in a test arrangement of 5 mMol concentration. Manganese, zinc, and cobalt ions are strong activators even in low concentrations (0.2 or 1.0 mMol), whereas copper, cadmium, and mercury ions are strong inhibitors of the enzyme. Average activities of FDPase were analysed by means of the optical test in the liver and kidneys of fetuses aged 98 days. They were 1.79 or 0.38 units in one gram of tissue. In pigs for slaughter they had been 2.06 or 3.58 units in one gram of tissue.

Animals

Esterolytic activities of rat intestinal mucosa. 2. Purification and properties of a glycerol-ester hydrolase.

A glycerol-ester hydrolase from rat intestinal cells has been purified using chromatography on carboxyhexanoyl-Sepharose-glyceryldioctanoate and preparative gel electrophoresis. The enzyme gives a single band by analytical gel electrophoresis; it is a monomer of molecular weight 68000. The optimum pH for its action on glyceryl tributyrate is between 8.0 and 8.5; the activation energy was calculated to be 8.7 kcal x mol-1 (36.4 kJ/mol). Its substrate specificity is mainly directed against esters of glycerol and of primary monoalcohols. Similarly to pancreatic lipase but contrary to liver esterase, it is inhibited by bile salts; relief of this inhibition by colipase is only observed for pancreatic lipase. The possible role of the glycerol-ester hydrolase in the absorption of short and of medium chain triglycerides is discussed.

Animals