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Intestinal inflammation in children with atopic eczema: faecal eosinophil cationic protein and tumour necrosis factor-alpha as non-invasive indicators of food allergy.

BACKGROUND: Food allergy is contemplated in atopic eczema. Early recognition of food allergies is difficult and the diagnosis is often missed because of the non-specificity of symptoms. New non-invasive tests are clearly needed. OBJECTIVE AND METHODS: We measured the concentrations of tumour necrosis factor-alpha, eosinophil cationic protein and alpha-1 antitrypsin in faeces as indicators of intestinal inflammation induced by double-blind placebo-controlled oral cow's milk challenge in infants and young children with atopic eczema. RESULTS: An increased alpha-1 antitrypsin concentration (> 2 mg/g) after cow's milk challenge was detected in 43% of the infants positive as compared with 11% of the infants negative to challenge, P = 0.02. The concentration of eosinophil cationic protein in faeces increased after cow's milk challenge in patients positive to challenge (P = 0.02) but not in those negative to challenge (P = 0.79). The concentration of eosinophil cationic protein was enhanced particularly in patients manifesting immediate-type reactions to the cow's milk challenge. The concentration of tumour necrosis factor-alpha increased after cow's milk challenge in patients positive to challenge (P = 0.005) but not in those negative to challenge (P = 0.25). The concentration of tumour necrosis factor-alpha in faeces was enhanced particularly in patients manifesting delayed-type reactions to the cow's milk challenge. CONCLUSION: We conclude that in children with atopic eczema food allergy is associated with intestinal inflammation indicating that more general immunologic disturbances than previously thought take place in these patients. We further suggest that faecal eosinophil cationic protein, tumour necrosis factor-alpha and alpha-1 antitrypsin distinctly indicate various reaction types of food allergy. Parallel testing with eosinophil cationic protein and tumour necrosis factor-alpha may significantly enhance the accuracy in diagnosis of food allergy in patients with atopic eczema.

Biomarkers

Quantitative assay for acute intestinal inflammation based on myeloperoxidase activity. Assessment of inflammation in rat and hamster models.

An assay was devised to quantitate acute intestinal inflammation based on the assessment of myeloperoxidase activity. Myeloperoxidase is an enzyme found in neutrophils and, in much smaller quantities, in monocytes and macrophages. Myeloperoxidase was solubilized with hexadecyltrimethylammonium bromide and myeloperoxidase activity was measured with a dianisidine-H2O2 assay. In neutrophil suspensions, myeloperoxidase activity was directly related to cell number down to as few as 500 cells. Myeloperoxidase activity was assayed in two animal models of inflammation: acetic acid-induced colitis in rats and Clostridium difficile enterotoxin-induced enteritis in hamsters. In both models, the activity of myeloperoxidase solubilized from the inflamed tissue was directly proportional to the number of neutrophils seen in histologic sections. Histologic evaluation of neutrophil accumulation was performed by counting the number of neutrophils in a histologic section 0.18 mm long and 5 micron thick. In both animal models, myeloperoxidase activity was linearly related to neutrophil number from 400 and 4000 cells/mm. Myeloperoxidase activity from chronically inflamed colon, in which both neutrophils and histiocytes were present, was directly related to neutrophil content. Histiocytes did not contribute significantly to myeloperoxidase activity. The determination of myeloperoxidase activity in the intestine is a simple biochemical assay that can be used to quantitate inflammation.

Acetates

Substance-P-mediated intestinal inflammation: inhibitory effects of CP 96,345 and SMS 201-995.

The proinflammatory peptide substance P (SP) has been shown to be intimately involved in the local inflammatory processes of Trichinella-spiralis-induced murine intestinal inflammation. Significant increases in SP, increased myeloperoxidase levels coupled with local morphological deterioration of the jejunum and impaired lymphocyte responses to exogenous SP in vitro have been associated with the model. We have recently determined that the elimination of increased levels of SP via anti-SP antibody therapy can spare the murine gastrointestinal tract much of the pathologies associated with the parasitic infection. Here we further demonstrate that the somatostatin analogue SMS 201-995 as well as the SP receptor antagonist CP 96,345 can effectively decrease the inflammation and lost lymphocyte function seen in the jejunum of T. spiralis-infected mice. Again, both intestinal morphology and myeloperoxidase levels were shown to return to normal values upon treatment. The above results suggest that SP is an important modulator of gastrointestinal inflammation.

Animals

Sulphydryl blocker induced small intestinal inflammation in rats: a new model mimicking Crohn's disease.

BACKGROUND: Sulphydryl compounds are essential for maintaining mucosal integrity in the gastrointestinal tract. AIM: To characterise a model of experimental inflammation in the small intestine induced by a sulphydryl blocker. METHODS: Inflammation in the small intestine was induced in rats by intrajejunal administration of 0.1 ml 2% iodoacetamide. The possible amelioration of the damage induced was modulated by intragastric administration of TEMPOL (4-hydroxy-2,2,6,6-tetramethylpiperidine-1-oxyl; 50 mg/100 g body weight), ketotifen (200 micrograms/100 g body weight), or by addition of L-NAME (NG-nitro-L-arginine methyl ester; 0.1 mg/ml) or apocynin (120 micrograms/ml) to the drinking water. Rats were sacrificed at various time intervals, the small intestine resected, weighed, macroscopic lesions were assessed, and mucosal generation of inflammatory mediators and nitric oxide synthase activity were determined. RESULTS: Intrajejunal administration of iodoacetamide induced, after one week, multifocal mucosal erosions, ulcerations with granulomas and giant Langhans cells. At two weeks, the mucosa was almost macroscopically intact but histologically epithelial granuloma and giant cells were present. Myeloperoxidase activity was increased in the first 24 hours, one week later mucosal nitric oxide synthase activity and generation of leukotriene B4, leukotriene C4 and thromboxane B2 were increased, whereas prostaglandin E2 generation was decreased notably. Ketotifen and apocynin significantly decreased the extent of injury which was not affected by TEMPOL or L-NAME. CONCLUSIONS: Jejunal inflammation induced by the sulphydryl blocker, iodoacetamide, resembles the pathological changes in Crohn's disease. The protective effect of ketotifen and apocynin indicates the contribution of O2- and pro-inflammatory mediators to the pathogenesis of the damage, and may be a novel approach to the treatment of inflammatory bowel disease.

Acetophenones

Can sonography diagnose acute colonic diverticulitis in patients with acute intestinal inflammation? A prospective study.

In a prospective study of 123 patients with clinical signs of acute intestinal inflammation, the sensitivity of ultrasonography in diagnosing acute colonic diverticulitis was 84.6% and the specificity 80.3%. The predictive value of a positive and a negative sonogram was 76.0% and 87.7%, respectively. Of the 52 patients with subsequently proven acute colonic diverticulitis, 44 presented sonographically with a thickened (greater than 4 mm) hypoechoic bowel wall. In 15 patients, enlarged fluid-filled bowel loops were also present. Air-containing diverticula were demonstrated in 3 patients, abscesses in 8 patients, and colovesical fistulae in 2 patients. Eight large abscesses were successfully treated without emergency surgery by percutaneous sonographically guided evacuation. The described sonographic abnormalities strongly suggest acute colonic diverticulitis, particularly when localized in the left lower abdomen.

Acute Disease

The inhibitory effects of alpha(2)-adrenoceptor agonists on gastrointestinal transit during croton oil-induced intestinal inflammation.

1. The peripheral effects of alpha(2)-adrenoceptor agonists were investigated in a model of intestinal inflammation induced by intragastric administration of croton oil (CO). Our hypothesis was that inflammation would 'sensitize' adrenoceptors in peripheral and/or central terminals of myenteric and submucous plexus neurones, and enhance systemic effects of alpha(2)-adrenoceptor agonists. 2. Male swiss CD-1 mice, received intragastrically CO (0.05 ml), castor oil (CA, 0.1 ml) or saline (SS) 3 h before the study: gastrointestinal transit (GIT) was evaluated 20 min afterwards with a charcoal meal. The presence of inflammation was assessed by electron microscopy. 3. The intragastric administration of CA or CO caused an increase in GIT and weight loss, but only CO induced an inflammatory response. Both clonidine (imidazoline1/alpha(2)-agonist) and UK-14304 (alpha(2)-agonist) produced dose-related inhibitions of GIT in all groups. During inflammatory diarrhoea (CO), potencies of systemic (s.c.) clonidine and UK-14304 were significantly increased 3.5 and 2.1 times, respectively, while potencies remained unaltered in the presence of diarrhoea without inflammation (CA). The effects were reversed by administration (s.c.) of receptor-specific adrenoceptor antagonists, but not by naloxone. 4. Clonidine was 8.3 (SS) and 2.8 (CO) times more potent when administered intracerebroventricularly (i.c.v.), than when administered s.c. Inflammation of the gut did not alter the potency of i.c.v. clonidine, demonstrating that enhanced effects of s.c. clonidine are mediated by peripheral receptors. During inflammation, i.c.v. efaroxan did not antagonize low doses of s.c. clonidine (ED20 and ED50S), but partially reversed ED80S, further supporting the peripheral effects of the agonists in CO treated animals. 5. The results demonstrate that inflammation of the gut enhances the potency of alpha(2)-adrenoceptor agonists by a peripheral mechanism. The results also suggest that the inflammatory response induces an up-regulation or sensitization of alpha(2)-adrenoceptors and/or imidazoline receptors.

Adrenergic alpha-2 Receptor Agonists

Peripheral effects of opioids in a model of intestinal inflammation in mice.

The study evaluates the peripheral component of the antitransit effects of opioids during acute intestinal inflammation induced by the intragastric administration of croton oil (CO) in mice. Gastrointestinal transit was measured 3 h after CO or saline (SS) administration with a charcoal meal. In both groups, the effects of mixed (morphine, fentanyl, U-50488H) and peripherally acting (N-methylmorphine, PL017, ICI-204448) opioids and their antagonism by naloxone and naloxone methiodide were established. During inflammation, the potencies of morphine and N-methylmorphine increased 3 times, and those of fentanyl and PL017, 1.9 times. The effects were reversed by naloxone (0.1 mg/kg) and naloxone methiodide (0.3 mg/kg). No dose-response relationships could be elicited with U-50488H or ICI-204448, and their antitransit effects were analogous in SS- and CO-treated animals. These results show that during inflammation the enhanced antitransit effects of opioids are primarily mediated by interaction with opioid receptors located at peripheral sites. In addition, inflammation of the gut seems to induce a sensitization of mu-but not kappa-opioid receptors.

Animals

Histopathology of intestinal inflammation related to reactive arthritis.

This study has identified a group of patients with inflammatory chronic, or relapsing acute arthritis who even in the absence of gastrointestinal symptoms have histological evidence of ileocolitis. At colonoscopy simultaneous biopsies of the terminal ileum and colon were taken from 108 patients with reactive arthritis (n = 55) or ankylosing spondylitis (n = 53), 47 patients with other rheumatic diseases and 19 control patients suffering from colonic polyps, adenocarcinoma, or chronic constipation. All control patients and all but one patient with rheumatoid arthritis, juvenile chronic arthritis, systemic lupus erythematosus, lumbar back ache, and psoriatic arthritis did not have histological evidence of acute or chronic inflammatory bowel disease. In contrast, in 30 of 35 (56.6%) patients with ankylosing spondylitis, and in 37 of 55 (67%) patients with reactive arthritis, regardless of HLA B27 phenotype, there was histological evidence of inflammatory bowel disease with features either of acute enterocolitis, or early Crohn's disease. Only 18 of 67 (27%) of the patients with histological gut inflammation, however, had intestinal symptoms.

Adolescent

Gut lavage IgG and interleukin 1 receptor antagonist:interleukin 1 beta ratio as markers of intestinal inflammation in children with inflammatory bowel disease.

BACKGROUND: Whole gut lavage is currently used as preparation before radiological or endoscopic examination of the large bowel. AIM: To validate the gut lavage technique for the assessment of mucosal inflammation, by measuring intestinal IgG and interleukin 1 beta (IL-1 beta) in the fluid obtained. PATIENTS: Sixteen children with Crohn's disease (CD), 14 with ulcerative colitis (UC), and 22 age matched controls. METHODS: Isotonic, non-absorbable polyethylene glycol based lavage solution was given orally or by nasogastric tube. Clear fluid was collected, filtered, and treated with protease inhibitors. IgG, IL-1 beta and IL-1-receptor antagonist (IL-1-ra) were measured by sandwich enzyme linked immunosorbent assay (ELISA). RESULTS: In patients with UC and CD, IgG and IL-1 beta levels were significantly (p < 0.001) higher than in controls. A positive correlation (p < 0.05) was found with disease activity scores. IL-1-ra levels were not significantly different in UC and CD, when compared with controls, but the IL-1-ra:IL-1 beta ratio was significantly (p < 0.01) lower in patients with UC and CD, and negatively (p < 0.001) correlated with IgG levels in lavage fluid. CONCLUSIONS: Gut lavage fluid IgG and IL-1 beta levels and IL-1-ra:IL-1 beta ratio may provide objective discrimination between active and inactive disease in children with inflammatory bowel disease.

Adolescent

Effects of morphine and liposomal morphine in a model of intestinal inflammation in mice.

We have investigated the antitransit effects of free and liposomal morphine in a model of intestinal inflammation. Mice received saline or croton oil orally, 3 h prior to evaluation, and gastrointestinal transit was measured 20 min afterwards. Peak/duration of effects, potency (ED50) and antagonism by naloxone and naloxone methiodide were evaluated. Peak effects occurred 30 and 40 min after administration of morphine and liposomal morphine, respectively. Encapsulated morphine had a more pronounced and prolonged effect than morphine. Comparison of the ED50S demonstrated that the potency of liposomal morphine was 3.5 times higher than that of morphine during inflammation; in addition, inflammation increased the potency of morphine and liposomal morphine, 3 and 9.2 times, respectively. The effects of morphine and liposomal morphine in croton oil-treated mice were reversed by naloxone and naloxone methiodide. The results show that during inflammation, the potency and duration of the antitransit effects of morphine are significantly enhanced by encapsulation.

Animals

Acute and chronic effects of different bile acids on indomethacin-induced intestinal inflammation.

The role of bile acids in the pathogenesis of bowel inflammation is unknown. The objective of this study was to determine whether urso- (UDC), cheno- (CDC), and taurochenodeoxycholic acid (TCDC) exert a pro- or antiinflammatory action in the acute and chronic phase of the indomethacin model of a long lasting ileitis in rats. Short-term and long-term inflammatory responses (48 h and 10 days, respectively) after two subcutaneous indomethacin (Indo) injections were elicited in rat small bowel and mesentery. To distinguish between common and model-specific effects bile acids were tested also in another model of acute inflammation induced by mesenteric superfusion with leukotriene B4(LTB4). The number of adherent and emigrated leukocytes, leukocyte rolling velocity, and venular wall shear rate were monitored in normal and inflamed postcapillary venules, and fecal pH of ileal contents which has been shown to correlate with degree of inflammation was measured, 6.5- and 2.3-fold increases in leukocyte adherence and comparable increments in leukocyte emigration were observed 48 h and ten days after indomethacin treatment, respectively. UDC, CDC, and TCDC (10 mg/kg) given daily from Indo administration until the experiment attenuated the leukocyte adherence and emigration responses elicited by indomethacin in short- and long-term inflammation. This effect was accompanied by a significant increase of fecal pH which had been lowered by indomethacin. None of the bile acids reduced the LTB4-induced increases in adherence and emigration. Oral administration of UDC, CDC, and TCDC reduces leukocyte adhesion and emigration in acute and chronic stages of Indo-induced inflammation. This could be due to the alkalizing effect of these bile acids on fecal pH which has been shown to correlate with a decrease of leukocyte-endothelial cell interactions but--according to the missing effectiveness in another model of intestinal inflammation--not to specific influences on leukocyte-endothelial cell adhesion.

Animals

Diarrhea associated with intestinal inflammation increases the potency of mu and delta opioids on the inhibition of gastrointestinal transit in mice.

The aim of the study was to determine the effects of intestinal inflammation induced by croton oil on the antitransit action of systemically administered receptor-specific opioids. Our hypothesis was that inflammation would "sensitize" opioid receptors in peripheral and/or central terminals of myenteric and submucous plexus neurons and enhance the effects of exogenously administered opioids. Diarrhea was induced by p.o. administration of croton oil and was demonstrated by weight loss and increased gastrointestinal transit. Histologically, an increased number of clear vesicles in the cytoplasm of jejunal epithelial cells and enlarged spaces filled with fine granular material in the extravascular compartment were observed. Subcutaneous morphine and fentanyl produced dose-related inhibitions of gastrointestinal transit in saline-treated controls with ED50 values of 1.24 +/- 0.06 and 0.036 +/- 0.010 mg/kg, respectively. In animals with diarrhea, dose-response curves were parallel and shifted to the left with a significant decrease in ED50 values of 2.95 times for morphine and 1.89 for fentanyl. The effects of the delta agonist Tyr-D-Pen-Gly-Phe-D-Pen, but those of U50,488H [trans-3,4-dichloro-N-methyl-N-(2-(1-pyrrolydynil)cyclohexyl) benzeneazetamine] also were increased significantly during diarrhea associated with inflammation. Naloxone (0.1 mg/kg), MR-2266 [(-)-a-5,9-diethyl-2'-hydroxy-2-(3-furylmethyl)-6,7-benzomorphan] (3 mg/kg) and naltrindole (1 mg/kg) antagonized the effects of the receptor-specific opioid agonists used in the study. Our results show that the potency of s.c. mu and delta opioids is increased during inflammation of the gut and that the effect is mediated by the same type of opioid receptors present in the noninflamed tissue. These results support the view that a sensitization of opioid receptors occurs during acute inflammation of the gut.

Amino Acid Sequence

Epithelial proliferation in response to gastrointestinal inflammation.

Intestinal inflammation seems invariably to be associated with increased epithelial proliferation. In the small bowel the pathological consequences of this area an increase in the crypt proliferative compartment and a decrease in the absorptive villus compartment, which can lead to malabsorption. In the colon, it is more difficult to examine changes in cell proliferation, but using Ki67, epithelial proliferation has been shown to be increased in ulcerative colitis and parasitic infection. The teleological advantage of increasing epithelial proliferation during intestinal inflammation is presumably in an effort to get rid of parasitized or infected epithelial cells, or to rapidly replace cells which have been lost. Rejection of helminth parasites from rodent small bowel is associated with partial villous atrophy and crypt hypertrophy, which is probably part of the host response making the mucosa inhospitable to the parasites. The short-term nutritional disadvantage of malabsorption is outweighed by the long-term advantage of being parasite-free. However, when the intestinal inflammation is elicited by a dietary constituent, the consequences are only pathological. At the moment there is no information as to the mechanisms by which inflammatory cells alter mucosal morphology and epithelial renewal. The restructuring of mucosal morphology in the flat-mucosa involves considerable adaptation of the connective tissue elements of the lamina propria. Whether this occurs in response to changes in epithelial renewal is not known. Finally, it is clear that activated T cells in the lamina propria can produce a flat-mucosa. In diseases such as Trichuris dysentery and ulcerative colitis there is no or very little T cell activation, even though epithelial proliferation is increased. Increased epithelial proliferation therefore may occur in response to different inflammatory stimuli.

Animals

Role of interleukin 8 on leucocyte-endothelial cell adhesion in intestinal inflammation.

BACKGROUND: An important action of interleukin 8 (IL8) is stimulation of granulocytes. The object of this study was to assess the contribution of IL8 to the leucocyte-endothelial cell interactions associated with intestinal inflammation in the rat. METHODS: Two indomethacin injections (48 and 24 hours prior to the experiments) induced a longlasting ileitis in rats. The number of adherent and emigrated leucocytes, leucocyte rolling velocity, and shear rate were monitored in normal and inflamed mesenteric postcapillary venules. Some animals received a monoclonal antibody (MAb) against IL8 or CD11b/CD18 at 24 and 12 hours prior to the experiment. RESULTS: Indomethacin elicited a seven-fold increase in leucocyte adherence and a 5.4-fold increase in leucocyte emigration, while leucocyte rolling velocity was reduced by nearly 80%. The indomethacin induced increases in leucocyte adherence and emigration were significantly reduced (by 57% and 67%, respectively) while leucocyte rolling velocity was increased (to 63% of control) by the IL8-specific MAb. The level of inhibition seen with the IL8 MAb was similar to that associated with administration of a MAb directed against the leucocyte adhesion molecule CD11b/CD18. CONCLUSIONS: IL8 contributes to the leucocyte-endothelial cell interactions elicited in mesenteric venules by indomethacin.

Animals

Mucosal imbalance of IL-1 and IL-1 receptor antagonist in inflammatory bowel disease. A novel mechanism of chronic intestinal inflammation.

The etiology and pathogenesis of inflammatory bowel disease (IBD) are unknown. Increasing evidence supports the theory that chronic IBD is the result of dysfunctional immunoregulation manifested by an inappropriate production of mucosal cytokines. The aim of the present study was to test the hypothesis that a specific mucosal imbalance of IL-1 and IL-1 receptor antagonist (IL-1ra) production plays an important role in the perpetuation and chronicity of intestinal inflammation. Total IL-1, IL-1ra, and the IL-1ra/IL-1 ratio were measured in freshly isolated intestinal mucosal cells, as well as in mucosal biopsies obtained from control, Crohn's disease, and ulcerative colitis patients. IL-1 alpha, IL-1 beta, and IL-1 ra were measured by specific non-cross-reacting radioimmunoassays and ELISA. A markedly significant decrease in the intestinal mucosal IL-1ra/IL-1 ratio was found in both Crohn's disease and ulcerative colitis patients when compared with control subjects (p < 0.01). The IL-1ra/IL-1 ratio correlated closely with the clinical severity of disease (r = -0.7846, p < 0.001). Furthermore, the observed decrease in the IL-1ra/IL-1 ratio was specific for IBD because a decreased IL-1ra/IL-1 ratio was not found in patients with self-limiting colitis. These results support the hypothesis that an imbalance between IL-1 and IL-1ra production is of pathogenic importance in chronic inflammatory diseases, including IBD.

Adolescent

Plasma kinin-precursor levels in clinical intestinal inflammation.

Plasma kinin-precursor (kininogen) concentrations were measured in the peripheral venous blood of 7 untreated patients with inflammatory bowel diseases, 12 healthy subjects, and 5 uncomplicated fracture cases. The mean plasma kininogen levels were significantly raised (P less than 0.025) in patients with intestinal inflammation (7.0 +/- 1.0 micrograms BK Eq/ml), as compared with the value found in healthy subjects (5.7 +/- 0.7 micrograms BK Eq/ml), and in fracture cases (5.0 +/- 1.2 micrograms BK Eq/ml). The packed cell volume did not differ (P greater than 0.05) between patients and control groups. Thus, the raised plasma kininogen levels observed in patients were not the result of nonspecific changes in plasma volume. It is suggested that raised plasma kininogen might be due to increased synthesis to provide substrate for excessive kinin-formation, to a potent inflammatory agent, or to high synthesis of acute-phase reactants. The possible significance of this observation is discussed.

Acute-Phase Reaction

Local production of corticotropin releasing hormone is increased in experimental intestinal inflammation in rats.

BACKGROUND/AIMS: Corticotropin releasing hormone (CRH) suppresses immunological functions via stimulation of the pituitary-adrenal axis, but is also found in peripheral tissues. Peripheral proinflammatory activity of CRH is suggested by increased tissue concentrations in arthritis and in vitro immunostimulatory effects. This study evaluated intestinal CRH concentrations, immunolocalisation, and synthesis in chronic enterocolitis and investigated in vitro responsiveness of lamina propria mononuclear cells to CRH. METHODS: Chronic granulomatous enterocolitis was induced by intramural injection of peptidoglycan-polysaccharide polymers in the ileocaecal region of Lewis rats. CRH protein was measured in caecal specimens by immunohistochemistry and radioimmunoassay and caecal CRH mRNA expression was analysed by reverse transcriptase polymerase chain reaction. RESULTS: In the chronically inflamed caecum abundant immunoreactive CRH was found in inflammatory cells, mesenchymal cells, as well as in myenteric plexi. In contrast, only a few CRH containing cells were detected in normal and HSA injected control caecums. Moreover, caecal CRH protein levels were increased during chronic enterocolitis. Local CRH synthesis as indicated by mRNA expression was considerably increased in chronic enterocolitis whereas it was undetectable or low in uninflamed caecum. In addition, CRH stimulated in vitro proliferation of lamina propria mononuclear cells and inhibited mitogen induced proliferation. CONCLUSION: Increased CRH protein and mRNA expression in chronic enterocolitis and responsiveness of intestinal mononuclear cells to CRH indicate an immunomodulatory role for locally produced CRH in intestinal inflammation.

Animals

UHRF1 deficiency exacerbates intestinal inflammation by epigenetic modulation of NPY1R gene methylation.

Epigenetic modifications play a crucial role in the pathogenesis of inflammatory bowel disease (IBD) by mediating gene-environment interactions. We previously showed that UHRF1, a central regulator of DNA methylation, contributes to cancer progression; however, its function in IBD remains poorly understood. Here, we revealed that UHRF1 was frequently reduced in inflamed tissues of patients with IBD and that its deficiency exacerbated intestinal epithelial cell (IEC) damage. Through a multilevel approach incorporating human cell models and an intestinal epithelial-specific Uhrf1-KO mouse model, we established UHRF1 as a key mitigator of IBD progression. Mechanistically, UHRF1 bound to the NPY1R promoter, promoted its methylation, and led to transcriptional suppression. The NPY1R upregulation resulting from UHRF1 deficiency attenuated cAMP/PKA/CREB signaling in IECs, thereby enhancing NF-&#x3ba;B activation and subsequent proinflammatory responses, which compromised intestinal epithelial barrier integrity. Furthermore, we identified miR-141 as a negative regulator of NPY1R, highlighting its potential as a therapeutic agent. Collectively, our results identified the UHRF1/NPY1R regulatory axis as a critical epigenetic mechanism in intestinal inflammation and underscored its dual promise for IBD diagnostics and therapy.

Animals