PubMed Health⌕ Search

Biomedical subjects

P Desreumaux

Publications and source records attributed to P Desreumaux.

At least 19 recordsLinked to original sources

Successful induction of tolerance to infliximab in patients with Crohn's disease and prior severe infusion reactions.

AIM: To appraise the tolerance and efficacy of an induction of tolerance protocol to infliximab permitting the re-administration of the drug to patients with Crohn's disease having had infusion reactions requiring suspension of treatment. METHODS: Fourteen patients were included in the induction of tolerance protocol. Each infusion of infliximab (5 mg/kg) was divided into 11 escalating 15 min increments over a 3-h time period. The induction of tolerance procedure was repeated for subsequent infusions. RESULTS: Ten patients (71.4%) received all the three infusions for the induction treatment. Nine (64.3%) had a significant response and six (48.8%) still benefited from infliximab infusions. Seven patients (50%) achieved a complete remission, after a mean of 2.5 (two to three) infusions. Four patients (28.6%) had no response and the protocol was stopped. Three patients (21.4%) experienced mild immediate hypersensitivity reactions, which were controlled, two patients (14.2%) experienced severe immediate hypersensitivity reactions, leading to interruption of the treatment and one patient developed a delayed hypersensitivity reaction. CONCLUSION: Our induction of tolerance protocol allows some patients who have experienced severe or repetitive infusion reactions to infliximab to be safely retreated with the drug in a hospitalized setting, with a clinical response achieved in a majority of these patients.

Adult↗

Review article: mode of action and delivery of 5-aminosalicylic acid - new evidence.

The effectiveness of sulfasalazine depends on the splitting of the diazo bond in the molecule by the action of bacteria in the large bowel, releasing the pharmacologically active moiety, 5-aminosalicylic acid. The development of pH-dependent, delayed-release formulations of 5-aminosalicylic acid abolished the toxicity associated with the sulfapyridine part of sulfasalazine. 5-aminosalicylic acid is now believed to act by activating a class of nuclear receptors involved in the control of inflammation, cell proliferation, apoptosis and metabolic function, the gamma form of peroxisome proliferator-activated receptors. These receptors are expressed at particularly high levels in colon epithelial cells, where their expression appears to be at least in part stimulated by gut bacteria. Other drugs known to act via peroxisome proliferator-activated receptor-gamma, such as rosiglitazone and the selective peroxisome proliferator-activated receptor-gamma ligand GW1929, can be displaced from their binding sites on the peroxisome proliferator-activated receptor-gamma molecule by 5-aminosalicylic acid at concentrations of 5-aminosalicylic acid that correspond with the concentrations found in the lumen of ulcerative colitis patients taking oral mesalazine. Genetically engineered heterozygous knockout mice (peroxisome proliferator-activated receptor-gamma+/-) are particularly susceptible to colonic inflammation, and inflammation is more severe in these mice, in response to chemicals that induce experimental colonic ulcers. In these experimental models, 5-aminosalicylic acid is ineffective in peroxisome proliferator-activated receptor-gamma+/- mice. This new insight provides a mechanistic foundation for the possibility that long-term treatment with 5-aminosalicylic acid can reduce the risk of colorectal cancer in patients with ulcerative colitis.

Acetylation↗

PPARgamma as a new therapeutic target in inflammatory bowel diseases.

The peroxisome proliferator activated receptor gamma(PPARgamma) is a nuclear receptor highly expressed in the colon and playing a key role in bacterial induced inflammation. Regulation of colon inflammation by this receptor has been well demonstrated in many experimental models of colitis but also in patients with ulcerative colitis, characterised by impaired expression of PPARgamma confined to their colon epithelial cells. Recent data showing that PPARgamma was the major functional receptor mediating the common aminosalicylate activities in inflammatory bowel diseases (IBD) have also reinforced the roles of this receptor in the control of intestinal inflammation. The aims of this review are to discuss the potential roles of PPARgamma in the physiopathology of IBD, as well as the emerging therapeutic strategies targeting this receptor.

Anti-Inflammatory Agents, Non-Steroidal↗

Mu opioid receptor expression is increased in inflammatory bowel diseases: implications for homeostatic intestinal inflammation.

BACKGROUND AND AIMS: Recent studies with mu opioid receptor (MOR) deficient mice support a physiological anti-inflammatory effect of MOR at the colon interface. To better understand the potential pharmacological effect of certain opiates in inflammatory bowel diseases (IBD), we (1) evaluated the regulation in vivo and in vitro of human MOR expression by inflammation; and (2) tested the potential anti-inflammatory function of a specific opiate (DALDA) in inflamed and resting human mucosa. PATIENTS AND METHODS: Expression of MOR mRNA and protein was evaluated in healthy and inflamed small bowel and colonic tissues, isolated peripheral blood mononuclear cells and purified monocytes, and CD4+ and CD8+ T cells from healthy donors and IBD patients. The effect of cytokines and nuclear factor kappaB (NFkappaB) activation on MOR expression in lymphocyte T and monocytic human cell lines was assessed. Finally, DALDA induced anti-inflammatory effect was investigated in mucosal explants from controls and IBD patients. RESULTS: MOR was expressed in ileal and colonic enteric neurones as well as in immunocytes such as myeloid cells and CD4+ and CD8+ T cells. Overexpressed in active IBD mucosa, MOR was significantly enhanced by cytokines and repressed by NFkappaB inhibitor in myeloid and lymphocytic cell lines. Furthermore, ex vivo DALDA treatment dampened tumour necrosis factor alpha mRNA expression in the colon of active IBD patients. CONCLUSIONS: Given the increased expression of MOR and the ex vivo beneficial effect of DALDA in active IBD, natural and/or synthetic opioid agonists could help to prevent overt pathological intestinal inflammation.

Adult↗

[Desensitisation to infliximab in patients with Crohn's disease].

BACKGROUND: Infliximab is a chimeric monoclonal antibody directed against tumour necrosis factor-alpha that has been shown to improve chronic refractory and fistulating Crohn's disease. Infliximab infusions have been associated both with immediate and delayed reactions. MATERIAL AND METHODS: Desensitisation was performed in four patients who had experienced immediate reactions to infliximab infusions and in one who had developed a delayed reaction. No therapeutic alternatives were available for these patients. Before desensitisation, skin tests were performed. RESULTS: Skin-tests were negative for all patients. Desensitisation was performed with serial dilutions of infliximab with monitoring of vital signs before each increment. After parenteral desensitisation, all five patients were able to tolerate infliximab infusion without complications or any requirement for antihistamines or steroids. However, two patients who had initially presented with an immediate reaction to infliximab experienced arthralgia and myalgia similar to a "serum sickness-type" of reaction 6 to 10 days after desensitisation. CONCLUSION: Even if there is no evidence of an allergic mechanism in infusion reactions to infliximab, successful desensitization can be achieved for patients experiencing acute reactions. The mechanism of desensitisation remains presently unknown. It is not yet possible to say if desensitization will be effective in preventing delayed reactions.

Adult↗

Dysbiosis in inflammatory bowel disease.

Abundant data have incriminated intestinal bacteria in the initiation and amplification stages of inflammatory bowel diseases. However, the precise role of intestinal bacteria remains elusive. One theory has suggested a breakdown in the balance between putative species of "protective" versus "harmful" intestinal bacteria--this concept has been termed "dysbiosis". Arguments in support of this concept are discussed.

Animals↗

Inflammation increases sufentanil requirements during surgery for inflammatory bowel diseases.

BACKGROUND AND OBJECTIVE: Inflammation promotes hyperalgesia and increases opioid binding protein (alpha1-acid glycoprotein) inducing increased opioid requirement. To investigate the influence of an acute episode of inflammatory bowel disease in opioid requirement during major abdominal surgery, 17 patients with Crohn's disease, 12 patients with ulcerative colitis and seven patients without any inflammatory process (control group) were prospectively studied. Sufentanil requirements were assessed during surgery. METHODS: Sufentanil administration was adjusted when haemodynamic variables changed more than 20% of preoperative values. In a subgroup of 20 patients (Crohn's disease: 7, ulcerative colitis: 7, control group: 6), plasma concentrations of alpha1-acid glycoprotein and unbound sufentanil were measured. Total plasma clearance of sufentanil was also determined. Data presented as median (25-75 per thousand) were analysed by non-parametric and ANOVA tests. RESULTS: Despite similar surgery duration, intraoperative sufentanil requirements were significantly larger in both the Crohn's disease group (0.9 (0.6-1.6) microg kg(-1) h(-1)) and the ulcerative colitis group (1.1 (0.6-1.7) microg kg(-1) h(-1)) than in the control group (0.5 (0.4-0.5) microg kg(-1) h(-1)). Total plasma clearance of sufentanil was larger in patients with inflammatory bowel disease than in the control group. The plasma alpha1-acid glycoprotein concentration was increased in the inflammatory bowel disease group. However, the free fraction of sufentanil was similar in all three groups. The largest sufentanil consumption in patients with inflammatory bowel disease was observed during time of pain stimulation in the area of referred hyperalgesia from the affected viscus. In the control group, the sufentanil requirement was constant throughout surgery. CONCLUSION: Inflammatory bowel disease increases opioid requirement during major abdominal surgery.

Adult↗

Card15 gene overexpression in mononuclear and epithelial cells of the inflamed Crohn's disease colon.

BACKGROUND: Crohn's disease is one of the principal human chronic inflammatory bowel diseases. Although its aetiology is still unknown, its complex pathogenesis has environmental, immunological, and genetic determinants. CARD15 is the first susceptibility gene implicated in the predisposition to Crohn's disease and is known to be expressed only in monocytes. However, its expression in situ has not yet been studied. AIMS: To analyse the tissue distribution of CARD15 and identify cells producing CARD15 in samples of colon from patients with Crohn's disease and control subjects. PATIENTS AND METHODS: We analysed CARD15 gene expression in surgical specimens of colon from eight children with Crohn's disease and nine controls by immunohistochemistry, in situ hybridisation, and reverse transcription-polymerase chain reaction (RT-PCR). RESULTS: We showed that CARD15 was present only in the cytoplasm of macrophages in the normal colon. Increased CARD15 expression was detected in Crohn's disease lesions. There were more CARD15 positive cells in Crohn's disease lesions than in uninvolved areas. Both intestinal epithelial cells, macrophages, and their derivatives overproduced CARD15 in Crohn's disease. To further assess CARD15 expression by intestinal epithelial cells, we performed RT-PCR on freshly isolated intestinal epithelial cells, and showed that these cells isolated from Crohn's disease samples contained more CARD15 mRNA than intestinal epithelial cells from controls. CONCLUSIONS: We have demonstrated that colonic involvement in active Crohn's disease is associated with increased CARD15 gene expression in both macrophages and intestinal epithelial cells. Therefore, this deregulation can affect the host-environment interaction and thus contribute to the pathogenesis of this disease.

Acute Disease↗

[Intestinal flora and Crohn's disease].

The pathogenesis of inflammatory bowel diseases (IBD) proceeds through stages of initiation, amplification and healing. Abundant clinical and experimental data incriminate luminal bacteria or bacterial products in both the initiation and perpetuation of chronic intestinal inflammation. Macrophage and T-cell activation with accompanying inflammatory cytokine production appears to be an early event. Studies of lymphocyte responsiveness to autologous and heterologous intestinal bacteria have suggested that this activation may result from a breakdown in tolerance to the enteric flora in IBD. This lack of tolerance might be due to an imbalance between protective and aggressive commensal luminal bacterial species (dysbiosis), a decreased barrier function and/or an impaired mucosal clearance allowing the access of bacteria to the mucosal immune system and lack of regulatory mediators or cells. There is still controversy over whether the virulence traits of bacteria are expressed broadly or just in a small subset of bacteria. Individual bacterial species within the indigenous flora vary in their capacity to drive intestinal inflammation. In experimental models, some bacteria such as Bacteroides vulgatus can cause colitis alone when monoassociated in the HLA-B27 transgenic rat model. Others, including Lactobacillus and Bifidobacterium species have no proinflammatory capacity and have been used as probiotics. In patients with IBD, systematic approach to this issue is hampered by the limited knowledge of intestinal flora. Adherent-invasive Escherichia coli are a possible candidate for the onset and/or persistence of intestinal inflammation in patients with Crohn's disease, since they possess all the virulence factors that allow the bacteria to cross the intestinal barrier, to move to deep tissues, and to continuously activate macrophages. The recent identification of NOD2/CARD15 as a susceptibility gene for Crohn's disease has provided another link between the immune response to enteric bacteria and the development of mucosal inflammation. NOD2/CARD15 is composed of two caspase recruitment domain (CARD), a nucleotide-binding domain (NBD) and a leucin-rich-repeat (LRR) region. The LRR domain of NOD2/CARD15 has binding activity for bacterial peptidoglycans and its deletion stimulates the NF-kappaB pathway. The most frequent variants of NOD2/CARD15 observed in Crohn's disease tend to cluster in the LRR and its adjacent regions. This suggests that the LRR domain of CD-associated variants is likely to be impaired in its recognition of microbial components. Continuing studies are investigating the pathophysiological mechanisms induced by NOD2/CARD15 variants in the intestinal mucosa.

Animals↗

Gene transfer of CD154 and IL12 cDNA induces an anti-leukemic immunity in a murine model of acute leukemia.

IL12 is an essential cytokine for the generation of T helper 1 response, natural killer (NK) cells and cytotoxic T lymphocyte (CTL) stimulation. CD154 triggers CD40 on antigen-presenting cells, thus inducing antigen presentation to the immune system and production of IL12. As IL12 and CD154 share several pathways mediating immune response, we investigated in an aggressive murine model of acute leukemia the relative antileukemic efficiency of IL12, CD154 and IL12 + CD154 gene transfer. Live leukemic cells transduced by IL12, CD154, and IL12 + CD154 showed reduced leukemogenicity but CD154 protective effect was reduced when 10(6) leukemic cells were injected. Vaccines with lethally irradiated IL12-transduced cells were able to cure mice previously injected with 10(4) leukemic cells and adoptive transfer of IL12-induced antileukemic immunity protected recipient mice. NK cytotoxicity was enhanced in mice vaccinated with leukemic cells transduced by IL12, CD154, and CD154 + IL12. IL12 transduced cells induced IFN-gamma mRNA in CD4(+) and CD8(+) T cells isolated from the spleen of vaccinated animals, however, in vivo depletion experiments showed that IL12 vaccine effect was CD4(+) but not CD8(+) T cell dependent. We conclude that IL12 gene is a more potent candidate than CD154 for gene therapy of acute leukemia.

Acute Disease↗

Low ileal interleukin 10 concentrations are predictive of endoscopic recurrence in patients with Crohn's disease.

BACKGROUND: Endoscopic recurrence after surgery in Crohn's disease is frequent and unpredictable. Abnormal intestinal production of pro- (interleukin (IL)-1 beta, tumour necrosis factor alpha (TNF-alpha)) and anti- (IL-10) inflammatory cytokines has been associated with severe outcome in experimental models of colitis. PATIENTS AND METHODS: We evaluated if ileal TNF-alpha, IL-1 beta, or IL-10 mRNA levels measured at the time of surgery predict endoscopic recurrence, and if ileal IL-10 levels are associated with particular IL-10 promoter alleles. Ileal biopsies were obtained peroperatively from the healthy neoileum of patients undergoing a right ileocolectomy for Crohn's disease. Mucosal TNF-alpha, IL-1 beta, and IL-10 mRNA levels were quantified by competitive polymerase chain reaction. A cut off value was determined using a receiver operating curve. IL-10.G promoter haplotypes were analysed using a polymorphic dinucleotide repeat in the IL-10 promoter region. RESULTS: Three months after surgery, 53% of patients had endoscopic recurrence while 47% remained free of disease. The risk of endoscopic recurrence correlated with ileal IL-10 mRNA concentrations (r(2)=0.81). Endoscopic recurrence occurred more frequently in patients classified as low IL-10 producers than in those that were high producers (80% v 40%) (p=0.02). Patients with at least one of the two alleles G7-8 or G10-13 produced, respectively, higher (p=0.006) and lower (p=0.029) ileal IL-10 mRNA. The distribution of IL-10.G microsatellite genotypes was similar in patients with or without endoscopic recurrence. CONCLUSION: Low ileal IL-10 mRNA concentration is a good marker of endoscopic recurrence in Crohn's disease but the distribution of IL-10.G haplotypes cannot predict the postoperative evolution of the disease.

Adult↗

Enterocolitis induced by autoimmune targeting of enteric glial cells: a possible mechanism in Crohn's disease?

Early pathological manifestations of Crohn's disease (CD) include vascular disruption, T cell infiltration of nerve plexi, neuronal degeneration, and induction of T helper 1 cytokine responses. This study demonstrates that disruption of the enteric glial cell network in CD patients represents another early pathological feature that may be modeled after CD8(+) T cell-mediated autoimmune targeting of enteric glia in double transgenic mice. Mice expressing a viral neoself antigen in astrocytes and enteric glia were crossed with specific T cell receptor transgenic mice, resulting in apoptotic depletion of enteric glia to levels comparable in CD patients. Intestinal and mesenteric T cell infiltration, vasculitis, T helper 1 cytokine production, and fulminant bowel inflammation were characteristic hallmarks of disease progression. Immune-mediated damage to enteric glia therefore may participate in the initiation and/or the progression of human inflammatory bowel disease.

Adolescent↗

Attenuation of colon inflammation through activators of the retinoid X receptor (RXR)/peroxisome proliferator-activated receptor gamma (PPARgamma) heterodimer. A basis for new therapeutic strategies.

The peroxisome proliferator-activated receptor gamma (PPARgamma) is highly expressed in the colon mucosa and its activation has been reported to protect against colitis. We studied the involvement of PPARgamma and its heterodimeric partner, the retinoid X receptor (RXR) in intestinal inflammatory responses. PPARgamma(1/)- and RXRalpha(1/)- mice both displayed a significantly enhanced susceptibility to 2,4,6-trinitrobenzene sulfonic acid (TNBS)-induced colitis compared with their wild-type littermates. A role for the RXR/PPARgamma heterodimer in the protection against colon inflammation was explored by the use of selective RXR and PPARgamma agonists. TNBS-induced colitis was significantly reduced by the administration of both PPARgamma and RXR agonists. This beneficial effect was reflected by increased survival rates, an improvement of macroscopic and histologic scores, a decrease in tumor necrosis factor alpha and interleukin 1beta mRNA levels, a diminished myeloperoxidase concentration, and reduction of nuclear factor kappaB DNA binding activity, c-Jun NH(2)-terminal kinase, and p38 activities in the colon. When coadministered, a significant synergistic effect of PPARgamma and RXR ligands was observed. In combination, these data demonstrate that activation of the RXR/PPARgamma heterodimer protects against colon inflammation and suggest that combination therapy with both RXR and PPARgamma ligands might hold promise in the clinic due to their synergistic effects.

Animals↗