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The route of feeding influences injury responses.

The balance of current clinical data suggests that the route by which patients are fed during the postinjury phase may influence immunologic and metabolic responses to subsequent insults. The mechanisms underlying such amplification processes are presumed to be generated by loss of intestinal barrier function. The resulting host exposure to toxins is hypothesized to induce regional production of inflammatory mediators which serve to alter organ-specific and systemic responses. The cytokine class of mediators appears capable of altering splanchnic tissue function in a manner consistent with observed clinical responses. The breadth of tissue activity influenced by the cytokines spans those benefitting tissue homeostasis and repair to an exaggerated response which may induce tissue injury and organ failure. Data are presented from both clinical and experimental studies to suggest that a lack of intestinal nutrient provision, such as that induced by parenteral feeding, appears to predispose to enhanced cytokine mediator production in hepatic tissues. Thus alterations in the route of antecedent feeding may influence immunologic and metabolic function in a manner which will amplify responses to a subsequent inflammatory challenge.

Animals↗

Bacterial translocation after burn injury: the contribution of ischemia and permeability changes.

Bacterial translocation (BT) has been shown to occur in stress and trauma. In this study, we examined the contribution of altered intestinal permeability (measured with 51Cr-EDTA) and intestinal blood flow (radioactive microspheres) to the loss of intestinal barrier function after burn injury. A 42.6 +/- 0.6% total body surface area scald burn was produced in Sprague-Dawley rats; sham burn animals served as controls. Rats (29 burn and 20 sham burn) were sacrificed 24 h postburn, and mesenteric nodes (MLN), cecum, spleen, and liver were cultured. The incidence of BT was significantly higher in burn compared to shams (MLN, 55 vs. 15%; spleen, 31 vs. 10%; liver, 31 vs. 10%; p < .05). Cecal concentration of Gram-negative bacteria were similar in all rats (5.2 +/- 0.2 x 10(8) colony forming units/g). 5 h postburn, intestinal blood flow decreased significantly in burn (1.60 +/- .20) compared to shams (2.49 +/- .24 ml/min/g, p = .01); at this time, plasma to luminal clearance of 51Cr-EDTA was greater in the burn (.146 +/- .033, N = 9) than in shams (.050 +/- .010 ml/min/100 g, N = 9, p = .001); 24 h postburn, there was no significant difference in intestinal blood flow in sham (2.86 +/- .46, N = 10) and burn rats (2.29 +/- .44 ml/min/g, N = 11); plasma to intestinal lumen clearance of 51Cr-EDTA was similar in sham (.054 +/- .010, N = 11) and burn rats (.051 +/- .006 ml/min/100 g, N = 12) 24 h postburn.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Lisofylline ameliorates intestinal and hepatic injury induced by hemorrhage and resuscitation in rats.

OBJECTIVE: We sought to determine whether treatment with lisofylline (LSF) preserves intestinal barrier function in rats subjected to hemorrhagic shock and resuscitation (HS/R). SETTING: Research laboratory at a major university teaching hospital. DESIGN: Rats were bled to a mean arterial pressure of 30 mm Hg and maintained at that pressure for 90 mins. One group (n = 8) was treated with LSF (bolus doses of 15 mg/kg at 45 and 89 min plus infusion at 10 mg x kg(-1) x hr(-1)), whereas another group (n = 8) received only the lactated Ringer's solution (LRS) vehicle. At 90 mins, the animals were resuscitated with shed blood and LRS (55 mL x kg(-1) x hr(-1)). Intestinal mucosal permeability was determined by measuring the mucosal-to-serosal clearance of fluorescein isothiocyanate dextran (molecular weight = 4 kDa) into everted gut sacs. MEASUREMENTS AND MAIN RESULTS: Intestinal and hepatic blood flow (assessed by laser Doppler flowmetry) was greater in LSF-treated rats. Treatment with LSF ameliorated the development of histologic evidence of mucosal damage and hyperpermeability. Rats treated with LSF had lower plasma concentrations of the intracellular hepatic enzyme, aspartate aminotransferase. After 90 mins of resuscitation, concentrations of adenosine triphosphate in intestinal and hepatic tissue were greater in LSF-treated as compared with LRS-treated rats, but concentrations of the endogenous antioxidant, glutathione, in intestinal and hepatic tissue, although lower than in rats not subjected to HS/R, were similar in the two treatment groups. CONCLUSION: Treatment with LSF ameliorated HS/R-induced derangements in intestinal structure and function and hepatic injury, possibly by preserving microvascular perfusion and tissue adenosine triphosphate concentrations.

Animals↗

IL-1beta and TNF-alpha, but not IFN-alpha, IFN-gamma, IL-6 or IL-8, are secretory mediators in human distal colon.

Inflammatory bowel disease (IBD) and HIV infection can cause diarrhoea which is accompanied by elevated cytokine levels. To elucidate a pathogenic role of cytokines, their effect on ion secretion was studied in human distal colon using the Ussing technique. Interluekin 1beta (IL-1beta) dose dependently increased short-circuit current (ISC). An ISC maximum of 2.5+/-0.3 micromol. h-1.cm-2 was reached at 20 ng/ml within 43+/-4 min. 22Na+ and 36Cl- fluxes were not altered and residual flux increased by 2.4+/-1.0 micromol.h-1.cm-2 indicating that the IL-1beta-induced ISC is based on electrogenic bicarbonate secretion. IL-1beta had no effect on HT-29/B6 epithlial monolayers suggesting that IL-1beta does not act directly on the epithelium. Furthermore, in human colon the effect was not attenuated by removal of the submucosa (total stripping) pointing to a mediation step via subepithlial cells in the lamina propria. While tetrodotoxin and the 5-lipoxygenase inhibitor ICI-230487 had no effect, indomethacin completely blocked IL-1beta action. Prostaglandin determination by RIA revealed an increased production of PGE2. At half maximum effective concentrations an additive action of tumour necrosis factor alpha (TNF-alpha) could be demonstrated on IL-1beta-induced secretion. Interferon alpha (IFN-alpha), IFN-gamma, IL-6, and IL-8 had no seretory effect in human distal colon. None of the investigated cytokines altered the intestinal barrier function. By their secretory effects IL-1beta and TNF-alpha, but not IFN-alpha, IFN-gamma, IL-6, and IL-8, may contribute to diarrhoea in IBD and AIDS.

Chlorides↗

Passage of molecules through the wall of the gastrointestinal tract. Increased passive permeability in rat ileum after exposure to lysolecithin.

The interaction between lysolecithin and mucosal cells in the distal ileum has been studied. Using a rat experimental model, we determined the intestinal permeability to fluorescent dextran 3000 after exposure to different amounts of lysolecithin. At pH 7.3, lysolecithin, 10 mg/ml, significantly enhanced the transmural passage, and at pH 3.5, even 1 mg/ml markedly increased the permeability. However, when lysolecithin was incubated with homogenized mucosal cells, a rapid disappearance of the compound occurred; this was accompanied by formation of free fatty acids and minor formation of lecithin. It appears, therefore, that high concentrations of lysolecithin can impair the intestinal barrier function in the distal part of ileum but that the mucosal cells are well equipped with activities for the rapid removal of such high concentrations. This could be physiologically significant, since the mucosal cells could otherwise be faced with large amounts of lysolecithin that might facilitate the absorption of potentially antigenic and toxic compounds.

Animals↗

Mechanisms and impact of enteric infections.

The increased recognition of both old and new enteric pathogens and their potential impact requires an improved understanding of pathogenesis and effective interventions. While the overwhelming mortality (> 3 million children per year) due to diarrheal diseases is well-recognized, the potential long-term impacts of enteric infections and early childhood diarrhea morbidity are just beginning to be appreciated. Furthermore, several enteric infections are now being recognized as causes of growth shortfalls with or without diarrhea; i.e., malnutrition may be one of the greatest yet of the "emerging infectious diseases." The increased appreciation of this extended impact calls for further quantification and improved understanding of the deranged physiology. In particular, persistent diarrheal illnesses exhibit common themes of blunted villi, disruption of intestinal barrier function and varying degrees of sub-mucosal inflammation for which lactulose/mannitol permeability and fecal lactoferrin provide respective quantification. Finally, such improved understanding will allow targeted interventions among those most vulnerable, which will enable further documentation of cost effectiveness and the potential for improved human development which is critical to reducing the widening disparity and population overgrowth which increasingly threaten our global security.

Animals↗

The relationship between gut-derived bacteria and the development of the multiple organ dysfunction syndrome.

Abnormal colonisation, infections of gut origin and bacterial translocation are all signs of gut failure that have been hypothesised as being implicated in the pathogenesis of the multiple organ dysfunction syndrome (MODS). We have summarised published experimental and clinical studies that have tried to correlate the occurrence or prevention of these phenomena with the development of MODS. We conclude that in some patients loss of intestinal barrier function or the onset of infection precedes the development of MODS. In other patients, however, this relationship is not so clear and it seems that these are epiphenoma of critical illness and may reflect a failure of the host's immune and mechanical defence systems. The causal relationship between these phenomena and the development of MODS is complex and needs further clarification.

Animals↗

Integrity and metabolism of human ileal mucosa in vitro in the Ussing chamber.

The Ussing chamber is increasingly being used for in vitro studies of human intestinal mucosa, but little attention has been paid to the viability of specimens over time. Ninety-one mucosal specimens from the ileum in 19 patients operated on for colonic cancer were studied in regard to intestinal barrier function, metabolism, electrophysiology and histology during 360 min of incubation in Ussing chambers. Steady-state permeability to 51Cr-EDTA was maintained for 120 min. Mucosal ATP and lactate levels were stable for 180 min and transmucosal glucose flux for 240 min. Lactate dehydrogenase leakage was limited within 120 min. Transepithelial potential difference was 9.0 +/- 3.0 mV at the start, and declined slowly throughout 360 min. Light microscopy revealed epithelial lifting from the basal lamina at 90 min. Transmission electron microscopy demonstrated preserved ultrastructure for 120 min. Specimens with a transepithelial potential difference below 6 mV at the start were associated with increased 51Cr-EDTA permeability and lactate dehydrogenase leakage and more pronounced light microscopy changes. All studied parameters pointed to preserved viability if experiments were kept within a period of 90 min after equilibration. The few specimens with early viability derangement were identified by a transepithelial potential difference below 6 mV at the start. The Ussing chamber provides a tool for in vitro studies of human intestinal epithelium, including permeability. To minimize viability problems, experiments should be limited in time and monitored by measurements of transepithelial potential difference.

Adenosine Triphosphate↗

Enteral glutamine increases growth and absorptive capacity of intestinal mucosa in the malnourished rat.

BACKGROUND: Glutamine is an important nutrient for the small intestine. Beneficial effects of glutamine could be related to restoration of optimal intestinal barrier functions. METHODS: Thirty-eight Sprague-Dawley rats were allocated to three main groups. Experimental groups (n = 22) were malnourished and laparotomized. Sham groups (n = 11) were laparotomized without prior malnutrition. These groups were refed with or without oral glutamine for 3 days. The control group (n = 5) was given chow. Permeability was assessed by the 6-h urinary recovery of orally given polyethylene glycols, PEG 400/1000. Mucosal proliferation was estimated by DNA content and 1-h incorporation of 3H-thymidine intravenously. RESULTS: In the malnourished groups glutamine resulted in higher thymidine incorporation (p < 0.05) and better absorption of small PEG molecules (p < 0.05). CONCLUSION: The effects of oral glutamine on permeability after malnourishment and laparotomy are proposed to be related to an increase in absorptive area.

Animals↗

[Acute failure of the intestinal barrier--pathophysiology, diagnosis, prophylaxis and therapy].

The gut not only serves as a main target for the detrimental effects of stress during and after surgery, but may also promote the development of multiple organ failure after different types of severe shock. According to a current hypothesis, an impaired intestinal barrier function is associated with a decreased separation of intraluminal bacteria and toxins and systemic circulation, which may induce sepsis and multiple organ failure. Hypoperfusion during shock, reperfusion injury of the splanchnic mucosa, alterations of the micro-ecology of the gut and immunologic and hormonal disturbances are important underlying pathophysiological mechanisms. Various therapeutic concepts have been proposed such as improvement of splanchnic perfusion, nutritive and metabolic treatment by means of immunomodulating nutrients, parenteral substitution of glutamine, early onset of enteral nutrition, normalization of gut motility and selective decontamination of the gut. However, no clinical study to date could clearly demonstrate a key role of the gut in the pathogenesis of sepsis and multiple organ failure. Likewise, the efficacy of different prophylactic and therapeutic procedures remain to be studied. An aggressive treatment of shock and avoidance of microcirculatory disturbances are of principal importance for prophylaxis of multiple organ failure.

Acute Disease↗

[Experimental damage of the epithelial layer of the ileum by dietary fats: transmission electron microscopy findings and their comparison with cell pathology in Crohn disease].

Regarding the unknown pathogenesis of Crohn's disease repeatedly the importance of diet has been accentuated. Epidemiological, biochemical and animal experimental results have focused on a possible relationship between the consumption of chemically processed, partial hydrogenated fats and the development of regional enteritis. In this context an experimental animal model in pigs was designed to analyze, whether transmission electron microscopic alterations of ileal mucosa could be induced by forage of chemically processed fats. By creation of a retroperistaltic ileal segment the contact time between chyme and intestinal mucosa was prolonged. Our underlying question was to what extent disorders of the intestinal barrier function could be compared to Crohn's disease. Present study concentrates on the epithelial-cell-layer. It was shown that in comparison to the control animals the lamina epithelialis mucosae of all animals after fat-feeding was characterized by: sublethal lesion of the enterocytes/crypt-epithelial cells (shortening and alteration of the microvilli, degeneration of mitochondria, formation of autophagocytic vacuoles); goblet cell hyperplasia and increased production of mucus; focal appearance of intraepithelial lymphocytes as well as presence of polymorphonuclear granulocytes in the epithelium; widening of the intercellular-space locally up to total loss of the functional structure of the epithelial-cell-layer. In total the picture can be evaluated as an inflammatory process of the ileal mucosa. It can be concluded, that chemically processed fats as used in the described experimental conditions could induce this process. The feature of mucosal damage shows obvious similarities to ultrastructural findings in Crohn's disease if compared.

Animals↗

Macrophage elimination increases bacterial translocation and gut-origin septicemia but attenuates symptoms and mortality rate in a model of systemic inflammation.

OBJECTIVE: The central question tested in this study was whether dichloromethylene-diphosphonate (CL2MDP) liposome-mediated elimination of hepatic and splenic macrophages would influence zymosan-induced bacterial translocation and the zymosan-induced generalized inflammatory response. SUMMARY BACKGROUND DATA: Both an uncontrolled activation of macrophages and the loss of intestinal barrier function have been implicated in the development of adult respiratory distress syndrome and multiple organ failure. METHODS: Macrophage elimination was accomplished by intravenous injection of 200 microL of CL2MDP-liposome suspension. Control mice received an intravenous injection of 200 microL of phosphate-buffered saline. Two days later, the animals were challenged intraperitoneally with zymosan suspended in paraffin to determine a dose-response curve (0.1, 0.5, or 1.0 mg/g body weight). Twenty-four hours after zymosan challenge, signs of systemic stress were determined, and bacterial translocation to the mesenteric lymph node, liver, spleen, and blood was measured. A separate mortality study was performed with a dose of 1.0 mg/g of zymosan suspension. RESULTS: The incidence of the systemic spread of bacteria was significantly increased in the macrophage-depleted mice. Although systemic bacterial translocation was promoted by macrophage elimination, the systemic toxic response was significantly decreased in all macrophage-depleted groups (p < or = 0.01). The 12-day mortality rate was 0% in the macrophage-depleted groups and 27% in the control group (p = 0.05). CONCLUSIONS: The lethal and toxic effects of zymosan appear to be related more to the excessive activation of macrophages than to the systemic spread of bacteria.

Animals↗

Acquired interferon gamma responsiveness during Caco-2 cell differentiation: effects on iNOS gene expression.

BACKGROUND: Impairment of intestinal barrier function occurs under a variety of inflammatory conditions and is mediated at least in part by interferon gamma (IFN-gamma) induced nitric oxide (NO) production. Previous in vivo studies have shown that systemic lipopolysaccharide treatment caused an induction of the rat inducible nitric oxide synthase (iNOS) mRNA primarily in villus cells, rather than in undifferentiated crypt cells. AIMS: To examine iNOS induction by IFN-gamma in vitro as a function of enterocyte differentiation. METHODS: Preconfluent and postconfluent Caco-2 cells were treated with IFN-gamma in the presence or absence of various inhibitors. Northern analyses were performed to assess the magnitude of iNOS mRNA induction. IFN-gamma receptor mRNA and protein levels were determined. RESULTS: iNOS mRNA induction by IFN-gamma occurred at two hours and was not blocked by cycloheximide, indicating that it is an immediate early response. iNOS induction and nitrite/nitrate increases were inhibited by dexamethasone and pyrrolidine dithiocarbamate, supporting an important role for the NF-kappaB transcription factor in this process. The stimulated iNOS induction was seen almost exclusively under conditions of cellular differentiation-that is, in postconfluent Caco-2 cells. This increased IFN-gamma responsiveness seen in postconfluent Caco-2 cells correlated with an increased expression of IFN-gamma receptor, whereas T84 and HT-29 cells did not show any significant alterations in either iNOS induction or IFN-gamma receptor levels as a function of postconfluent growth. CONCLUSIONS: With regard to iNOS mRNA induction, IFN-gamma responsiveness is acquired during Caco-2 cell differentiation, perhaps related to an increase in the numbers of IFN-gamma receptors.

Blotting, Northern↗

Diaspirin crosslinked hemoglobin (DCLHb) attenuates bacterial translocation in rats.

Intestinal barrier function is compromised following severe hemorrhage which may allow bacterial translocation (BT) to occur and subsequently initiate a systemic response leading to multiple system organ failure (MSOF). This study compared BT following hemorrhage and resuscitation with lactated Ringer's solution (LR) or diaspirin crosslinked hemoglobin solution (DCLHb). Rats (250-350 grams) were hemorrhaged to a base deficit of 15 +/- 2 mmol/L and immediately resuscitated with either 3:1 LR or 1:1 DCLHb based on shed blood volume. Four hours following resuscitation, the mesenteric lymph node complex was harvested, homogenized and plated onto MacConkey and Columbia CNA agar culture media. Facultative anaerobic and obligate aerobic bacteria were identified 48 hours later in 11/22 (50%) LR-treated rats and in 4/21 (19%) DCLHb-treated rats (p < or = 0.05). Following resuscitation, base excess (BE) and central venous oxygen saturation (SvO2) were not only restored to baseline but were significantly greater (p < or = 0.05) in DCLHb-treated rats than in LR-treated rats. In a separate group of rats subjected to the same hemorrhage and resuscitation protocol, mean arterial pressure in DCLHb-treated rats, but not LR-treated rats, was restored to baseline by 15 minutes and remained at or above baseline for up to 4 hrs. Twenty-four hour survival was 50% in LR-treated rats and 77% in DCLHb-treated rats (p > 0.05). These data suggest that DCLHb is superior to LR in restoring tissue oxygen delivery, as judged by BE and SvO2. Furthermore, since DCLHb restores oxygen delivery and attenuates BT, early resuscitation with DCLHb may limit gut ischemia and subsequent gut barrier failure and hence prevent the development of sepsis, MSOF and subsequent death.

Animals↗

Does glutamine reduce bacterial translocation? A study in two animal models with impaired gut barrier.

Failure of intestinal barrier function and subsequent translocation of bacteria from the gut are believed to play a decisive role in the development of systemic septic complications, for example, following major trauma or major abdominal surgery. This study evaluated: (a) the effect of glutamine on colonic microcirculation and electrophysiological parameters reflecting gut barrier function, (b) the translocation of live bacteria to extraintestinal organs, and (c) disease outcome in two animal models with impaired gut barrier function. Severe acute pancreatitis or colitis was induced in rats randomized for therapy with or without glutamine (0.5 g/kg daily). After 48 h one animal group was prepared for intravital microscopy of colonic capillary blood flow and electrophysiological measurement of gut permeability; another was killed after 96 h for histological and microbiological examination. In animals with pancreatitis, glutamine (Gln) supplementation significantly improved gut permeability, i.e., Gln increased colonic transmucosal resistance from 67+/-7 to 92+/-3 Omega/cm(2) and decreased mannitol flux through the epithelium by 53%. Capillary blood flow in the colonic mucosa was improved by 25%. The prevalence of pancreatic infections was reduced from 86% in animals on standard parenteral nutrition to 33% in animals given the Gln-enriched diet (P<0.05); mortality decreased by 32%. In colitis, Gln had no significant effect on these parameters except for improving colonic capillary blood flow in colon segments not adjacent to the major injury site. Glutamine supplementation improves colonic capillary blood flow, stabilizes gut permeability, and reduces secondary pancreatic infections and mortality in severe rodent pancreatitis, but it is not helpful in colitis. This confirms previous reports that glutamine stabilizes gut barrier function only in certain diseases. Our experimental data strongly suggest that acute pancreatitis (rather than colitis) is one of the diseases with gut barrier dysfunction in which glutamine substitution may be helpful to reduce bacterial translocation and should therefore be tested in a controlled clinical trial.

Animals↗

Normal human colonic subepithelial myofibroblasts enhance epithelial migration (restitution) via TGF-beta3.

After injury and loss of epithelial cells, intestinal barrier function is reestablished by migration of viable epithelial cells from the wound edge (restitution). Myofibroblasts are located close to the basal surface of epithelial cells. This study aimed to investigate the role of human colonic subepithelial myofibroblasts in epithelial restitution. Primary cultures of subepithelial myofibroblasts were established. Monolayers of the epithelial cell lines IEC-6 and T84 were "wounded" in a standard manner to create an in vitro model of restitution. Migration of epithelial cells across the wound edge was assessed following culture in myofibroblast-conditioned medium. Myofibroblast expression of transforming growth factor (TGF)-beta isoforms was examined using RT-PCR, and TGF-beta isoform bioactivity was assessed using Mv 1 Lu bioassay. Myofibroblast-conditioned medium, via a TGF-beta-dependent pathway, significantly enhanced migration of epithelial cells across the wound edge and significantly inhibited cell proliferation in wounded monolayers. Messenger RNA for TGF-beta1, -beta2, and -beta3 was detected in the myofibroblasts, and Mv 1 Lu bioassay showed the presence of predominantly bioactive TGF-beta3. This study shows that human colonic subepithelial myofibroblasts secrete predominantly bioactive TGF-beta3 and enhance restitution in wounded epithelial monolayers via a TGF-beta-dependent pathway.

Animals↗

Infection, the gut and the development of the multiple organ dysfunction syndrome.

It has been hypothesised that failure of the gut is an important pathophysiological phenomenon of the generalised inflammatory response that leads to the multiple organ dysfunction syndrome (MODS). Abnormal colonisation, infections of gut origin, bacterial translocation are all signs of gut failure that have been implicated in the pathogenesis of MODS. We have concluded after summarising published experimental and clinical studies that have tried to correlate the occurrence or prevention (by selective decontamination of the digestive tract) of these phenomena with the development of MODS, it seems that in some patients it is clear that loss of intestinal barrier function or the onset of infection precedes the development of MODS. In other patients, however, this relationship is not so clear and it seems that these phenomena may reflect a failure of the host's immune and mechanical defence systems and are epiphenoma of critical illness. The causal relation between those phenomena and the development of MODS are complex and need further clarification.

Animals↗

[Optimal postoperative nutrition: pro and contra enteral and parenteral feeding].

Malnutrition is correlated with an increased incidence of postoperative complications. As a consequence, preoperative hyperalimentation results in a decrease of postoperative complications in patients with malnutrition. In contrast, the beneficial effects of postoperative nutritional support are still to be proven. The majority of prospective trials have shown limited advantageous effects for patients with delayed nutritional intake after the surgical procedure. In these patients enteral nutrition has been shown to reduce the rate of infectious complications. If enteral nutrition cannot be applied, the addition of glutamine as a dipeptide is beneficial with regard to intestinal barrier function.

Enteral Nutrition↗