Increasing evidence implicates mitochondrial dysfunction in the pathogenesis of inflammatory bowel disease (IBD), with the IBD-associated pathobiont adherent-invasive E. coli-LF82 (AIEC) promoting epithelial mitochondrial depolarization and fragmentation and a concomitant reduction in barrier function. We hypothesized that the anti-inflammatory cytokine interleukin-10 (IL-10), essential for enteric homeostasis, would protect against AIEC-induced mitochondrial disruption. Mitochondrial fragmentation in colonic organoids following infection with E. coli-LF82 was reduced by IL-10 pretreatment + cotreatment. IL-10 significantly reduced the E. coli-LF82 induced mitochondrial dysfunction in the human colon-derived T84 epithelial cell line as measured by mitochondrial network analysis, membrane potential, permeability transition pore opening, oxidative phosphorylation (via oxygen consumption rate), and epithelial barrier integrity. IL-10-treated T84 cells and organoids exhibited increased phosphorylation of STAT3 at serine 727 (a requirement for STAT3 activity at mitochondria), which was abrogated by pharmacological inhibition of ERK (but not JAK) activation, leading to loss of protection against E. coli-LF82-induced mitochondrial dysfunction. Re-expression of wild-type STAT3, but not the S727A mutant, in HT-29 (human colon epithelial cell line) STAT3 knockout cells restored mitochondrial depolarization and ATP levels, underscoring the role of ERK-driven STAT3S727 phosphorylation in IL-10's protective mechanism. In contrast, IL-22, which primarily activates STAT3Y705 and not STAT3S727, failed to prevent AIEC-induced mitochondrial dysfunction. Thus, in the context of exposure to an E. coli pathobiont, IL-10 supports gut epithelial homeostasis via ERK-dependent STAT3S727 maintenance of mitochondrial integrity, contributing to preservation of epithelial barrier function.
Autologous cell therapy is a patient-embraced approach to inflammatory disease. Murine models demonstrate that alternatively activated (or regulatory) macrophages can reduce the severity of disease, and human macrophages (M0) educated with interleukin-4 (M(IL4)) limit murine colitis. M0 and M(IL4) from healthy donors and individuals with Crohn's disease (active or remission) were assessed by qPCR, characterized by a time-of-flight mass cytometry (CyTOF) comparison of 16 myeloid marker molecules expression, and subtypes of M(IL4)s tested in the murine dinitrobenzene sulfonic acid (DNBS) model of colitis and in vitro co-culture with T cells. Most macrophage preparations responded to IL-4 by increasing CD206, CCL18 and RAMP1 mRNA expression and produced mediators that promoted epithelial repair in a wound assay with the human CaCo2 epithelial line. Single-cell clustering by FlowSOM defined 8 distinct subpopulations (meta-clusters) of macrophages, the proportions of which were unaffected by biological sex, age or cryopreservation: meta-cluster 4 (CD206highPD-L1highHLA-DRhigh) represented 20 to 40% of M0s, with a higher proportion in controls compared with active Crohn's disease. IL-4 treatment significantly expanded meta-cluster 4 in all M0s. Transfer of M(IL4)-CD206high (ie, predominantly meta-cluster 4) into rag1-/- mice significantly reduced DNBS-induced colitis, and to a greater extent than M(IL4)-CD206low from the same individual. IL-10 production was increased in M(IL4)-CD206high-T-cell co-cultures. Having confirmed the prohealing effect of the human M(IL4), the predominant meta-cluster M(IL4)-CD206high was found to have superior anticolitic effect. Reduced numbers of M0-CD206high and M(IL4)-CD206high cells in some individuals with Crohn's disease suggest that their absence may contribute to more severe inflammation or reduced healing capacity.
Abstract Background Interlukin-4 activated human macrophages (M(IL4) promote epithelial wound healing and exert an anti-colitic effect in a murine model. Blood monocyte-derived M(IL4)s from healthy donors and individuals with Crohn’s disease had increased mRNA expression of the calcitonin gene-related peptide (CGRP) receptor chain, RAMP1, raising the issue of neural modulation of the M(IL4)s reparative function. Aims To determine if CGRP-RAMP1 signalling in human IL-4 treated macrophages enhances the anti-colitic phenotype. Methods Peripheral blood mononuclear cells from healthy volunteers (HD) and individuals with Crohn’s disease were cultured on plastic (2h, 37°C) and non-adherent cells removed. The adherent cells were cultured with recombinant hM-CSF (10 ng/ml) for 7 days. The resultant macrophages (2.5×105) were differentiated with IL-4 (48h 10 ng/mL). In other cells, CGRP (10 nM) was added 24h after IL-4 and phenotype assessed by qPCR. Rag1-/- mice were treated with M(IL4)±CGRP (1x106 i.p.): 48h later, colitis was induced by oxazolone. FITC dextran was used to evaluate epithelial barrier integrity. A wound healing assay was conducted using CaCo2 epithelial cells and conditioned medium (CM,1:2 dilution) from the different treatments. Prostaglandin D2 production was evaluated by ELISA and cyclooxygenase (COX)-1 and -2 activity inhibited using SC560 and indomethacin. Results Compared to non-treated macrophages (M(0)), M(IL4)s from HD had increased RAMP1 and CLR mRNA. M(IL4)s treated with CGRP showed enhanced expression of CD206, CCL26, RAMP1 and CCL18. When delivered systemically to oxazolone-treated rag1-/- mice, M(IL4,CGRP) had an anti-colitic effect superior to M(IL4)s from the same healthy blood donor. Use of the the human colon CaCo2 cell in vitro wounding model revealed that CM from M(IL4,CGRP) had increased amounts of TGFb and increased wound-healing capacity compared to matched M(IL4)-CM. Moreover, M(IL4,CGRP)s displayed increased COX-1 and PGD2. CM from M(IL4,CGRP)s treated with indomethacin or SC-560 to inhibit COX1 activity failed to promote repair of wounded CaCo2 cell monolayers. Conclusions Neuronal input is revealed as an important local modifier capable of boosting the anti-colitic effect of autologous M(IL4) transfer to treat enteric inflammation. Funding Agencies CCCHelmsley Charity
Abstract Background The Crohn’s disease-associated adherent invasive E. coli (AIEC) (strain LF82) decreases mitochondrial membrane potential and fragments the epithelial mitochondrial network. Due to the evolutionary history of mitochondria as former bacteria, they present a variety of molecular patterns known to trigger innate immune responses. Specifically, mitochondrial DNA (mtDNA) released following mitochondrial damage causes upregulation of type I interferons, priming inflammatory signalling. Thus, we hypothesized that AIEC-induced mitochondrial dysfunction results in mtDNA release to activate innate immune signalling that could contribute to disease pathogenesis in the gut. Aims We aimed determine if an inflammatory response occurs downstream of mitochondrial damage evoked by E. coli-LF82 infection. Methods Control T84 epithelial cells, T84s infected E. coli-LF82 (108 cfu, MOI=100, 4h) and T84s infected with the commensal E. coli-HB101 (108 cfu for an MOI=100, 4h) were collected for protein and RNA extraction. RNA was used to measure IFNα and IFNβ expression following infection, while protein was used to measure upstream mediators including phosphorylation of TANK Binding Kinase-1 (TBK1) via Western blot. Results Epithelia infected with E. coli-LF82 but not E. coli-HB101 displayed dramatic fragmentation of their mitochondria network and increased levels of phosphorylated-TBK1 compared to control T84 cells (pampersand:003C0.01). Assessment of IFNα and IFNβ mRNA revealed significant up-regulation E. coli-LF82 infected T84 cells and human colon organoids. Conclusions Our findings identify a novel role for E. coli-LF82 in activating type I interferon response and for the first time show AIEC-induced activation of TBK1 and type I interferons, which may occur through mitochondrial damage, rather than through response to bacterial molecular patterns. As a result, our findings suggest that the AIEC colonization seen in Crohn’s disease may dysregulate inflammatory signalling through mitochondrial damage. Ultimately, we believe this dysregulation of inflammatory signalling may sensitize the host to further inflammatory signalling, contributing to the pathogenesis of inflammatory bowel disease. Funding Agencies CIHR
Abstract Background Helminth parasites are potent inducers of Th2 immunity, characterized by the production of IL-4, IL-5, IL-13 and IL-10, and mobilization of regulatory cells. This orchestrated immune response establishes an immunomodulatory and/or immunosuppressive environment that may be protective against colitis and other inflammatory diseases. Earlier studies reveal that infection with the tapeworm parasite Hymenolepis diminuta ameliorates chemical-induced colitis in immunocompetent mice, and highlighted participation of the anti-inflammatory cytokine IL-10 in the mechanisms of protection. Moreover, the IL-4ra/STAT6 signaling pathway plays a pivotal role in promoting the Th2 immune response that is crucial for parasite expulsion: IL-4ra KO mice cannot expel the worm. However, the need for activation of IL-4rasignaling in the suppression of colitis by H. diminuta infection is unknown. Aims To determine if the inhibition of DNBS-induced colitis evoked by infection with H. diminuta requires IL-4ra signaling. Methods IL-4ra KO mice (n=4-8/group) were orally infected with 5 viable cysticercoids of H. diminuta and 8 days post-infection (dpi) were treated with 2.5 mg of dinitrobenzene sulfonic acid (DNBS). Subsequently, mice were assessed 72h post-DNBS. Disease was assessed by macroscopic disease activity score, colon length, weight loss, MPO activity of the colon, and leucocyte profile by blood count. Production of IL-10 by concanavalin-A (con-A; 48h)-stimulated splenocytes was measured by ELISA. Results An increase in blood eosinophilia in H. diminuta infected mice indicated a successful infection. DNBS treatment induced acute colitis in IL-4ra KO mice, and surprisingly prior infection with H. diminuta resulted in significantly less severe colitis, as evidenced by reduction in macroscopic disease activity score, prevention of weight loss, reduced MPO colon levels and maintenance of regular colon length. However, splenocytes from H. diminuta-infected IL-4ra KO mice did not show increased IL-10 production evoked by con-A compared to cells from non-infected mice. Conclusions These results indicate that the protection against DNBS-induced colitis by prior infection with H. diminuta can occur in the absence of IL-4ra signalling. This suggests redundancy in the anti-colitic effect of infection with this helminth parasite, such that absence of IL4ra is compensated for via another, yet to be determined, mechanism. We speculate that this may be via participation of type 2 innate lymphoid cell activity, mobilization of regulatory T cells or innate immunity: all possibilities that need to be rigorously tested. Funding Agencies CIHRBeverly Phillips Rising Star and Cumming School of Medicine (U. Calgary) Fellowships
Abstract Background In recent years, extracellular vesicles (EVs) have emerged as important means of intercellular communication and immune modulation between helminth and host. Earlier work revealed that excretory/secretory products from the rat tapeworm Hymenolepis diminuta (HES) have anti-inflammatory properties when applied to macrophages. In this study, we have investigated the immunomodulatory properties of H. diminuta EVs (HEVs) on macrophages. Aims 1. To isolate and characterize bacterial contaminant-free H. diminuta EVs (Hd-EVs). 2. To determine the effects of Hd-EVs on murine macrophage metabolism and LPS-evoked cytokine production. Methods Adult H. diminuta were cultured for 6h in serum-free RMPI and Hd-EVs isolated from the conditioned medium using an exoEasy kit. Hd-EV protein content was measured using a micro-BCA kit, and size and quantity were measured using Nanosight tracking analysis. Murine bone marrow-derived macrophages or the human macrophage THP-1 cell line were treated with LPS (10 ng/ml) ± a crude H. diminuta extract (HdE), HES, or Hd-EVs for 24h. TNF-α levels in the culture medium was measured by ELISA. Macrophage oxidative phosphorylation (OX.PHOS) and glycolysis were measured in real-time using an Agilent Seahorse XF Analyzer. Results Analysis of 14 Hd-EV samples revealed 4.1 X 109 - 5.48 X 1010 particles/mL, with Hd-EVs predominantly 100-350 nm in diameter and with a protein content of 64.9-181.6 ng/mL. HdE and HES reduced TNF-α production in LPS-activated macrophages by 39-76% (n=11), while Hd-EVs did not lower TNF-α production. Metabolic analysis suggests that HES and Hd-EVs can up-regulate macrophage glycolysis, while only Hd-EVs exposed macrophages showed increased OX.PHOS (n=6). Conclusions We have successfully isolated and begun to characterize EVs from adult H. diminuta. Despite the known abilities of HES, we unexpectedly noted that exposure to Hd-EVs did not result in a statistically significant decrease in macrophage TNF-α release. However, the increase in OX.PHOS macrophages treated with Hd-EVs is something to examine further. The next steps are to determine the contents and immunomodulatory activity of the Hd-EVs, thus advancing knowledge of how helminths can manipulate their hosts. Funding Agencies NSERC Clinical Practice
Abstract Background Death of intestinal epithelial cells is ubiquitous in Crohn’s disease (CD) but the death of immune cells such as macrophages is less explored. We have found that monocyte derived macrophages from patients with active CD are more susceptible to H2O2-induced cytotoxicity but the form of regulated cell death these cells undergo remains to be elucidated. Selenium (Se)—a common micronutrient deficiency in patients with CD—is used in the synthesis of selenoproteins that have antioxidant properties (e.g., glutathione peroxidases (GPx)) and are highly expressed in macrophages. Whether Se deficiency plays a role in the increased cytotoxicity also remains to be elucidated. Aims To determine the form of cell death of macrophages in response to H2O2-induced cytotoxicity and whether selenium deficiency plays a role in the increased susceptibility to H2O2-induced cytotoxicity. Methods Blood collected from healthy volunteers and patients with active CD was analyzed for serum GPx activity. Monocytes isolated by plastic adherence were treated with M-CSF (10ng/ml, 7d) to derive macrophages. Macrophages were treated with H2O2 (500μm, 2h) and lactate dehydrogenase release was measured. GPX1, SLC7A11 and PTGS2 mRNA expression were determined by qPCR. The presence of cleaved caspase 3 was determined by immunoblotting and IL-1β by ELISA. Lipid peroxidation a marker of ferroptosis was assessed by staining macrophages with Bodipy C-11 (± liproxstatin-1, an inhibitor of ferroptosis). Results CD macrophages were two times more susceptible to H2O2-evoked cell death. In response to H2O2 macrophages did not express cleaved caspase 3 or IL-1β, but there was an induction of ferroptosis markers (SLC7A11 and PTGS2). Moreover, lipid peroxidation was induced and could be blocked with liproxstatin-1. Dietary Se intake did not differ between groups but serum GPx activity was greater in patients with CD compared to control. In contrast, GPX1 mRNA expression and GPx1 protein expression were decreased in CD macrophages compared to healthy controls. Conclusions Macrophages derived from patients with CD are inherently more sensitive to ferroptosis potentially through reduced GPx1 expression. Future studies warrant testing if GPx1 prevents ferroptotic macrophage cell death and if it holds therapeutic relevance in CD pathophysiology. Funding Agencies Helmsley Charitable Trust, Crohn's and Colitis Foundation of America
Recognizing that enteric tuft cells can signal the presence of nematode parasites, we investigated whether tuft cells are required for the expulsion of the cestode, Hymenolepis diminuta, from the non-permissive mouse host, and in concomitant anti-helminthic responses. BALB/c and C57BL/6 mice infected with H. diminuta expelled the worms by 11 days post-infection (dpi) and displayed DCLK1+ (doublecortin-like kinase 1) tuft cell hyperplasia in the small intestine (not the colon) at 11 dpi. This tuft cell hyperplasia was dependent on IL-4Rα signalling and adaptive immunity, but not the microbiota. Expulsion of H. diminuta was slowed until at least 14 dpi, but not negated, in tuft cell-deficient Pou2f3-/- mice and was accompanied by delayed goblet cell hyperplasia and slowed small bowel transit. Worm antigen and mitogen evoked production of IL-4 and IL-10 by splenocytes from wild-type and Pou2f3-/- mice was not appreciably different, suggesting similar systemic immune reactivity to infection with H. diminuta. Wild-type and Pou2f3-/- mice infected with H. diminuta displayed partial protection against subsequent infection with the nematode Heligmosomoides bakeri. We speculate that, with respect to H. diminuta, enteric tuft cells are important for local immune events driving the rapidity of H. diminuta expulsion but are not critical in initiating or sustaining systemic Th2 responses that provide concomitant immunity against secondary infection with H. bakeri.
Intestinal cell death is a defining feature of Crohn’s disease (CD), a major form of inflammatory bowel disease. The focus on this aspect of enteric inflammation has mainly been on epithelial cells, while other cell types such as stromal and myeloid cells have received less attention. Hypothesising that decreased macrophage viability in an oxidative environment could be a contributing factor to the pathophysiology of CD, we found that monocyte-derived macrophages from individuals with active CD (but not those in clinical disease remission) have increased sensitivity to cell death induced by H2O2. Molecular biology and pharmacological studies ruled out apoptosis and necroptosis, while increased lipid peroxidation and surface expression of the transferrin receptor implicated ferroptosis as the mechanism of the H2O2-induced cell death: this was supported by suppression of H2O2-cytotoxicity by liproxstatin-1, a pharmacological inhibitor of ferroptosis. Selenoproteins are important antioxidants, and selenium deficiency can be a feature of CD. Despite normal dietary intake of selenium, monocyte-derived macrophages and intestinal macrophages in individuals with CD had decreased protein and/or mRNA expression of the selenoprotein, glutathione peroxidase (GPx)-1. Knockdown of GPx1 in macrophages from healthy volunteers resulted in increased H2O2-induced cell death reminiscent of that observed with macrophages from CD. In summary, monocyte-derived macrophages from individuals with CD have increased susceptibility to H2O2-induced ferroptosis cell death, that may be facilitated, at least in part, by reduced expression of the antioxidant GPx1. We suggest that reduced GPx1 in monocytes recruited to the gut and intestinal macrophages renders these cells vulnerable to reactive oxygen species-evoked ferroptosis cell death and that unraveling the participation of this pathway in Crohn’s disease may reveal novel therapeutic approaches to this chronic condition.
Interleukin-4 activated human macrophages [M(IL4)s] promote epithelial wound healing and exert an anticolitic effect in a murine model. Blood monocyte-derived M(IL4)s from healthy donors and individuals with Crohn's disease had increased mRNA expression of the calcitonin gene-related peptide (CGRP) receptor chain, receptor activity modifying protein-1 (RAMP1), raising the issue of neural modulation of the M(IL4)s reparative function. Thus, human M(IL4)s were treated with CGRP and the cells' phagocytotic, epithelial wound repair and anticolitic functions were assessed. Initial studies confirmed upregulation of expression of the CGRP receptor, which was localized to the cell surface and was functional as determined by CGRP-evoked increases in cAMP. M(IL4,CGRP)s had increased mannose receptor (CD206) and FcγRIIa (CD32a) mRNA expression, a subtle, but significant, increase in phagocytosis and decreased chemokine production following the exposure to Escherichia coli. When delivered systemically (106 cells IP) to oxazolone-treated rag1-/- mice, M(IL4,CGRP) had an anticolitic effect superior to M(IL4)s from the same blood donor. Conditioned medium (CM) from M(IL4,CGRP) had increased amounts of transforming growth factor (TGF)-β and increased wound-healing capacity compared with matched M(IL4)-CM in the human CaCo2 epithelial cell line in-vitro wounding assay. Moreover, M(IL4,CGRP)s displayed increased cyclooxygenase (COX)-1 and prostaglandin D2 (PGD2), and CM from M(IL4,CGRP)s treated with indomethacin or SC-560 to inhibit COX-1 activity failed to promote repair of wounded CaCo2 cell monolayers. These data confirm the human M(IL4)s' anticolitic effect that was enhanced by CGRP and may be partially dependent on macrophage COX-1/PGD2 activity. Thus, input from neurone-derived molecules is a local modifier capable of boosting the anticolitic effect of autologous M(IL4) transfer.NEW & NOTEWORTHY A novel pathway is identified whereby interleukin-4-educated human macrophages [M(IL4)s] exposed to calcitonin gene-related peptide (CGRP) reduce oxazolone-induced colitis and promote epithelial wound healing in vitro through COX1-dependent signaling. Support is provided for the concept of macrophage transfer to treat enteric inflammation where neuroimmune interaction, in this case CGRP neuropeptide, produced under inflammatory conditions will reinforce the anticolitic and wound repair capacity of M(IL4) autologous-based therapy for IBD treatment.
Abstract Background Immunocompetent mice infected with the rat tapeworm Hymenolepis diminuta are protected from dinitrobenzene sulphonic-acid (DNBS)-induced colitis that was accompanied by the increased relative abundance of short-chain fatty acid (SCFA)-producing bacteria and fecal SCFA levels at 8 days post-infection (dpi). These changes were not observed in antibiotic-treated BALB/c mice or germ-free mice. To further characterize the host-parasite-microbiota interaction in the control of colitis, experiments have been conducted in a reductionist system in which the H. diminuta anti-colitic response was tested in mice colonized with 12 commensal bacteria representing the major five phyla of the mouse gut. Purpose To identify key bacterial species and microbe-derived mediators involved in the H. diminuta-induced protection from DNBS-induced colitis. Method OligoMM12 (Oligo-Mouse-Microbiota) mice (n=4-8/group) were infected with 10 viable antibiotic-treated H. diminuta cysticercoids eight days prior to challenge with DNBS (3mg, i.r.). Mice were monitored daily and necropsied 72h post-DNBS. Disease was assessed by a macroscopic disease activity score, colon length and histopathology on H&E sections of mid-colon. Production of IL-4, -5, -10 and -13 by concanavalin-A treated spleen cells by ELISA was used as an index of successful helminth infection. Result(s) OligoMM12 mice treated with DNBS developed acute colitis, with 3/8 mice requiring humane euthanization, while all mice infected with H. diminuta survived the DNBS challenge. Successful infection was confirmed by statistically significant increases in splenic output of the Th2-cytokines in response to mitogenic stimulation and efficient expulsion of the worms burden by 11 dpi. The severity of DNBS-induced colitis was reduced in H. diminuta-infected mice (n=4), although additional experiments are required to confirm the statistical significance of these data. Conclusion(s) Reproducible DNBS-induced colitis in mice with the simplified OligoMM12 consortium of bacteria and reduced disease in H. diminuta-infected mice has created a model by which the participation of exact bacterial groups or species in H. diminuta-induced suppression of colitis can be tested. This is of translational value, since the failure of helminth therapy in IBD could be predicated by dysbiosis in the patient, and therefore potentially overcome by combination therapy of ‘probiotic’ and helminth. Please acknowledge all funding agencies by checking the applicable boxes below CIHR, Other Please indicate your source of funding; NSERC-CGS D, Eyes High doctoral Recruitment Scholarship Disclosure of Interest None Declared
Abstract Background The intestinal tuft cell is a versatile epithelial cell implicated in host detection and defence against enteric nematode and trematode parasites by producing interleukin(IL)-25 and cysteinyl leukotrienes. We have shown that immunocompetent mice develop small intestinal tuft cell hyperplasia during infection with the cestode, Hymenolepis diminuta. Whether tuft cells coordinate murine expulsion of H. diminuta and if this response is similar to other well-established parasitic models is unknown. Purpose To test 1) if tuft cells coordinate host detection and immune responses to H. diminuta; and, 2) if the lack of functional B, T cells and innate lymphoid cells (ILC2s) affect tuft cell hyperplasia and expulsion of the parasite. Method Male and female pou2f3-/-/-/+ littermates, rag-1-/- and C57BL6 mice were infected with 5 cysticercoids of H. diminuta. ILC2s were depleted in rag-1-/- with anti-CD90.2 (250μg/mouse, intraperitoneal). At necropsy, small intestines were flushed with cold PBS to count worms. IgG1, IgG2α and mast cell protease-1 (MCPT-1) was measured in serum and supernatants from splenic cells stimulated with ConA (48h) were assessed by ELISA for IL-4, -5, -10 and -13. Doublecortin-like kinase -1 (DCLK-1)+ tuft cells, goblet cells and eosinophils were identified in sections of paraffin embedded or cryopreserved mid-jejunum sections. mRNA of small intestinal epithelium enriched fractions isolated from mice at control and 11 days post-infection (dpi) was evaluated by qPCR. Result(s) Unlike pou2f3+/- and C57Bl6 mice that expel H. diminuta by 8-11 dpi., pou2f3-/- mice harbour H. diminuta at 11 dpi. Pou2f3-/- mice show similar splenic IL-4, -5, -10, -13, and serum IgG1, IgG2a and MCPT-1 levels at 8 dpi. and higher splenic IL-4, -10 at 11 dpi. compared to pou2f3+/- mice. In contrast, pou2f3+/- mice show higher jejunal goblet cell hyperplasia at 8 dpi., higher levels of small intestinal epithelium expression of dclk-1, alox5 and il-25 and jejunal eosinophilia at 11 dpi. compared to pou2f3-/- mice. At 11 dpi, ILCdepletedrag-1-/- develop tuft cell hyperplasia to the same extent as infected PBS/isotype controls and show no trace of intestinal worms in the lumen. Conclusion(s) Enteric tuft cells coordinate rapid expulsion of H. diminuta from mice, but are not essential for the host to detect and develop Th2 systemic responses in response to the worm. However, in the absence of tuft cells, deficiencies are observed in gut-specific effector immune events commonly associated with timely expulsion of enteric helminths; illustrating a disparity between local and systemic immunity following infection with this tapeworm parasite in a non permissive host. The lack of a functional adaptive immune system and surprisingly, depletion of ILC2s, does not completely abrogate worm expulsion or tuft cell hyperplasia in rag-1-/- at 11 dpi. with H. diminuta. This suggests that an innate immune cell population other than CD90.2+ ILC2s amplifies Th2 immunity to H. diminuta-infection. Please acknowledge all funding agencies by checking the applicable boxes below Other Please indicate your source of funding; NSERC, , Eyes High doctoral scholarship, Alberta Graduate excellence scholarship Disclosure of Interest None Declared
Abstract Background With cellular immunotherapy, the individuals’ medication could ablate (or enhance) any therapeutic benefit of the transferred cells. Murine and human macrophages activated with IL-4 (i.e., M(IL4)) improve wound healing and reduce the severity of disease in murine models of colitis. Advancing the position that autologous M(IL4) could be a novel approach to IBD, a critical question arises: will concurrent medication impact the M(IL4)s anti-colitic effect? To address this, we tested if prednisolone, a synthetic, anti-inflammatory glucocorticoid used to induce remission in IBD flares,impacts human M(IL4) phenotype and function. Purpose To determine if prednisolone suppresses or enhances a human M(IL4) phenotype as defined by canonical marker molecules and wound healing and anti-colitic activities. Method Macrophages were differentiated from the blood monocytes of healthy volunteers using M-CSF (7 days) and treated with GMP-grade IL-4 (10 ng/mL, 48h) ± a 24h treatment with prednisolone (1μg/mL). Subsequently, conditioned medium was collected for TGFb measurement by ELISA and for use in a T84 epithelial cell in vitro wound healing assay. Retrieved M(IL4) and M(IL4,pred.) were characterized by mRNA expression of CD206 (mannose receptor), RAMP1 (CGRP receptor), and CD14 (LPS co-receptor). One million murine bone marrow-derived M(IL4) or M(IL4,pred.) were injected into BALB/c mice 48h prior to intra-rectal DNBS (3mg), and colitis was assessed 72h-post DNBS. Result(s) Human M(IL4)s displayed increased mRNA expression of CD206 and RAMP1, and reduced CD14 compared to M(0), with the CD206 and RAMP1 being further increased by prednisolone treatment. M(IL4,pred.) produced more TGF-β than M(IL4) upon LPS stimulation [363 ± 30 vs. 241 ± 24 pg/ml, n= 4, p<0.05], which would predict an enhanced wound healing capacity. Stimulated M(IL4,pred.) produced more IL-10 than M(IL4). Furthermore, murine M(IL4,pred.) retained an anti-colitic capacity comparable to M(IL4) as determined by disease activity score in the DNBS model. Conclusion(s) Human M(IL4)s subsequently exposed to the potent immunomodulatory glucocorticoid, prednisolone show increased expression of phenotypic markers and increased output of TGFb and IL-10. Crucially M(IL4,pred.) retained an anti-colic effect in the murine DNBS model of colitis. Interpreting these data, we suggest that the anti-colitic effect of M(IL4) immunotherapy would not be adversely offset by the individuals concomitant use of steroids. Our preliminary findings support pursuing M(IL4) transfers as a novel approach to the management of IBD. Please acknowledge all funding agencies by checking the applicable boxes below Other Please indicate your source of funding; Helmsley Charitable Trust Disclosure of Interest None Declared
Gut bacteria provide benefits to the host and have been implicated in inflammatory bowel disease (IBD), where adherent-invasive E. coli (AIEC) pathobionts (e.g., strain LF82) are associated with Crohn's disease. E. coli-LF82 causes fragmentation of the epithelial mitochondrial network, leading to increased epithelial permeability. We hypothesized that butyrate would limit the epithelial mitochondrial disruption caused by E. coli-LF82. Human colonic organoids and the T84 epithelial cell line infected with E. coli-LF82 (MOI = 100, 4 h) showed a significant increase in mitochondrial network fission that was reduced by butyrate (10 mM) co-treatment. Butyrate reduced the loss of mitochondrial membrane potential caused by E. coli-LF82 and increased expression of PGC-1$\alpha $alpha mRNA, the master regulator of mitochondrial biogenesis. Metabolomics revealed that butyrate significantly altered E. coli-LF82 central carbon metabolism leading to diminished glucose uptake and increased succinate secretion. Correlating with preservation of mitochondrial network form/function, butyrate reduced E. coli-LF82 transcytosis across T84-cell monolayers. The use of the G-protein inhibitor, pertussis toxin, implicated GPCR signaling as critical to the effect of butyrate, and the free fatty acid receptor three (FFAR3, GPR41) agonist, AR420626, reproduced butyrate's effect in terms of ameliorating the loss of barrier function and reducing the mitochondrial fragmentation observed in E. coli-LF82 infected T84-cells and organoids. These data indicate that butyrate helps maintain epithelial mitochondrial form/function when challenged by E. coli-LF82 and that this occurs, at least in part, via FFAR3. Thus, loss of butyrate-producing bacteria in IBD in the context of pathobionts would contribute to loss of epithelial mitochondrial and barrier functions that could evoke disease and/or exaggerate a low-grade inflammation.
Abstract Background Individuals with IBD have a reduced quality of life and while treatment has improved, a cure remains elusive. Interleukin-4 differentiated macrophages (M(IL4)s) from healthy donors and IBD patients in remission promote epithelial wound repair and reduce the severity of colitis in a mouse model: findings that support the autologous transfer of M(IL4)s to treat IBD. However, issues remain if this novel therapy is to advance to clinical evaluation: a much greater understanding of the possible heterogeneity within the human M(IL4) population, the biology of any sub-groups therein and the biology of any M(IL4) subtypes is needed. Purpose To determine if cryopreservation, sex, and disease status in Crohn's disease (CD) impact the phenotype and function of M(IL4) Method Blood mononuclear cells were collected from healthy donors, and individuals with active CD or in remission (n=6/group), and differentiated to macrophages with GMP-grade recombinant human M-CSF (10 ng/ml, 7 days). Macrophages (2.5 x105) were activated with IL-4 (10ng/ml, 48h). Fresh and cryopreserved M(0) and M(IL4) were stained using a panel of 18 metal-conjugated antibodies. Data were acquired on a Helios CyTOFII mass cytometer. FCS files were imported into Cytobank for manual gating (viable CD45+CD3-CD19- singlet cell events) and exported for meta-clustering in R with the CATALYST package using the FlowSOM function with 10 metaclusters. Result(s) FlowSOM analysis on M(IL4) from healthy donors indicated clear differences between M(0) and M(IL4), with 8 metaclusters >1.5% of M(IL4)s: the most abundant metaclusters express high and intermediate CD206, PDL1, CD11b, CD33, CD64, HLA-DR and low CD14 levels. There were no significant differences in these M(IL4)s metaclusters between males and females, or fresh vs. cryopreserved cells using this characterization strategy. M(IL4) from patients with active CD, were markedly different with the absence of three high-intermediate CD206+PDL1+ metaclusters and a general lack of CD206+ metaclusters compared to healthy controls. Surprisingly, and despite M(IL4)s from CD patients in remission showing increased CD206 mRNA, CYTOF analysis revealed that the macrophages were more similar to those from individuals with active disease than those from healthy controls Conclusion(s) Here human macrophages activated with IL4 in vitro are revealed as a heterogeneous population, and subsets characterized by increased high CD206 expression are generally absent in active Crohn’s disease. Intriguing while prior experiments with M(IL4) from CD patients in remission reduced the severity of colitis in rag1-/- mice, the characterization of these cells via 18 protein markers indicates they are more like M(IL4)s from patients with active disease compared to healthy controls. While presenting autologous M(IL4) transfer as a novel approach for IBD, a much fuller understanding of the phenotype and function of M(IL4)s (and sub-populations therein) is required before this would become a therapeutic option Please acknowledge all funding agencies by checking the applicable boxes below CAG Disclosure of Interest None Declared
Abstract Background Crohn’s disease (CD) is characterized by intestinal inflammation due to the interplay between immunity, genetics, and environmental factors such as diet. Selenium (Se) deficiency is common in patients with CD due to malabsorption or high enteric losses. Selenium is used in the synthesis of selenoproteins that have antioxidant properties (e.g. glutathione peroxidases (GPx)) and are highly expressed in macrophages. However, how Se deficiency affects immune system function in patients with CD is unknown. We hypothesize that characterizing Se status, selenoprotein expression and subsequently macrophage function will advance knowledge of mucosal immunity and provide novel insight into CD. Purpose To determine if patients with active CD and healthy controls differ in Se dietary intake and status, oxidative stress, and macrophage cytotoxicity in response to oxidative stress. Method Blood was collected from healthy volunteers and patients diagnosed with ileal, ileocolonic or colonic CD (age ≥18 years, with mild or moderate endoscopic disease activity or fecal calprotectin ≥250 µg/g, and Harvey Bradshaw index <16, stable medications including biologics for at least 8-weeks prior to recruitment). Serum was analyzed for GPx activity, malondialdehyde (MDA) and C-reactive protein (CRP) concentrations. Monocytes were isolated by plastic adherence and treated with M-CSF (10 ng/ml, 7d) to derive macrophages. mRNA expression of GPx1, GPx4 and SelenoP was determined by qPCR. Lactate dehydrogenase release was measured in macrophages treated with 500 µM H2O2 for 2h. Result(s) Samples and/or dietary intake data were collected from 9 patients with CD (3 female, 6 male, mean age=36.8 years) and 13 controls (7 female, 6 male, mean age=27.7 years). Dietary Se intake did not differ between patients with CD and controls (126.1 ± 23.2 vs. 123.3 ± 19.8 µg/day). GPx activity was greater in the serum of patients with CD compared to controls (369 ± 49 vs. 169 ± 27 mU/mL, n=6-8, p<0.005). Patients with CD and controls did not differ in serum MDA concentration (7.80 ± 0.57 vs. 6.53 ± 1.1 µM). CRP levels correlated with serum MDA concentration in patients with CD (r=0.95, n=5, p<0.05) but not GPx activity. Macrophages from patients with CD (n=6) and controls (n=7) did not differ in expression of GPx1 and GPx4 mRNA, whereas SelenoP mRNA was ~200-fold lower in macrophages from patients with CD. Macrophages derived from patients with CD were more susceptible to H2O2-evoked cell death (10.3 ± 1.1 vs. 4.7 ± 0.7 % n=2-3 p<0.05). Conclusion(s) Despite adequate dietary Se intake our findings suggest altered Se metabolism in patients with active CD, with increases in serum GPx potentially indicative of the need for antioxidant activity to counter oxidative stress. The increased sensitivity of macrophages from patients with CD to H2O2 emphasizes the role of oxidative stress and redox balance in IBD. Defining how micronutrients, in this instance Se, impacts innate immunity may provide new approaches to the management of CD. Disclosure of Interest None Declared
Abstract Background The tuft cell is an important sentinel that monitors the gut lumen and coordinates immunity against parasitic nematodes. We showed small intestinal tuft cell hyperplasia 11 days post-infection (dpi.) with the tapeworm Hymenolepis diminuta: a time when the parasite is no longer present in murine hosts. This may be a way by which the host protects itself from subsequent helminth-infections, a common phenomenon in parasite-endemic world regions. We test this supposition using Pou2f3-/- mice that lack tuft cells. Aims To test the hypothesis that tuft cells are important in the anti-worm response in H. diminuta ( H.d.)-infected mice subsequently infected with the nematode parasite Heligosomoides polygyrus ( H.p.). Methods Male C57BL6 and Pou2f3-/- mice (8–12 weeks) were infected with 5 H.d. cysticercoids ± 200 H.p. larvae at 10 dpi with H. diminuta (non H.p. mice - control). Upon necropsy at 24 dpi H. diminuta (i.e. 14 dpi H.p. in co-infected mice), both worms were ennumerated in small intestinal washings, H.p. granulomas examined and fecal egg counts performed. Small intestinal segments were stained for tuft (DCLK1+) and goblet cells (PAS+). As a surrogate of successful infection, IL-4 and IL-10 were measured in supernatants from concanavalin-A treated splenocytes. Results Wild-type (WT) mice expel H. diminuta by 11 dpi and this was delayed in Pou2f3-/-mice, with worms readily detectable at 14 dpi and absent by 21 dpi. Despite the delayed expulsion, both WT and Pou2f3-/- mice showed increased splenic production of IL-4 and IL-10; however, unlike WT mice, H. diminuta-infected Pou2f3-/- mice show no increase in jejunal goblet cell numbers. Mice infected with H. diminuta displayed a degree of increased resistance to H.p.-infection defined by reduced worm and egg burdens, and increased granuloma formation in comparison to H.p.-only infected animals. In this sequential co-infection model, there were no significant differences between WT and Pou2f3-/- mice in the response to H.p. Conclusions The absence of tuft cells slows expulsion of H. diminuta from its non-permissive mouse host and correlates with diminished goblet cell hyperplasia. Hypothesizing that H. diminuta-evoked tuft cell hyperplasia would enhance the immune response to a subsequent infection with an unrelated nematode parasite proved incorrect. While H. diminuta-infected mice were partially protected from H.p., response was similar in WT and Pou2f3-/- mice. Thus tuft cells are important in worm detection: yet, our co-infection data suggests that other events initiated by the primary worm infection impact the outcome of subsequent infection with a different helminth and tuft cells have a limited, if any, role to play in this helminth-host-helminth interaction. Funding Agencies CIHRNSERC, Eye’s High International doctoral scholarship
Intestinal homeostasis is highly dependent on optimal epithelial barrier function and permeability. Intestinal epithelial cells (IEC) regulate these properties acting as cellular gatekeepers by selectively absorbing nutrients and controlling the passage of luminal bacteria. These functions are energy demanding processes that are presumably met through mitochondrial-based processes. Routine methods for examining IEC mitochondrial function remain sparse, hence, our objective is to present standardized methods for quantifying mitochondrial energetics in an immortalized IEC line. Employing the murine IEC 4.1 cell line, we present adapted methods and protocols to examine mitochondrial function using two well-known platforms: the Seahorse Extracellular Flux Analyzer and Oxygraph-2 k. To demonstrate the applicability of these protocols and instruments, IEC were treated with and without the murine colitogenic agent, dextran sulfate sodium (DSS, 2% w/v). Profound impairments with DSS treatment were found with both platforms, however, the Oxygraph-2 k allowed greater resolution of affected pathways including short-chain fatty acid metabolism. Mitochondrial functional analysis is a novel tool to explore the relationship between IEC energetics and functional consequences within the contexts of health and disease. The outlined methods offer an introductory starting point for such assessment and provide the investigator with insights into platform-specific capabilities.
Abstract Background Recent studies in pre-clinical models of disease have revealed the ability of murine and human IL-4-treated macrophages (M(IL4)) to promote wound recovery and reduce the severity of colitis. An unbiased RNA-sequence analysis of human blood-derived macrophages revealed increased expression of the RAMP1 chain of the CGRP receptor in IL-4 treated cells, raising the intriguing possibility of neural control of regulatory macrophages in the context of neuroimmune interaction in colitis. Thus, we sought to address if this mRNA signal translated into increased RAMP1 protein, if/how CGPR affected M(IL4) function, and if this applied to macrophages from patients with IBD as well as those from healthy donors. Aims To determine if CRGP-RAMP1 signalling in human IL-4 treated macrophages enhances a regulatory phenotype. Methods Peripheral blood mononuclear cells from healthy volunteers and individuals with IBD were cultured on plastic (2h, 37°C) and non-adherent cells removed. The adherent cells were cultured with recombinant hM-CSF (10 ng/ml) for 7 days. The resultant macrophages (2.5×105) were differentiated with IL-4 (48h 20 ng/mL) and assessed by qPCR and immunocytochemistry. In other cells, CGRP (10 nM) was added 24h after IL-4 and (1) cAMP (2) cytokines and (3) phagocytosis of inert FITC-beads measured, and (4) the capacity of supernatant from the cells to promote healing in wounded Caco2 epithelial monolayers tested. Results Compared to non-treated macrophages (M(0)), M(IL4)s from healthy individuals had increased mRNA for both chains of the CGRP-receptor (i.e. RAMP1 and CLR), and increased surface expression of the receptor as shown by immunostaining and CGRP-evoked cAMP. The IL-4 evoked RAMP1 mRNA was only detected in macrophages from 50% of the patients with active IBD. M(IL4)s treated with CGRP showed enhanced expression of the mannose receptor (CD206, allows detection of bacteria), increase phagocytosis of inert beads/macrophages. Moreover, CGRP increases VEGF and CCL18 expression in M(IL4), and soluble mediators from these cells promoted in vitro epithelial wound repair. Conclusions Reduced expression of CGRP and its receptor has been shown in IBD. The findings herein, demonstrating how CGRP-RAMP1 signalling can reinforce and enhance a regulatory, reparatory phenotype in human macrophages reveals another aspect of IBD pathophysiology. We speculate that loss of this neuroimmune axis (i.e. CGRP/Nerve-M(IL4) interaction) has the potential to significantly impair mucosal healing in IBD. Funding Agencies CCCAlberta Innovates in Health Innovation
Abstract Background Infection with the rat tapeworm Hymenolepis diminuta elicits a T helper 2 (Th2) imunity and suppresses dinitrobenzene sulphonic-acid-induced colitis in mice. However, the signaling cascade in an immunocompetent host that recognizes and mobilizies early immune events to expel the worm is poorly understood. To fully understand how helminth-infection can ameliorate concomitant disease, it is important to elucidate key cells/mediators in the detection of the worm and early events in the local anti-worm response. Here, we assess the chemosensory epithelial tuft cell and Peyer’s patches (PP) as the primary inductive sites of mucosal immunity in H. diminuta-infected mice. Aims To assess the role of tuft cells in PP development and worm expulsion following infection of H. diminuta. Methods BALB/c, BALB/c Il-4receptor-a-/-, C57Bl/6 and C57Bl/6 pou2f3-/- (transcription factor critial for tuft cell development) mice were infected with 5 cysticercoids of H. diminuta and necropsied 5-, 8- and 11-days post-infection (dpi); time-matched non-infected mice served as controls. PP number and size were counted and measured. Enteric tuft cells were assessed by immunostaining for the canonical marker double cortin like kinase (dclk)-1, and enumerated in PP-associated epithelium and villous epithelium distant from PP. Results Dclkl+ tuft cells were sparse throughout villus epithelium of control mice, but were notably aggregrated over PPs. Infection with H. diminuta resulted in more detectable PPs by visual inspection, but did not result in a statistically significant increase in either size or number of PP. Infected mice showed increased numbers of dclk1+ tuft cells in villus epithelium and PP-associated epithelium (n=3–6). Tuft cells were absent in pou2f3-/- mice, that showed normal size and number of PPs ± infection with H. diminuta. Unexpectedly, analysis of small intestine from il4ra-/- mice revealed dclk1+ tuft cells in association with PPs; perhaps a unique sub-type of this sentinel cell. Conclusions Analysis of tuft cells after infection with H. diminuta revealed that these cells aggregate around PPs under homeostatic conditions, and future studies will explore if this distrirbution is important for ‘M’ cell development and/or PP immune reactivity. Intrigingly, an il-4ra-independent tuft cell subtype was observed that awaits fuller characterization. Understanding the tuft cell may reveal novel aspects of development of mucosal immunity relevant to combating helminth-infection and perhaps autoinflammatory enteric disease. Funding Agencies NSERC