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Biomedical subjects

C Fiocchi

Publications and source records attributed to C Fiocchi.

At least 55 records · Page 3Linked to original sources

Adequacy of mucosal biopsies for evaluation of intestinal cytokine-specific mRNA. Comparative study of RT-PCR in biopsies and isolated cells from normal and inflamed intestine.

Endoscopic biopsies are being increasingly utilized to investigate cytokine profiles in normal and diseased intestine. To evaluate the adequacy of mucosal biopsies as a source of cytokine-specific mRNA, we measured their content of interleukin-1 beta (IL-1 beta) and interleukin-2 (IL-2) mRNA by reverse transcription-polymerase chain reaction and compared it to that of autologous lamina propria mononuclear cells in control and inflammatory bowel disease-involved specimens. High-quality total RNA was recovered more consistently from cell isolates than from biopsies. Interleukin-1 beta mRNA was reliably detected in both cell and biopsy samples, whereas IL-2 mRNA was measurable in all lamina propria cells but not always in biopsies. Compared to controls, levels of IL-1 beta were significantly elevated in Crohn's disease and ulcerative colitis cells and biopsies, and a weak but significant correlation existed between values derived from the two sources. In contrast, only ulcerative colitis cell isolates but not biopsies contained significantly reduced concentrations of IL-2 mRNA compared to those of control and Crohn's disease samples, and no correlation was found between cell and biopsy contents. Widely different levels of cytokine-specific mRNA were present in closely adjacent biopsies, particularly for IL-2. These results suggest that mucosal biopsies are suitable to assess some but not all cytokine-specific mRNA due to variation in RNA recovery, intrinsic level of cytokine gene expression, and substantial variability of cytokine transcripts.

Adolescent↗

Inhibition of IFN-gamma activity in supernatants from stimulated human intestinal mononuclear cells prevents up-regulation of the polymeric Ig receptor in an intestinal epithelial cell line.

The polymeric IgR (pIgR) mediates transcytosis of polymeric IgA across mucosal epithelia. Expression of this receptor in HT-29.74 human colon carcinoma cells is up-regulated by the recombinant cytokines IFN-gamma, TNF-alpha, and IL-4. Here, we demonstrate that activation of freshly isolated human intestinal lamina propria mononuclear cells (LPMC) induces production of natural cytokines, and these act synergistically as potent stimulators of pIgR expression in HT-29.74 cells. LPMC from normal colonic mucosa were stimulated with PMA and calcium ionophore A-23187. The resulting supernatants consistently induced dose-dependent increases in pIgR expression by HT-29.74 cells, up to 65-fold. Analysis of four separate LPMC supernatants revealed mean concentrations of 8260 pg/ml for IFN-gamma, 420 pg/ml for TNF-alpha, and 15 pg/ml for IL-4. Ab-mediated neutralization of these cytokines suggested that the central regulator of pIgR expression in these supernatants was IFN-gamma. IL-4 neutralization had no effect on induction and TNF-alpha neutralization slightly reduced induction. In contrast, IFN-gamma neutralization abolished up to 93% of pIgR induction and had essentially the same effect as simultaneous neutralization of all three cytokines. In conclusion, our data demonstrate that natural cytokines, predominantly IFN-gamma, produced by stimulated human intestinal lymphocytes and macrophages have the capacity to up-regulate dramatically pIgR expression in an intestinal epithelial cell line, strongly suggesting that their action in vivo leads to enhancement of local defense functions mediated by IgA.

Animals↗

Eosinophils within the healthy or inflamed human intestine produce substance P and vasoactive intestinal peptide.

The purpose of this study was to show if inflammatory cells within healthy or diseased human intestinal mucosa produce some regulatory neuropeptides. First, inflammatory cells were isolated from the intestinal lamina propria of 11 patients with ulcerative colitis or Crohn's disease. Also collected were cells from anatomically normal intestine derived from five patients requiring bowel resection for diseases not related to inflammatory bowel disease. Extracts of these isolated cells contained authentic substance P (SP) and vasoactive intestinal peptide (VIP) as shown by RIA and their elution profiles on HPLC. Immunostaining of cells from nine of 13 additional patients localized immunoreactive SP and VIP to secretory granules within most mucosal eosinophils. No other cell types stained positive. Messenger RNA encoding SP and VIP was localized to lamina propria eosinophils by in situ hybridization. Mucosa inflammatory cells, from eight of nine more patients, cultured in vitro, released detectable amounts of VIP, but not SP. It is concluded that intestinal eosinophils produce SP and VIP. Since the eosinophils store and release more VIP than SP, it is possible that VIP is the preferred secretory product.

Adolescent↗

Immune activation genes in inflammatory bowel disease.

BACKGROUND: Inflammatory bowel disease is associated with enhanced activation of T cells, but the genes responsible for this state are not well characterized. METHODS: T-cell activation genes were studied in peripheral blood and intestinal mucosal mononuclear cells of control, Crohn's disease, and ulcerative colitis patients. RESULTS: In all groups the expression of interleukin-2 (IL-2), IL-2 receptor alpha (IL-2R alpha), and IL-2R beta messenger RNA (mRNA) was significantly higher in intestinal than circulating cells, and it correlated well with protein levels. Both IL-2R alpha and IL-2R beta mRNA were abundant in mucosal cells, suggesting that a substantial number of them displays high affinity IL-2R. This would explain why intestinal cells proliferate more, express more IL-2 transcripts, and secrete more IL-2 than peripheral cells. Inflammatory bowel disease cells produced similar or higher IL-2R alpha and IL-2R beta mRNA than controls but generated significantly lower IL-2 mRNA. Thus, the reported defect of IL-2 activity in Crohn's disease and ulcerative colitis is probably related to decreased IL-2 transcription. Crohn's disease intestinal cells had the highest expression of IL-2R gene products. This provides a mechanism for their increased response to IL-2 and supports claims that elevated soluble IL-2R alpha serum levels reflect gut T-cell hyperactivity in this disease. CONCLUSIONS: These findings underscore the importance of T cells in mucosal immunity and indicate that abnormal T-cell activation is intimately associated to the pathogenesis of inflammatory bowel disease.

Adolescent↗

Localization of intestinal interleukin 1 activity and protein and gene expression to lamina propria cells.

BACKGROUND: Interleukin 1 (IL-1) is a key mediator of bowel inflammation, but there is limited knowledge about the amount and site of production of this cytokine in the gastrointestinal tract under physiological or pathological conditions. METHODS: Epithelial and lamina propria mononuclear cells were isolated from control, and Crohn's disease- and ulcerative colitis-involved mucosa to investigate the capacity of these cells to generate IL-1 bioactivity, IL-1 alpha and IL-1 beta immunoreactivity, and gene expression. RESULTS: Control lamina propria mononuclear cells produced substantial amounts of IL-1 alpha and IL-1 beta, which increased dramatically when inflammatory bowel disease cells were used. Epithelial cells from control, Crohn's disease, and ulcerative colitis intestine displayed no IL-1 bioactivity or immunoreactivity. Lamina propria mononuclear cells contained moderate to large quantities of IL-1 alpha and IL-1 beta messenger RNA (mRNA), respectively, whereas epithelial cells had none. The absence of IL-1 transcripts in epithelial cells was selective, because mRNA for HLA-DR antigens was present in control and inflammatory bowel disease cells. CONCLUSIONS: In normal and inflamed human intestine there is a distinct compartmentalization of IL-1, as mononuclear but not epithelial cells generate this cytokine. The high levels of IL-1 in inflammatory bowel disease may explain several of its local and systemic manifestations, and blockade by specific antagonists could have important therapeutic effects.

Adolescent↗

Intestinal epithelial cells contribute to the enhanced generation of platelet activating factor in ulcerative colitis.

Generation of platelet activating factor by intestinal mucosal epithelial cells and lamina propria mononuclear cells was evaluated to elucidate the possible role of this mediator in the pathogenesis of inflammatory bowel disease. Epithelial and lamina propria mononuclear cells were isolated from surgical specimens from control, Crohn's disease, and ulcerative colitis patients. Platelet activating factor was extracted from highly purified cell preparations with 80% ethanol after stimulation with and without 0.2 uM calcium ionophore A23187 and was measured by platelet aggregation assay. Both cell types generated platelet activating factor activity and this was generally comparable for epithelial and lamina propria cells. Basal and stimulated platelet activating factor activity of epithelial and lamina propria cells from ulcerative colitis but not Crohn's disease patients was appreciably higher than that of control. Stimulation with calcium ionophore increased appreciably platelet activating factor activity in lamina propria cells from all groups. In contrast, only epithelial cells from ulcerative colitis showed an appreciable increase after calcium ionophore induction. These results suggest that epithelial cells are important contributors to intestinal platelet activating factor generation under normal and inflammatory conditions and that epithelial cells actively play a part in the pathogenesis of ulcerative colitis.

Adolescent↗

Soluble interleukin 2 and CD8 and CD4 receptors in inflammatory bowel disease.

Serum levels of soluble interleukin 2 receptor (sIL-2R) have been proposed as a clinical marker of inflammatory bowel disease. The source of sIL-2R in patients with Crohn's disease and ulcerative colitis is unknown, and other soluble receptors have not been investigated. In the present study, sIL-2R and soluble CD8 and CD4 levels were measured in plasma and culture supernatants of peripheral blood and intestinal mucosal mononuclear cells from patients with inflammatory bowel disease, surgical controls, and healthy subjects. Level of plasma sIL-2R was significantly higher in patients with Crohn's disease and ulcerative colitis than in healthy volunteers. Intestinal cells always produced more sIL-2R than peripheral cells. Spontaneous sIL-2R production by mucosal cells was significantly elevated in Crohn's disease but not in ulcerative colitis supernatants compared with levels of surgical controls. Soluble CD8 and CD4 were poor indicators of systemic or mucosal immunity. A positive correlation was found between plasma sIL-2R and spontaneous production by intestinal cells of patients with Crohn's disease and surgical control patients, whereas ulcerative colitis plasma sIL-2R correlated with spontaneous production by peripheral cells. The association of plasma or spontaneous sIL-2R levels with the degree of intestinal inflammation was weak, and there was a wide overlap with control values. Therefore, caution should be used before considering sIL-2R an accurate marker of inflammatory bowel disease activity.

Aged↗

Resident research award: tumor necrosis factor alpha selectively enhances growth and cytotoxic activity of tumor infiltrating lymphocytes from human colorectal cancer.

Adoptive immunotherapy with tumor-infiltrating lymphocytes (TIL) and interleukin-2 (IL2) can induce regression of tumor metastases in animal models and in human metastatic malignant melanoma. We investigated the potential of colorectal cancer TIL as a source of killer cells and the effect of tumor necrosis factor alpha (TNF alpha) in combination with IL2 on their cytotoxic activity. Tumor-infiltrating lymphocytes were isolated from surgical specimens using a mechanical and enzymatic dissociation process. Autologous lamina propria mononuclear cells (LPMC) were used as control. Tumor-infiltrating lymphocytes and LPMC were cultured in the presence of IL2 with/without TNF alpha (1000 U/ml each) for 5 to 8 weeks. Cytotoxicity (% lysis) was tested against Daudi target cells in a 4-hr 51Cr-release assay. The combination of IL2 and TNF alpha resulted in a significantly greater-fold expansion of TIL than IL2 alone (P less than 0.01). Lamina propria mononuclear cells expanded less than TIL, and TNF alpha had an inhibitory effect on their growth (P less than 0.05). Tumor-infiltrating lymphocytes and LPMC showed comparable cytotoxicity when cultured with IL2 alone. However, the addition of TNF alpha augmented the killer activity of TIL while inhibiting that of LPMC (P = 0.035). These results indicate that TNF alpha selectively increases the IL2-induced growth and cytotoxic function of colorectal cancer TIL, but not those of gut mucosal lymphoid cells, suggesting that TIL and LMPC differ in their response to TNF alpha. Therefore, this combination of cytokines may hold more promise than single agents for the immunotherapy of colorectal cancers with TIL.

Aged↗

Colonic vasoactive intestinal peptide nerves in inflammatory bowel disease.

Vasoactive intestinal peptide is a neuropeptide with potent modulatory activity on intestinal immunity and may be implicated in the pathogenesis of inflammatory bowel disease (IBD). Previous studies have reported abnormal morphology of vasoactive intestinal peptide-stained enteric nerves, in addition to increased, normal or decreased levels of extractable peptide in Crohn's disease (CD) and ulcerative colitis (UC) tissues. These observations have not been correlated with the amount of enteric nerve fibers or the degree of mucosal inflammation. The investigation was intended to determine whether abnormalities of vasoactive intestinal peptide in IBD are related to quantitative changes of enteric nerve fibers or mucosal inflammation, and whether they are specific for CD or UC. To do this, digitized morphometric analysis was applied to a large number of IBD and control colonic surgical specimens that were immunostained for vasoactive intestinal peptide and S100 protein and scored for severity of inflammation. The results showed that, as compared with controls, there is a marked decrease of vasoactive intestinal peptide-immunoreactive nerve fibers in the lamina propria and submucosa (P less than 0.0001), and of S100-immunoreactive nerve fibers in the lamina propria (P less than 0.0001) of patients with IBD. In the lamina propria but not the submucosa, the variation of decrease is significantly associated with the severity (P less than 0.0001) but not the type (P greater than 0.9) of IBD because it is detected in both CD and UC. We conclude that in IBD there is loss of mucosal neuropeptidic innervation that is intimately associated with inflammation. This loss probably represents a nonspecific event subsequent to damage to enteric nerve fibers but may contribute to disruption of local immunoregulation.

Adolescent↗

Loss of interleukin-2-producing intestinal CD4+ T cells in inflammatory bowel disease.

Interleukin-2 activity of intestinal lamina propria mononuclear cells is decreased in Crohn's disease and ulcerative colitis patients compared with control patients with noninflammatory bowel disease. Factors that might be responsible for this phenomenon were investigated. Most interleukin-2 activity was produced by helper (CD4+) T cells. These were present in comparable numbers in both inflammatory bowel disease and control cultures, but the frequency of interleukin-2-producing cells was significantly (3-4 times) lower among Crohn's disease and ulcerative colitis than control cells. In agreement with this finding, levels of interleukin-2 messenger RNA were substantially decreased in both forms of inflammatory bowel disease compared with controls. Mucosal CD8+ T cells and plastic-adherent cells were unable to suppress interleukin-2 activity by autologous or allogeneic CD4+ T cells. The rate of interleukin-2 absorption was similar for inflammatory bowel disease and control cells. Induction of interleukin-2 by different stimuli (phorbol ester, phytohemagglutinin, or anti-CD3 monoclonal antibody) before or after incubation under basal conditions ("resting") failed to normalize the capacity to generate interleukin-2 by Crohn's disease and ulcerative colitis cells. Prostanoids (prostaglandin E2 and 6-keto-prostaglandin F1 alpha) were produced in large amounts in cultures of inflammatory bowel disease cells, but inhibition by indomethacin failed to restore interleukin-2 activity to control levels. Finally, supernatants from Crohn's disease and ulcerative colitis cell cultures failed to suppress interleukin-2 production by control CD4+ T cells. Our results show that the low interleukin-2 activity detected in inflammatory bowel disease mucosa is not caused by activated suppressor cells, excessive lymphokine utilization or immune stimulation, a defective response to activation signals, or production of inhibitory substances. Rather, the low interleukin-2 activity appears to be related to a loss of interleukin-2-producing mucosal CD4+ T cells. It is concluded that abnormalities of intestinal CD4+ T-cell function are associated with the immunopathogenesis of Crohn's disease and ulcerative colitis.

Adolescent↗

Immune events associated with inflammatory bowel disease.

Immunologic abnormalities have been implicated in the etiology of inflammatory bowel disease (IBD). Defects of systemic immunity and of local (intestinal) immunity have been studied. The numbers of T and B lymphocytes and their characteristics seem to vary with the disease, but no cause-and-effect relationship has been established. The presence of anticolon antibodies in patients with ulcerative colitis suggests that these antibodies could be involved in IBD, but they have also been found in other conditions. In the peripheral blood, abnormalities of cell-mediated immunity are inconsistent and suggest that they are not fundamental defects of the disease. The hypothesis that the inflammatory process is a result of immune-mediated intestinal tissue damage is being extensively studied. The high familial incidence of the disease suggests a role of histocompatibility locus antigens, but no reproducible association can be established. In vivo and in vitro studies of mucosal mononuclear cells have revealed abnormalities of immunoglobulin production, some types of cytotoxicity against gut-derived antigens, and altered lymphokine production associated with the disease. Further studies of the intestinal immune system would seem to be the most fruitful line of research.

Antibody Formation↗

High prevalence of antibodies to intestinal epithelial antigens in patients with inflammatory bowel disease and their relatives.

STUDY OBJECTIVE: To assess whether healthy members of families of patients with inflammatory bowel disease share an immune reactivity to gut epithelial cell antigens. DESIGN: Assessment of immune reactivity against epithelial-cell-associated components (ECAC). METHODS: Detection of specific anti-ECAC serum antibodies by antibody-dependent cellular cytotoxicity (percent specific lysis) and by immunoblotting (Western blots). PATIENTS: Index cases (131) and first-degree relatives in 17 families with 2 or more affected members, and 13 with only 1 member affected. MAIN RESULTS: Compared with a gastrointestinal disease control group (0.5% +/- 0.8%), specific lysis against ECAC-C (colon-derived) among patients with inflammatory bowel disease was significantly greater in both multiply affected (8.4% +/- 8.2%; P less than 0.01) and singly affected (5.2% +/- 5.4%; P less than 0.05) families. In contrast, specific lysis by patients with other inflammatory processes of the small and large bowel (1.1% +/- 1.4%) or autoimmune disease (0.7% +/- 1.0%) did not differ from that of the gastrointestinal disease control group. Among relatives of patients with inflammatory bowel disease (index cases), specific lysis was also significantly higher than in the control group (4.8% +/- 5.5% for multiply affected, P less than 0.01, and 4.3% +/- 5.5% for singly affected, P less than 0.05). Relatives of patients with chronic inflammatory liver disease had a level of lysis (0.6% +/- 0.9%) similar to that of controls. The prevalence of antibodies to ECAC-C was 69.7% among patients with chronic inflammatory bowel disease, and 55.7% among relatives; both prevalences were significantly higher than that of the control group (8.0%, P less than 0.001). Using small-bowel-derived ECAC, the prevalence of antibodies among patients with inflammatory bowel disease and relatives was also significantly higher than that of controls. Reactivity of sera was directed to a 160- and a 137-kilodalton macromolecule. CONCLUSIONS: Immune sensitization to intestinal epithelial antigens is common in families with chronic inflammatory bowel disease; its high frequency among asymptomatic relatives suggests it may represent a primary phenomenon, perhaps predisposing individuals to gut tissue injury.

Adolescent↗

Intestinal immune reactivity to interleukin 2 differs among Crohn's disease, ulcerative colitis, and controls.

When stimulated by the lymphokine interleukin 2, human intestinal mucosal mononuclear cells mediate lymphokine-activated killer cell activity. When supplied with optimal doses of exogenous interleukin 2, lamina propria mononuclear cells isolated from inflammatory bowel disease and control tissue display comparable levels of cytotoxicity in vitro. However, cultures of Crohn's disease- and ulcerative colitis-derived cells contain significantly decreased interleukin 2 activity, suggesting that in vivo the availability of interleukin 2 may be limited, perhaps resulting in impaired cytotoxic function. To test this hypothesis, lamina propria mononuclear cells from inflammatory bowel disease and control patients were stimulated to produce endogenous interleukin 2, which was then used to induce autologous lymphokine-activated killer cells. When tested against K562 and Daudi target cells, Crohn's disease cells, despite producing only one-third of the amount of interleukin 2 generated by control cells, exhibited comparable levels of cytotoxicity. In contrast, ulcerative colitis cells produced substantially less interleukin 2 and exhibited remarkably low lymphokine-activated killer cell activity. When the same cells were supplied with an amount of human recombinant interleukin 2 equivalent to the average titer found in control cultures, similar results were obtained, and Crohn's disease cells even showed a significantly greater cytolytic activity than controls. These results suggest that the observed differences in lymphokine-activated killer cell activity cannot be attributed to the level of interleukin 2 alone, and that response to this lymphokine is different among Crohn's disease, ulcerative colitis, and control intestine. In Crohn's disease, there is either an increased number of interleukin 2-responsive cells or an exacerbated reactivity to interleukin 2. In ulcerative colitis, a loss of interleukin 2-responsive cells, a hyporesponsiveness to interleukin 2, or both might be present. In conclusion, this study demonstrates that reactivity to interleukin 2 distinguishes inflammatory bowel disease from control intestinal mononuclear cells, and, under appropriate experimental conditions, it can be used to uncover abnormalities of intestinal immunity.

Adolescent↗

[Molecular genetic detection of polyclonal immune response in autoimmune thyroiditis and inflammatory bowel diseases].

Southern blot hybridization techniques were used to analyze the arrangements of the immunoglobulin and the T cell antigen receptor genes in lymphocytes of patients with Graves disease and Hashimoto's thyroiditis as well as in patients with Crohn's disease, chronic ulcerative colitis, and with other gastrointestinal disease. The results indicate that the immune response of autoimmune thyroid disease and inflammatory bowel disease is of polyclonal origin.

Adolescent↗

CD4 positive Leu-8 negative helper-inducer T cells predominate in the human intestinal lamina propria.

The regulatory function of peripheral blood CD4 T cells correlates with the presence or absence of the membrane glycoprotein recognized by anti-Leu-8 antibody; CD4,Leu8- T cells help Ig synthesis and CD4,Leu-8+ T cells suppress Ig synthesis. In contrast to CD4 T cells from the peripheral blood and organized gut-associated lymphoid tissues, intestinal lamina propria CD4 T cells were found to have diminished expression of the Leu-8 Ag. Therefore, studies were performed to determine whether the decreased expression of the Leu-8 Ag on lamina propria CD4 T cells correlates with a difference in the ability of peripheral blood and lamina propria CD4 T cells to regulate PWM-stimulated Ig synthesis. At high T cell to non-T cell ratios, the helper function of lamina propria CD4 T cells was significantly higher than that of peripheral blood CD4 T cells. When CD4 T cells were incubated with anti-Leu-8 antibody, the suppressor function of peripheral blood CD4 T cells was increased, but lamina propria CD4 T cells did not suppress Ig synthesis. No difference was found between the helper function of CD4,Leu-8- T cells and the suppressor function of CD4, Leu-8+ T cells isolated from either the peripheral blood or the lamina propria. Thus, the difference in the regulatory function of CD4 T cells from the peripheral blood and the lamina propria is due to the quantitative difference in CD4,Leu-8+ T cells in these sites. Consequently, the intestinal lamina propria is a site enriched in CD4,Leu-8- T cells which predominantly mediate help for Ig synthesis.

Antigens, Differentiation, T-Lymphocyte↗