The CD40/CD40L costimulatory pathway in inflammatory bowel disease.
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Biomedical subjects
Publications and source records attributed to C Fiocchi.
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BACKGROUND: Different abnormalities of T cell effector function distinguish Crohn's disease (CD) from ulcerative colitis (UC). Because cell cycling determines effector function, pathogenic events in CD and UC may depend on cell cycle changes unique to each condition. METHODS: Cell cycle kinetics, cycle regulatory molecule expression, apoptosis, caspase and telomerase activity, and cellular expansion were evaluated in CD2 and CD3 activated control, CD, and UC lamina propria T cells. RESULTS: Compared with normal cells, CD T cells cycle faster, express increased phosphorylated Rb and decreased phosphorylated p53 levels, display less caspase activity but more telomerase activity, die less, and undergo vigorous cellular expansion. In contrast, UC T cells cycle slower, express normal levels of phosphorylated Rb and p53, display more caspase activity but have no telomerase activity, die more, and have a limited capacity to expand. CONCLUSIONS: T cell cycle abnormalities in CD indicate a state of hyperreactivity compatible with loss of tolerance, but a hyporeactive state compatible with anergy in UC. Thus distinct and divergent T cell cycle characteristics underlie the pathogenesis of the two main forms of inflammatory bowel disease.
BACKGROUND: The CD40/CD40L system, a key regulator and amplifier of immune reactivity, is activated in inflammatory bowel disease (IBD) mucosa. AIMS: To determine whether plasma levels of sCD40L are elevated in Crohn's disease (CD) and ulcerative colitis (UC) patients compared with normal controls, to investigate the cellular source of sCD40L, and to explore CD40L induction mechanisms. PATIENTS: CD, UC, and normal control subjects were studied. METHODS: The concentration of sCD40L in plasma and supernatants of freshly isolated platelets and autologous peripheral blood T cells (PBT) was measured by ELISA. Surface CD40L expression level was measured by flow cytometry in resting and thrombin activated platelets, and unstimulated and CD3/CD28 stimulated PBT before and after coculture with human intestinal microvascular endothelial cells (HIMEC). RESULTS: Compared with normal controls, plasma sCD40L levels were significantly higher in both CD and UC patients and proportional to the extent of mucosal inflammation. Platelets from IBD patients displayed a significantly higher surface CD40L expression than those from control subjects, and released greater amounts of sCD40L than autologous PBT. Contact with IL-1beta activated HIMEC induced significant upregulation of CD40L surface expression and release by platelets. CONCLUSIONS: Elevated levels of sCD40L in the circulation of IBD patients reflect enhanced surface expression and release of CD40L by platelets. This phenomenon translates to an increased platelet activation state apparently induced by passage through an inflamed mucosal microvascular bed, a conclusion supported by the positive correlation of plasma sCD40L levels with the extent of anatomical involvement by IBD. These results suggest that platelet-endothelial interactions critically contribute to activation of the CD40 pathway in IBD.
Perception of a disease state by the practising physician is based on how easily the diagnosis can be made and how predictable the outcome of the chosen therapy is. The academic investigator perceives the same disease based on how well its cause and mechanism are understood, and how rational pathophysiology-based treatments are. Because of incomplete knowledge, neither the practising physician nor the academic investigator are comfortable in dealing with inflammatory bowel disease, and both seek help in the dogmas and heresies inevitably associated with chronic disease of unknown aetiology.
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Inflammatory bowel disease (IBD) still presents major challenges to the understanding of its cause, mechanisms of inflammation, and therapeutic choices to control the damaged tissue. Both types of IBD, ulcerative colitis and Crohn's disease, have been known and investigated for over half century but neither one is fully understood nor can be satisfactorily managed. While many gaps in our knowledge still exist, the last two decades have witnessed an unprecedented progress not only in the etiology but mainly in the mechanisms underlying the chronic inflammatory response. The pattern of IBD epidemiology has drastically changed since World War II, with an increased frequency in countries that have adopted a ''westernized'' life style. A parallel and important phenomenon is the continuous drop in age of onset in children. Unfortunately, only few epidemiological clues are available, with the exception of smoking and diet. What in smoking alters the course of IBD is still a mystery and which, among thousands of additives, could represent a risk factor will remain unknown for the foreseeable future. The current emphasis on the study of the enteric flora as the source of potential antigens against which the mucosal immune system reacts appear well justified. The data from animal models appears particularly convincing. Thus, after decades of relying almost exclusively on patient-derived information, numerous animal models are generating precious new information on IBD pathogenesis. In experimental IBD the genetic background of the animal markedly influences the course of the disease, and the same is probably true in humans. The identification of NOD2 as the first mutated gene associated with a subgroup of Crohn's disease patients is the first evidence that genetics are pointing to the right direction for understanding how the environment interacts with genes to cause IBD. For many years immunology has been the main source of scientific information on mechanisms of IBD. Cytokines, chemokines and other soluble factors dominate immunological studies aimed at understanding how different anti-inflammatory and pro-inflammatory mediators are improperly regulated and how immune imbalance can be restored. The extent to which T-cells live or die is also a key determinant of chronicity. In addition to classical immune cells, epithelial, endothelial, mesenchymal and nerve cells are slowly gaining more importance in IBD pathogenesis, as they contribute to the ultimate fate of tissue damage. Medical and surgical therapies are vastly better now that they were only a couple of decades ago, but they are still far from satisfactory. Steroid and aminosalicylates are still the most common drugs after 60 years of use, and it is time to renovate our therapeutic approach to a more effective one. The value of biologicals has been highlighted by the recent success of anti-TNF therapy. Timing of therapy must also change. The concept of the step-by-step approach is slowly fading away, and the idea of an ''all-out'' approach with multiple concomitant drugs early in the disease is gaining credibility. New reports on early aggressive therapies, and the demonstration that early and late experimental IBD are caused by different mechanisms are changing the way we think about managing IBD. Both ulcerative colitis and Crohn's disease will continue to challenge the medical establishment for year to come, but the possibility that IBD can be conquered is more realistic now that never before.
To elucidate the biological dysregulation underlying two forms of inflammatory bowel disease (IBD), ulcerative colitis (UC) and Crohn's disease (CD), we examined global gene expression profiles of inflamed colonic tissue using DNA microarrays. Our results identified several genes with altered expression not previously linked to IBD. In addition to the expected upregulation of various cytokine and chemokine genes, novel immune function-related genes such as IGHG3, IGLL2 and CD74, inflammation-related lipocalins HNL and NGAL, and proliferation-related GRO genes were over-expressed in UC. Certain cancer-related genes such as DD96, DRAL and MXI1 were differentially expressed only in UC. Other genes over-expressed in both UC and CD included the REG gene family and the calcium-binding S100 protein genes S100A9 and S100P. The natural antimicrobial defensin DEFA5 and DEFA6 genes were particularly over-expressed in CD. Overall, significant differences in the expression profiles of 170 genes identified UC and CD as distinct molecular entities. The genomic map locations of the dysregulated genes may identify novel candidates for UC and CD genetic susceptibility.
T cells are essential to initiation, amplification, and regulation of an immune response. This response is terminated when T cells undergo apoptosis, a physiological process of cell death triggered by various mechanisms and regulated by signaling pathways leading to enzymatic degradation of chromatin. An effective immune response depends on the proper balance between proliferation and death of activated T cells. This is particularly important in the intestine, where mucosal T cells are subjected to the high antigenic pressure of lumenal antigens and apoptosis is required to induce tolerance and maintain a state of 'physiological' inflammation. Insufficient apoptosis may result in excessive T cell retention and chronic intestinal inflammation, as seen in conditions associated with defective apoptosis of lamina propria T cells.
BACKGROUND & AIMS: Purified intestinal epithelial cells die of detachment-induced apoptosis due to loss of cell anchorage during isolation. Anchorage-dependent cells form focal adhesions, sites of enhanced cell-matrix attachment that confer survival signals. Focal adhesion kinase (FAK), a component of the focal adhesion signaling complex, transduces these antiapoptotic signals. In this report, the molecular events leading to cleavage of FAK by caspases during apoptosis and its functional implications are defined. METHODS: Cytosolic extracts of human intestinal epithelial cells undergoing detachment-induced apoptosis were analyzed by Western blotting, immunoprecipitation, and kinase assay. RESULTS: FAK is cleaved by the ordered proteolytic activity of 2 different members of the caspase-3 family. The first cleavage is mediated by caspase-3, generating a 94/92-kilodalton-terminal fragment, which is processed by caspase-6 to an 84-kilodalton fragment. After apoptosis is initiated, the level of FAK phosphorylation is rapidly decreased, and the phosphorylation pattern of FAK-associated proteins is dramatically modified, showing significant yet divergent changes in signal transduction. CONCLUSIONS: Cleavage of FAK during apoptosis of normal human cells is an example of the sequential, highly regulated, and coordinate action of caspases that not only dismantle a cell by proteolysis, but also alter the cell's signaling machinery.
The purpose of this study was to evaluate the pharmacokinetics (PK) profile of oral levofloxacin in human immunodeficiency virus-positive patients in steady-state treatment with nelfinavir (NFV) or with efavirenz (EFV) and to determine the effects of levofloxacin on the PK parameters of these two antiretroviral agents. For levofloxacin, plasma samples were obtained at steady state during a 24-h dosing interval. Plasma NFV and EFV concentrations were evaluated before and after 4 days of levofloxacin treatment. Levofloxacin PK do not seem affected by NFV and EFV. There was no significant difference between NFV and EFV plasma levels obtained with and without levofloxacin.
BACKGROUND: Activated T cells are more susceptible to apoptosis than resting T cells. As intestinal T cells normally exhibit a higher state of activation, increased apoptosis may be necessary to maintain immune homeostasis in the specialised microenvironment of the mucosa. On the other hand, in Crohn's disease (CD) mucosal T cells are resistant to apoptosis, suggesting abnormal regulation of cell death mechanisms. AIMS: To investigate differences in expression of anti- and proapoptotic Bcl-2 family proteins, key regulators of apoptosis, between circulating and mucosal T cells, and possible alterations in CD. PATIENTS AND METHODS: Lamina propria T cells (LPT) were isolated from 10 control, seven CD, and eight ulcerative colitis (UC) patients, and peripheral blood T cells (PBT) from healthy volunteers. Purified T cells were stained intracellularly for Bcl-2, Bcl-x(L), and Bax, and mean fluorescence intensity measured by flow cytometry. RESULTS: Compared with PBT, the expression level of Bcl-2 and Bax, but not Bcl-x(L), was significantly greater in LPT, resulting in lower Bcl-x(L)/Bax ratios. In PBT, Bax expression was highly and significantly correlated with both Bcl-2 and Bcl-x(L), but correlation with Bcl-2 was absent in LPT. Bax expression in CD, but not UC, LPT was significantly lower than in control LPT, resulting in a significantly higher Bcl-x(L)/Bax ratio. The significant correlation of Bcl-x(L) to Bax was preserved in CD, but not UC, LPT. CONCLUSIONS: Regulation of Bcl-2 family protein expression differs between circulating and mucosal T cells, probably underlying diverse survival potentials. In CD LPT, a low Bax expression and a high Bcl-x(L)/Bax ratio favour resistance to apoptosis and may contribute to the chronicity of inflammation.
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Nelfinavir is a novel protease inhibitor that exhibits good inhibitory activity against human immunodeficiency virus type 1 (HIV-1) and is currently used in combination with reverse transcriptase inhibitors for the management of HIV infection. In this study we analysed the pharmacokinetic profile of nelfinavir after multiple oral doses in 18 HIV-infected patients during a combination regimen of nelfinavir plus efavirenz and stavudine. Patients who received the study drug for >/=4 weeks were considered for pharmacokinetic evaluation. Blood samples were obtained at the following times: 0 (before nelfinavir administration), 1, 2, 3, 4, 6 and 8 h after administration. Nelfinavir plasma concentrations were analysed by a specific and validated HPLC assay with ultraviolet detection. Nelfinavir concentration-time data were analysed by compartmental and non-compartmental techniques and the pharmacokinetic parameters of nelfinavir were determined according to a one-compartment model. We found a high variability between individuals in nelfinavir plasma concentrations. The mean average drug plasma concentration was 2.22 +/- 1.25 mg/L and the mean AUC during the dosing interval was 17.7 +/- 10.0 mg*h/L. The mean nelfinavir trough plasma concentration was 1.58 +/- 1.0 mg/L. A good relationship was found between AUC(0-8h) and the plasma concentrations measured at 6 h, and the trough plasma concentrations made total body exposure for nelfinavir less predictable. Alternatively, a 2 h abbreviated AUC provides a good estimate of the full AUC(0-8h). Comparing the pharmacokinetic parameters obtained in our patients with those reported for patients receiving nelfinavir monotherapy or nelfinavir combined with nucleoside analogues, one observes substantial overlap with nelfinavir concentrations achieved without efavirenz.
The immunology of inflammatory bowel disease continues to be an intense area of investigation for clues to the pathogenesis of Crohn disease and ulcerative colitis. As typical with complex diseases, inflammatory bowel disease research is continuously evolving. Without abandoning traditional areas of study, such as humoral and cellular immunity and cytokines, investigation is broadening to explore new molecules and biologic phenomena. Novel cytokines and cell adhesion molecules appear to be involved in inflammation, while the role of nitric oxide is being clarified. Leukocyte resistance to apoptosis appears to be a major contributing factor to Crohn disease. Epithelial cell-derived defensins and receptors are arising as key molecules mediating the interaction of innate and acquired mucosal immunity with the enteric flora, and explaining how the latter participates in gut inflammation. The results of these combined studies are opening novel therapeutic horizons whose implementation offers better forms of treatment.
Crohn's disease (CD) is a condition characterized by excessive numbers of activated T cells in the mucosa. We investigated whether a defect in apoptosis could prolong T cell survival and contribute to their accumulation in the mucosa. Apoptotic, Bcl-2+, and Bax+ cells in tissue sections were detected by the TUNEL method and immunohistochemistry. T cell apoptosis was induced by IL-2 deprivation, Fas Ag ligation, and exposure to TNF-alpha and nitric oxide. TUNEL+ leukocytes were few in control, CD, and ulcerative colitis (UC) mucosa, with occasional CD68+ and myeloperoxidase+, but no CD45RO+, apoptotic cells. Compared with control and UC, CD T cells grew remarkably more in response to IL-2 and were significantly more resistant to IL-2 deprivation-induced apoptosis. CD T cells were also more resistant to Fas- and nitric oxide-mediated apoptosis, whereas TNF-alpha failed to induce cell death in all groups. Compared with control, CD mucosa contained similar numbers of Bcl-2+, but fewer Bax+, cells, while UC mucosa contained fewer Bcl-2+, but more Bax+, cells. Hence, the Bcl-2/Bax ratio was significantly higher in CD and lower in UC. These results indicate that CD may represent a disorder where the rate of T cell proliferation exceeds that of cell death. Insufficient T cell apoptosis may interfere with clonal deletion and maintenance of tolerance, and result in inappropriate T cell accumulation contributing to chronic inflammation.
Freshly isolated human mucosal T lymphocytes in vitro can markedly diminish an important property of intestinal epithelium-its barrier function. On the other hand, cytokines and their cellular receptors, which maintain homeostasis of epithelia, limit epithelial permeability, and preserve barrier function, are not well characterized. Using a described human colonic epithelial cell monolayer system, we found that transforming growth factor-beta1 (TGF-beta1) preserved 75% or more of epithelial barrier function, quantitated electrophysiologically, even in the presence of cytokines generated by a high density of barrier-disruptive mucosa-derived mononuclear cells. In opposing the TGF-beta1 effect, cytokines able to reduce barrier function were spontaneously secreted by mucosal T cells and were increased in their barrier effect after T-lymphocyte activation. Further, neutralization of individual cytokines with specific monoclonal antibodies abrogated the lymphocyte-induced reduction in epithelial barrier function, and identified interferon gamma (IFN-gamma), interleukin (IL)-4, and IL-10, but not IL-6, as the primary cytokines whose barrier effects were curtailed by TGF-beta1. Receptors (RI and RII) for TGF-beta1 were found to be localized primarily to the apical and basal membranes of surface epithelium in colonic crypts. These findings provide the scientific basis for new strategies to pharmacologically enhance the barrier function of epithelia in mucosal organs regularly exposed to environmental antigens and to T-lymphocyte products.
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BACKGROUND & AIMS: Immune-nonimmune cell interactions modulate mucosal immunity. We investigated the expression of adhesion molecules by intestinal fibroblasts, the effect of immune cell-derived factor on fibroblast binding of T cells, and the consequences of interfering with adhesion molecule expression on fibroblast-T cell interaction. METHODS: Expression of fibroblast intercellular adhesion molecule (ICAM)-1 and vascular cell adhesion molecule (VCAM)-1 surface and messenger RNA (mRNA) was measured before and after exposure to immune cell-derived supernatants. Fibroblasts were treated with antibodies to ICAM-1 or VCAM-1, or ICAM-1 antisense oligonucleotide Isis 2302, before a T-cell adhesion assay. RESULTS: Fibroblast activation by immune cell-derived cytokines enhanced ICAM-1 and VCAM-1 surface expression and mRNA as well as adhesiveness for T cells. Blockade with neutralizing antibodies showed that binding was almost exclusively dependent on ICAM-1. Isis 2302 specifically reduced fibroblast ICAM-1 mRNA and dose-dependently inhibited ICAM-1 surface expression and T-cell binding. CONCLUSIONS: ICAM-1 is essential for intestinal fibroblast binding of T cells, a phenomenon that is efficiently and specifically disrupted by ICAM-1 antisense oligonucleotides. These observations emphasize the crucial regulatory role of fibroblasts in mucosal immunity and their potential as targets for therapeutic intervention in intestinal inflammation.