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Original Article

Intestinal Brush Border Membrane Function

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Pages 289-299 | Published online: 08 Jul 2009

References

  • Alpers D H., Stenson W F., Spiller R C. Small intestine: editorial overview. Curr Opinion Gastroenterol 1993; 9: 191–4
  • Quirke P. The molecular revolution-coming your way soon. Gut 1992; 33: 1–3
  • Watt P C., Sawicki M P., Passaro E. A review of gene transfer techniques. Am J Surg 1993; 165: 350–4
  • Brenner D A., Zimmerman E. Molecular and cellular biology of the small intestine. Curr Opinion Gastroenterol 1993; 9: 195–200
  • Walker R I., Owen R L. Intestinal barriers to bacteria and their toxins. Ann Rev Med 1990; 41: 393–400
  • Saadia Schein R. M., Mac Farlane C, Boffard K D. Gut barrier function and the surgeon. Br J Surg 1990; 77: 487–92
  • Jayanthi V, Probert C SJ, Sher K S., Mayberry J F. Current concepts of the etiopathogenesis of inflammatory bowel disease. Am J Gastroenterol 1991; 86: 1566–72
  • Amerongen H M., Langermann S. Antigen transport by intestinal M cells. Curr Opinion Gastroenterol 1992; 8: 983–7
  • Deitch E A. Multiple organ failure: pathophysiology and potential future therapy. Ann Surg 1992; 216: 117–34
  • Ito S. The neutral surface coat on cat intestinal microvilli. J Cell Biol 1965; 27: 475–86
  • Holmes R, Lobley R W. Intestinal brush border revisited. Gut 1989; 30: 1667–78
  • Maroux S, Coudrier E, Feeracci H, Gorvel J P., Louvard D. Molecular organisation of the intestinal brush border. Bio-chimie 1988; 70: 1297–306
  • Mooseker M S., Howe C L. The brush border of intestinal epithelium: a model system for analysis of cell-surface architecture and motility. Methods Cell Biol 1982; 144–74
  • Mooseker M S. Organisation, chemistry and assembly of the cytoskeletal apparatus of the intestinal brush border. Ann Rev Cell Biol 1985; 1: 209–14
  • Citi S, Sabanay H, Geiger R., Jakes B, Kendrick-Jones Cingulin J. a new peripheral component of tight junctions. Nature 1988; 333: 272–6
  • Simpson R J., Raja K B., Shan T. Iron chelate affinity chromatography of brush border membrane proteins. Biochem Soc Trans 1992; 20: 194S
  • Holmes R. The intestinal brush border. Gut 1971; 12: 668–77
  • Young G P., Macrae F A., Gibson P R., Alexeyeff M, Whitehead R H. Brush border hydrolases in normal and neoplastic colonic epithelium. J Gastroenterol Hepatol 1992; 7: 347–54
  • Davidson N O., Hausman A ML, Ifkovits C, et al. Human intestinal glucose transporter expression and location of GLUT5. Am J Physiol 1992; 262: C795–800
  • Burant C F., Takeda J, Brot-Laroche E, Bell G I., Davidson N O. Fructose transporter in human spermatozoa and small intestine is GLUT5. J Biol Chem 1992; 25: 14523–6
  • Doffoel M, Galluser M, Raul F. Effect of intravenous and intragastric fat infusion on intestinal brush border enzyme activities in rats. Eur Surg Res 1986; 18: 107–11
  • Christiansen J, Bech A, Fahrenkrug J, et al. Fat-induced jejunal inhibition of gastric acid secretion and release of pancreatic glucagon, enteroglucagon, gastric inhibitory polypeptide (VIP) in man. Scand J Gastroenterol 1979; 14: 161–6
  • Kobayashi M, Iseki K, Saitoh H, Miyazaki K. Uptake characteristics of polyamines into rat intestinal brush-border membrane. Biochim Biophys Acta 1992; 1105: 177–83
  • Lipka G, Op-den-Kamp J A. Hauser H. Lipid asymmetry in rabbit small intestinal brush border membrane as probed by an intrinsic phospholipid exchange protein. Biochemistry 1991; 30: 11828–36
  • Dudeja P K., Harig J M., Wali R K., Knaup S M., Ramaswamy K, Brasitus T A. Differential modulation of human small intestinal brush border membrane hemileafiet fluidity affects leucine aminopeptidase activity and transport of D-glucose and L-glutamate. Arch Biochem Biophys 1991; 284: 338–45
  • Karlsson J, Artursson P. A new diffusion chamber system for the determination of drug permeability coefficients across the human intestinal epithelium that are independent of the unstirred water layer. Biochim Biophys Acta 1992; 1111: 204–10
  • Meddings J B., DeSouza D, Goel M, Theisen S. Glucose transport and microvillus membrane physical properties along the cryt-villus axis of the rabbit. J Clin Invest 1990; 85: 1099–107
  • Sadowski D C., Gibbs D J., Meddings J B. Proline transport across the intestinal microvillus membrane may be regulated by membrane physical properties. Biochim Biophys Acta 1992; 1105: 75–83
  • Hsing S, Gatmaitan Z, Arias I M. The function of Gp170, the multidrug-resistance gene product, in the brush border of rat intestinal mucosa. Gastroenterology 1992; 102: 879–85
  • Nairn H Y. Angiotensin-converting enzyme of the human small intestine. Subunit and quaternary structure, biosynthesis and membrane association. Biochem J 1992; 286: 451–7
  • Okada Y, Hazama A, Hashimoto A, Maruyama Y, Kubo M. Exocytosis upon osmotic swelling in human epithelial cells. Biochim Biophys Acta 1992; 1107: 201–5
  • Wirtz H RW, Dobbs L G. Calcium mobilization and exocytosis after one mechanical stretch of lung epithelial cells. Science 1990; 250: 1266–9
  • Alessandri J M., Arfi T S., Thieulin C. The mucosa of the small intestine: development of the cellular lipid composition during enterocyte differentiation and postnatal maturation. Reprod Nutr Dev 1990; 30: 551–76
  • Omodeo-Sale F, Lindi C, Marciani P, et al. Postnatal maturation of rat intestinal membrane: lipid composition and fluidity. Comp Biochem Physiol [A] 1991; 100: 301–7
  • Castillo R O., Reisenauer A M., Kwong L K., Tsuboi K K., Quan R, Gray G M. Intestinal lactase in the neonatal rat. Matu-rational changes in intracellular processing and brush-border degradation. J Biol Chem 1990; 265: 15889–93
  • Yeh K, Yeh M, Montgomery R K., Grand R J., Holt P R. Cortisone and thyroxine modulate intestinal lactase and sucrase mRNA levels and activities in the suckling rat. Biochem Biophys Res Commun 1991; 180: 174–80
  • Mc Donald M C., Henning S J. Synergistic effects of thyroxine and dexamethasone on enzyme ontogeny in rat small intestine. Ped Res 1992; 32: 306–11
  • Kelly D, King T P., Mc Fadyen M, Travis A J. Effect of lactation on the decline of brush border lactase activity in neonatal pigs. Gut 1991; 32: 386–92
  • Brasitus T A., Yeh K Y., Holt P R., Schachter D. Lipid fluidity and composition of intestinal microvillus membranes isolated from rats of different ages. Biochim Biophys Acta 1984; 778: 341–8
  • Sherman P M., Forstner J F., Forstner G G. Mucosal barrier and its defense during the perinatal period. Human gastrointestinal development, E Lebenthal. Raven Press, New York 1989; 687–98
  • Stern M, Gellerman B, Schall I. Neonatal and adult patterns of lectin binding to rat intestinal microvillus membranes. Biol Neonate 1990; 58: 112–9
  • Toloza E M., Diamond J M. Ontogenetic development of transporter regulation in bullfrog intestine. Am J Physiol 1990; 259: G770–3
  • Buddington R K. Intestinal nutrient transport during ontogeny of vertebrates. Am J Physiol 1992; R503–9
  • Buddington R K., Diamond J M. Ontogenetic development of intestinal nutrient transporters. Ann Rev Physiol 1989; 51: 601–19
  • Toloza E M., Diamond J. Ontogenetic development of nutrient transporters in rat intestine. Am J Physiol 1992; 263: G593–604
  • Stevens B R. Vertebrate intestine apical membrane mechanisms of organic nutrient transport. Am J Physiol 1992; 263: R458–63
  • Gastaldi G, Laforenza U, Ferrari G, Casasco A, Rindi G. Age-related thiamin transport by small intestinal microvillous vesicles of rat. Biochim Biophys Acta 1992; 1105: 271–7
  • Hughes A, Bloch K J., Bhan A K., Gillen D, Giovino V C., Harmatz P R. Expression of MNC class II (la) antigen by the neonatal enterocytes: the effect of treatment with interferon-gamma. Immunology 1991; 72: 491–6
  • Matsumoto S, Setoyama H, Umesaki Y. Differential induction of major histocompatibility complex molecules on mouse intestine by bacterial colonization. Gastroenterology 1992; 103: 1777–82
  • Cohen M B., Giannella R A. Jejunal toxin inactivation regulates susceptibility of the immature rat to STa. Gastroenterology 1992; 102: 1988–96
  • Eglow R, Pothoulakis C, Itzkowitz S, et al. Diminished Clostridium difficile toxin A sensitivity in newborn rabbit ileum is associated with decreased toxin A receptor. J Clin Invest 1992; 90: 822–9
  • Nicholson J A., Peters T J. The subcellular localisation of peptidase activity in the human jejunum. Eur J Clin Invest 1979; M 9: 349–54
  • Bruce G, Woodley J F. An accurate fluorimetric method to measure the breakdown of gliadin and gliadin peptides. Clin Chim Acta 1981; 117: 325–32
  • Erickson R E., Suzuki Y, Sedlmayer A, Song I S., Kim Y S. Rat intestinal angiotensin-converting enzyme: purification, properties, expression, and function. Am J Physiol 1992; 263: G466–73
  • Bruce G, Woodley J F., Swan C HJ. Breakdown of gliadin peptides by intestinal brush border from coeliac patients. Gut 1984; 25: 919–24
  • Hadorn B, Hawthorn J C. Intestinal enterokinase deficiency. Clinical and biochemical findings in six patients. Intestinal enzyme deficiencies and their nutritional implications. Symposium of the Sweden Nutrition Foundation XI., Almquist and Wiksell, Uppsala 1973; 107–13
  • Rreiser H, Menard D, Crane R K., Cerda J J. Deletion of enzyme protein from the brush border membrane in sucrase-isomaltose deficiency. Biochim Biophys Acta 1974; 363: 279–82
  • Phillips A D., Avigad S, Sacks J, Rice S J., France N E., Walker-Smith J A. Microvillus surface area in secondary disaccharidase deficiency. Gut 1980; 21: 44–8
  • Bibeiro H C., Teichberg S, Mc Garvey E, Lifshitz F. Quantitative alterations in the structural development of jejunal absorptive epithelial cells and their subcellular organelles in protein-energy-malnourished rats: a stereologic analysis. Gastroenterology 1987; 93: 1382–92
  • Hardin J A., Buret A, Meddings J B., Gall D G. Effect of epidermal growth factor on enterocyte brush-border surface area. Am J Physiol 1993; 27: G312–8
  • Lacroix B, Kedinger M, Simon-Assmann Haffen K. Early organogenesis of human small intestine: scanning electron microscopy and brush border enzymology. Gut 1984; 25: 925–30
  • Goodlad R A., Raja K B., Peters T J., Wright N A. Effects of urogastrone-epidermal growth factor on intestinal brush border enzymes and mitotic activity. Gut 1991; 32: 994–8
  • Gibson P R., Folino M, Rosella O, et al. Neoplasia and hyperplasia of large bowel: focal lesions in an abnormal epithelium. Gastroenterology 1992; 103: 1452–9
  • Shamsuddin A M., Phelps P C., Trump B F. Human large intestinal epithelium: light microscopy, histochemistry, and ultra-structure. Hum Pathol 1992; 13: 790–803
  • Lundin S, Pantzar N, Hedin L, Westrom B R. Intestinal absorption enhancement by sodium (dDAVP) and a macromolecule (BSA) in vitro and in vivo. Int J Pharm 1990; 59: 263–9
  • Pantzar N, Westrom B R., Luts A, Lundin S. Regional small-intestinal permeability in vitro to different-sized dextrans and proteins in the rat. Scand J Gastroenterol 1993; 28: 205–11
  • Ramadan A A., Yousif W B., Ali A M. The effect of methotrexate (MTX) on the small intestine of the mouse. HI. Mitochondria and succinic dehydrogenase (DH). Funct Dev Morphol 1992; 2: 3–9
  • Terashima H, Wong H. Kobayashi R, Bunnett NW. Immunochemical localization of aminopeptidase M in the alimentary tract of the guinea pig and rat. Gastroenterology 1992; 102: 1867–76
  • Hunter T, Cooper J A. Protein-tyrosine kinases. Ann Rev Biochem 1985; 54: 897–930
  • Thompson J F. Specific receptors for epidermal growth factor in rat intestinal microvillus membranes. Am J Physiol 1988; 254: G429–35
  • Thompsom J F., Buikhuisen W A. Protein tyrosine kinase activity and its substrates in rat intestinal microvillus membranes. Gastroenterology 1990; 99: 370–9
  • Frohman L A., Downs T R. Heimer EP, Felix AM. Dipep-tidylpeptidase IV and trypsin-like enzymatic degradation of human growth hormone-releasing hormone in plasma. J Clin Invest 1989; 83: 1533–40
  • Schon E, Jahn S, Kiessig S T., Demuth H U., et al. The role of dipeptidyl peptidase IV in human T lymphocyte activation: inhibitors and antibodies against dipeptidyl peptidase IV suppress lymphocyte proliferation and immunoglobulin synthesis in vitro. Eur J Immunol 1987; 17: 1821–6
  • Piazza G A., Callanan H M., Mowery J, Hixson D C. Evidence for a role of dipeptidyl peptidase IV in fibronectin-mediated interactions of hepatocytes with extracellular matrix. Biochem J 1989; 262: 327–34
  • Erickson R H., Sedlmayer Y., Suzuki A, Kim Y S. Biosynthesis and degradation of altered immature forms of intestinal dipeptidyl peptidase IV in a rat strain lacking the enzyme. J Biol Chem 1992; 267: 21623–9
  • Aguenaou H, Colin D A. Subcellular distribution of carbonic anhydrase in the enterocyte of the rabbit ileum and the Caco-2 cell. Evidence for the presence of two isozymes bound to brush-border membranes. Biochim Biophys Acta 1992; 1109: 59–64
  • Mitjavila S. Implication of membrane functions in toxicology. Food Addit Contam 1990; 7: Slll–5
  • Ames B, Profet M, Gold L S. Dietary pesticides (99.99% all natural). Proc Natl Acad Sci USA 1990; 87: 7777–81
  • Wang X D., Andersson R, Soltesz V, Guo W, Bengmark S. Water-soluble ethylhydroxyethyl cellulose prevents bacterial translocation induced by major liver resection in the rat. Ann Surg 1993; 217: 155–67
  • Schuiz S, Green C K., Yuen P ST, Garbers D L. Guanylyl cyclase is a heat-stable enterotoxin receptor. Cell 1990; 63: 941–8
  • Cohen M B., Thompson M R., Giannella R A. Differences in jejunal and ileal response to E. coli enterotoxin: possible mechanisms. Am J Physiol 1989; 257: G118–23
  • Huott P A., Liu W, McRoberts J A., Giannella R A., Dharm-Sathaphorn K. Mechanism of action of Escherichia coli heat stable enterotoxin in human colonic cell line. J Clin Invest 1988; 82: 514–23
  • Vasseur M, Caiizae M, Frangne R, Alvarado F. Tans-potassium effects on the chloride/proton symporter activity of guinea-pig ileal brush-border membrane vesicles. Biochim Biophys Acta 1992; 1107: 150–8
  • Knickelbein R G., Aronson P S., Dobbins J W. Characterization of Na+-H+ exchangers on villus cells in rabbit ileum. Am J Physiol 1990; 259: G802–6
  • Tse C M., Ma A, Yang I. VW., et al. Molecular cloning and expression of a cDNA encoding the rabbit ileal villus cells basolateral membrane Na/H exchanger. EMBO J 1991; 10: 1957–67
  • Museh M W., Bookstein C, Arvans D L., Cragoe E J., Rao M C., Chang E B. Characterization of chicken intestinal brush border membrane Na/H exchange. Comp Biochem Physiol 1992; 103A: 439–444
  • Shiau Y, Fernandez F. P., Jackson M J., Mc Monagle S. Mechanisms maintaining a low-pH microclimate in the intestine. Am J Physiol 1985; 248: G608–17
  • Bair C H., Tang M J., Huang J D. Concentration-dependent exsorption of quinidine in the rat intestine. J Pharm Pharmacol 1992; 44: 659–62
  • Acra S, Ghishan F K. Increased Na+-H+ exchange in jejunal brush border membrane vesicles of spontaneously hypertensive rats. Gastroenterology 1991; 101: 430–6
  • Vendeland S C., Deagen J T., Whanger P D. Uptake of seleno-trisulfides of glutathione and cysteine by brush border membranes from rat intestines. J Inorg Biochem 1992; 47: 131–40
  • Kaune R, Kassianoff I, Schröder B, Harmeyer J. The effects of 1,25-dihydrooxyvitamin D-3 deficiency on Ca2+-transport and Ca2+-uptake into brush-border membrane vesicles from pig small intestine. Biochim Biophys Acta 1992; 1109: 187–94
  • Gilles-Baillien M, Cogneau M. Magnesium uptake by intestinal brush-border membranes of spontaneously hypertensive rats. Proc Soc Exp Biol Med 1992; 201: 119–24
  • Christensen E, Brandt M J., Philips J. Citrullinaemia: the possibility of prenatal diagnosis. J Inherited Metab 1980; 3: 73–5
  • Bergeron M, Gougoux A. The renal fanconi syndrome. The metabolic basis of inherited diseases, C R. Scriver, A L. Beaudet, W S. Sly, D Valle. McGraw Hill, New York, 2569–80
  • Vadgama J V., Evered D F. Characteristics of L-citrulline transport across rat small intestine in vitro. Ped Res 1992; 32: 472–8
  • Moyer N S., Insler N, Dumaswala R. The role of chloride in taurine transport across the human placental brush-border membrane. Biochim Biophys Acta 1992; 1109: 74–80
  • Saitoh H, Kobayashi M, Sugawara M, Iseki K, Miyazaki K. Carrier-mediated transport system for choline and its related quaternary ammonium compounds on rat intestinal brush-border membrane. Biochim Biophys Acta 1992; 1112: 153–60
  • Sugawara M, Sasaki M, Iseki K, Miyazaki K. Membrane-potential-dependent uptake of tryptamine by rat intestinal brush-border membrane vesicles. Biochim Biophys Acta 1992; 1111: 145–50
  • Tanna S, Wood C, Lawrence M J. Mechanism of pyrimidine nucleoside uptake in intestinal brush border membrane vesicles. Biochem Soc Trans 1992; 20: 116S
  • Peerce B E., Cedilote M, Clarke R D. Role of carboxyl and sulfhydryl residues on rabbit small intestinal brush border membrane Na+-glucose cotransporter. Am J Physiol 1993; 27: G294–9
  • Minami H, Morse E L., Adibi S A. Characteristics and mechanism of glutamine-dipeptide absorption in human intestine. Gastroenterology 1992; 162: 219–23
  • Said H M., Derweesh I. Carrier-mediated mechanism for biotin transport in rabbit intestine: studies with brush-border membrane vesicles. Am J Physiol 1991; 261: R94–7
  • Said H M., Mock D M., Collins J. Regulation of intestinal biotin transport in the rat: effect of biotin deficiency and supplementation. Am J Physiol 1989; 256: G306–11
  • Said H M., Redha R. Ontogenesis of the intestinal transport of biotin in the rat. Gastroenterology 1988; 94: 68–72
  • Said H M., Mohammadkhani R. Involvement of histidine residues and sulfhydryl groups in the function of the biotin transport carrier of rabbit intestinal brush-border membrane. Biochim Biophys Acta 1992; 1107: 238–44
  • Takikawa H, Arai S, Yamanaka M. Lithocholate binding by Y and Y' proteins in bovine small intestine. Arch Biochem Biophys 1992; 298: 486–91
  • Takikawa H, Arai S, Yamanaka M. Lithocholate binding by Y and Y' proteins in bovine small intestine. Arch Biochem Biophys 1992; 292: 151–5
  • Kramer W, Nicol S B., Girbig F, Gutjahr U, Kowalewski S, Fasold H. Characterization and chemical modification of the Na*-dependent bile-acid transport system in brush-border membrane vesicles from rabbit ileum. Biochim Biophys Acta 1992; 1111: 93–102
  • Yeh K Y., Yeh M, Pan P C., Holt P R. Posttranslational cleavage of rat intestinal lactase occurs at the luminal side of the brush border membrane. Gastroenterology 1993; 101: 312–8
  • Mayer L, Shlien R. Evidence for function of la molecules on gut epithelial cells in man. J Exp Med 1987; 166: 1471–83
  • Bland P W., Warren L G. Antigen presentation by epithelial cells of rat small intestine. Immunology 1986; 58: 1–7
  • Krogfelt K A. Bacterial adhesion: genetics, biogenesis, and role in pathogenesis of fimbrial adhesins of Escherichia coli. Rev Infect Dis 1991; 13: 721–35
  • Wanke C A., Cronan S, Goss C, Chadee K, Guerrant R L. Characterization of binding of Escherichia coli strains which are enteropathogens to small-bowel mucin. Infect Immun 1990; 58: 794–800
  • Schilager T A., Wanke C A., Guerrant R L. Net fluid secretion and impaired villous function induced by colonization of small intestine by nontoxigenic colonizing Escherichia coli. Infect Immun 1990; 58: 1337–43
  • Batt R M., Carter M W., Peters T J. Biochemical changes in the jejunal mucosa of dogs with a naturally occurring enteropathy associated with bacterial overgrowth. Gut 1984; 25: 816–23
  • Batt R M., Mc Lean L. Comparison of the biochemical changes in the jejunal mucosa of dogs with aerobic and anaerobic bacterial overgrowth. Gastroenterology 1987; 93: 986–93
  • van der Waaij D, Berghuis-de Vries J M., Lekkerkerk-van der Wees J EC. Colonization resistance of the digestive tract in conventional and antibiotic-treated mice. J Hyg 1971; 69: 405–11
  • Deitch E A. Gut failure: its role in the multiple organ failure syndrome. Multiple organ failure, E A. Deitch. Thieme Medical Publishers, Inc, New York 1991; 40–59
  • Rhodes M J. Colonic mucus and mucosal glycoproteins: the key to colitis and cancer?. Gut 1989; 30: 1660–66
  • Sanderson I R., Walker W A. Uptake and transport of macro-molecules by the intestine: possible role in clinical disorders (an update). Gastroenterology 1993; 104: 622–39
  • Walker W A. Antigen handling by the small intestine. Clin Gastroenterol 1986; 15: 1–20
  • Lake A M., Bloch K J., Sinclair K J., Walker W A. Anaphylactic release of intestinal goblet cell mucus. Immunology 1980; 39: 173–8
  • Sajjan S U., Forstner J F. Role of the putative‘link’ glycopeptide of intestinal mucin in binding of piliated Escherichia serotype 0157:H7 strain CL-49. Infect Immun 1990; 58: 868–73
  • Sajjan S U., Forstner J F. Characteristics of binding of Escherichia coli serotype 0157:H7 strain CL-49 to purified intestinal mucin. Infect Immun 1990; 58: 860–7
  • Triadafilopoulos G, Pothoulakis C, Weiss R, Giampaolo C, LaMont J T. Comparative study of Clostridium difficile toxin A and cholera toxin in rabbit ileum. Gastroenterology 1989; 97: 1186–92
  • Mc Farland L V., Mulligan M E., Kwok R YY, Stamm W E. Nosocomial acquisition of Clostridium difficile infection. N Engl J Med 1989; 320: 204–10
  • Lylerly D M., Krivan H C., Wilkins T D. Clostridium difficile: its disease and toxins. Clin Microbiol Rev 1988; 1: 1–18
  • Kelly C P., Pothoulakis C, Orellana J, LaMount J T. Human colonic aspirates containing immunoglobulin A antibody to Clostridium difficile toxin A inhibit toxin A-receptor binding. Gastroenterology 1992; 102: 35–40
  • Buret A, Gall D C., Olson M E. Growth, activities of enzymes in the small intestine, and ultrastructure of microvillus border in gerbils infected with Giardia duodenalis. Parasitol Res 1991; 77: 109–14
  • Buret A, Hardin J A., Olson M E., Gall G. Pathophysiology of small intestinal malabsorption in gerbils infected with Giardia lamblia. Gastroenterology 1992; 103: 506–13
  • Buret A, O'Loughlin E V., Curtis G, Gall D G. Effect of acute Yersinia enterocolitica infection on small intestinal ultra-structure. Gastroenterology 1990; 98: 1401–7
  • Curtis G H., Patrick M K., Catto-Smith A G., Gall D C. Intestinal anaphylaxis in the rat: effect of chronic antigen exposure. Gastroenterology 1990; 98: 1558–66
  • Gardiner K R., Erwin P J., Anderson N H., Barr J G., Halliday M I., Rowlands B J. Colonic bacteria and bacterial translocation in experimental colitis. Br J Surg 1993; 80: 512–6
  • Barber A E., Jones W G., II, Minei J P., Fahey T J., III, Lowry S F., Shires G T. Bacterial overgrowth and intestinal atrophy in the etiology of gut barrier failure in the rat. Am J Surg 1991; 161: 300–4
  • Dvorak A M. Ultrastructural pathology of Crohn's disease. Inflammatory bowel disease–basic research and clinical implications, H Goebell, B M. Peskar, H Malchow. MTP, LancasterEngland 1988; 3–42
  • Alexander J W., Boyce S T., Babcock G F., et al. The process of microbial translocation. Ann Surg 1990; 212: 496–511
  • Wang X D., Soltesz V, Andersson R, Bengmark S. Bacterial translocation in surgically acute liver failure induced 90% hepa-tectomy in the rat. Br J Surg 1993; 80: 66–71
  • Ding J W., Andersson R, Soltesz V, Willen R, Bengmark S. The role of bile and bile acids in bacterial translocation in obstructive jaundice in rats. Eur Surg Res 1993; 25: 11–9
  • Wang X D., Päsrsson H, Andersson R, Soltesz V, Johansson K, Bengmark S. Studies on bacterial translocation, intestinal ultrastructure and cellular membrane system permeability at the early stage following major liver resection in the rat. Br J Surg 1993, In press
  • Alexander J W. Nutrition and translocation. JPEN 1990; 14: 170–4
  • Wang X D., Andersson R, Soltesz V, Bengmark S. Bacterial translocation after major hepatectomy in patients and rats. Arch Surg 1992; 127: 1101–6
  • Agarwal N, Murphy J G., Cayten G, Stahl W M. Blood transfusion increases the risk of infection after trauma. Arch Surg 1993; 128: 171–7
  • Christou N V., Barie P S., Dellinger E P., Waymack J P., Stone H H. Surgical infection society: intra-abdominal infection study. Arch Surg 1993; 128: 193–9
  • Wang X D., Wang Q, Soltesz V, Andersson R. Pulmonary infections of gut origin after major liver resection in rats. Eur J Surg 1993; 159: 399–404
  • Wang X D., Andersson R, Soltesz V, Wang L, Bengmark S. The effect of portal hypertension on bacterial translocation induced by major liver resection in the rat. Eur J Surg 1993; 159: 747–50
  • Wang X D., Ar'Rajab R, Andersson R, Soltesz W, Wang W, Svensson M, Bengmark S. The influence of surgically induced acute liver failure on the intestine in the rat. Scand J Gastroenterol 1993; 28: 31–40
  • Wang X D., Wang Q, Andersson R, Bengmar S. Intramucosal pH and oxygen extraction in the gastrointestinal tract after major liver resection. Eur J Surg 1993; 159: 81–7
  • Torimoto K, Sato N, Okubo M, et al. Development of multiple necrotizing enteritis induced by a tumor necrosis factor-like cytokine from lipopolysaccharide-stimulated peritoneal macrophages in rats. Am J Pathol 1990; 137: 1103–11
  • Wells C L., Maddaus A, Simmons R L. Proposed mechanisms for translocation of intestinal bacteria. Rev Infect Dis 1988; 10: 958–79
  • Mac Dermott R P., Elson C O. Mucosal immunology. I. Basic principles. Gastroenterol Clin North Am 1991; 20: 495–578
  • Wang X D., Pärsson H, Soltesz V, Johansson K, Andersson R. Bacterial translocation and capillary permeability after major liver resection in the rat. J Surg Res 1993, In press

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