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Biomedical subjects

K Croitoru

Publications and source records attributed to K Croitoru.

At least 37 records · Page 2Linked to original sources

Overexpression of RANTES using a recombinant adenovirus vector induces the tissue-directed recruitment of monocytes to the lung.

RANTES (regulated on activation, normal T cell expressed and secreted) is a member of the C-C superfamily of chemokines and is reported to function as a potent chemoattractant for monocytes, eosinophils, and a subpopulation of CD4+ T cells. Using a recombinant human type 5 adenovirus containing the murine RANTES cDNA (Ad5E3 mRANTES), which is capable of expressing biologically active cytokine upon infection, we initiated a study to characterize the biologic functions of RANTES cytokine in vivo. Intratracheal administration of Ad5E3 mRANTES targeted transient RANTES expression to the bronchial epithelium of the lung in Sprague-Dawley rats. Bronchoalveolar lavage fluids (BAL) collected at 24 h had increased chemotactic activity vs controls as measured in a murine CD4+ T cell Boyden chamber microchemotaxis assay. There was a dramatic increase in the number of cells (macrophage, monocytes, and neutrophils) recovered from BAL samples taken from Ad5E3 mRANTES-treated animals at 24 h, with a >50-fold increase in monocytes, indicating a proinflammatory effect for this cytokine in vivo. This effect on monocytes was transient, decreasing by 7 days, with evidence of increased eosinophils and lymphocytes at this time. Histologic examination of lung sections at 24 h revealed greatly increased numbers of mononuclear cells, primarily monocytes, within the lungs of Ad5E3 mRANTES-treated animals, with increased extravasation of monocytes around blood vessels, indicating an ongoing process of peripheral blood monocyte recruitment. This study provides further evidence for RANTES to be a monocyte chemoattractant in vivo.

Adenoviridae↗

Intestinal epithelial cell line induction of T cell differentiation from bone marrow precursors.

The mechanism whereby the intestinal microenvironment promotes T cell development in the absence of the thymus is unknown. We show that the murine intestine-derived epithelial cell line, MODE-K, can induce T cell differentiation marker expression in vitro on bone marrow (BM) T cell precursors. Three-color flow cytometry analysis of T-cell-depleted C3H BM mononuclear cells (MNC) after 4 days of coculture on monolayers of MODE-K indicated that approximately 25% of MNC expressed CD3 and TCR alpha beta. Of these CD3+ cells, 36% were CD3loCD4-CD8- double negative (DN), 34% were CD3loCD4+CD8 alpha beta+ double positive (DP), and the remainder were CD3hiCD4+CD8- or CD3hiCD4-CD8 alpha beta+ single positive (SP). In addition, the T cells which developed in coculture with MODE-K expressed the early T cell differentiation marker CD24 (heat-stable antigen). These T cells subsets did not develop when BM was cocultured with the LTA fibroblast cell line or in medium alone. Interestingly, preventing cell contact between MODE-K and BM by culturing in Transwell plates did not interfere with the development of T cells expressing the DN, DP, or SP phenotypes. Double-positive T cells did not develop if splenic MNC were cocultured with MODE-K. These results suggest that the intestinal epithelial environment can induce and support the T cell development from bone marrow precursors.

Animals↗

Rat peritoneal mast cells produce IFN-gamma following IL-12 treatment but not in response to IgE-mediated activation.

Mast cells have been reported to secrete a wide range of immunoregulatory cytokines following IgE-mediated activation and to play an important role in allergic inflammation. We have previously demonstrated that mast cells can also produce certain cytokines following activation with bacterial LPS or prostanoids without preformed mediator release. IL-12 is a potent inducer of IFN-gamma production by T cells and NK cells, and is thought to play a critical role in determining the nature of the local immune response to infection. We here report that highly purified peritoneal mast cells from Brown Norway rats will produce IFN-gamma in response to IL-12 without significant histamine release. IFN-gamma protein was detected by ELISA in supernatants of mast cells cultured with 2 U/ml recombinant mouse IL-12 for between 6 and 24 h. The production of IFN-gamma was dependent on the dose of IL-12 and was significantly inhibited by concurrent treatment with IL-10 or PGE2. Supernatants from IL-12-stimulated mast cells induced MHC class II expression on the mouse epithelial cell line, MODE-K, by an IFN-gamma-dependent mechanism. Peritoneal mast cells cultured following activation with anti-IgE or LPS, under conditions that will induce the production of IL-6, demonstrated no detectable protein production of IFN-gamma. We conclude that mast cells are capable of contributing to the IFN-gamma response to IL-12, but substantial mast cell IFN-gamma production does not occur as a result of IgE-mediated activation. These observations have important implications for the role of the mast cell in local immune regulation.

Animals↗

CD40 expression by human peripheral blood eosinophils.

In this study, we have investigated CD40 expression in human peripheral blood eosinophils and in human chronically inflamed nasal tissues, i.e., nasal polyps. We show by both reverse transcriptase-PCR and Northern blot analysis that eosinophils from allergic subjects express human CD40 mRNA. We also show that constitutive CD40 mRNA expression in eosinophils could be upregulated by exposure to IgA immune complexes and downregulated by IL-10 and the synthetic steroid budesonide. In addition, we demonstrate that eosinophils express CD40 protein by flow cytometry. Such expression is biologically functional as cross-linking CD40 with CD40 mAbs enhances eosinophil survival in a dose-dependent fashion; in addition, CD40 ligation stimulates eosinophils to release GM-CSF. CD40-mediated eosinophil survival was largely inhibited by an anti-GM-CSF neutralizing antibody suggesting GM-CSF involvement in the survival enhancing mechanism. CD40 mRNA was also detected in total RNA extracted from nasal polyp tissues but not in RNA isolated from normal nasal mucosa (inferior turbinate); by immunohistochemistry, we were able to detect immunoreactive CD40 protein in a variety of cell types in the polyp stroma, but primarily in eosinophils. These observations suggest previously unforeseen interactions between eosinophils and cells expressing the CD40 ligand and, thus, novel pathways by which eosinophils may contribute to the regulation of airway inflammation.

Antibodies, Monoclonal↗

T cell-monocyte interactions regulate epithelial physiology in a coculture model of inflammation.

We have examined the effect of T cell activation, with or without monocytes, on epithelial electrolyte transport and barrier functions. Confluent monolayers of human T84 epithelial cells were cocultured (1-3 days) with peripheral blood mononuclear cells (PBM) or T cells activated by anti-CD3 antibody. Monolayers were then mounted in Ussing chambers, and changes in ion transport (indicated by short-circuit current, Isc) and barrier (indicated by resistance and radiolabeled probe fluxes) functions were assessed. Coculture with activated PBM or conditioned medium from these cells altered the transport (decreased Isc responses to carbachol and forskolin) and barrier (decreased resistance and increased fluxes of [3H]mannitol and 51Cr-EDTA) properties of T84 monolayers. In contrast, coculture with equal numbers of T cells activated in the absence of monocytes did not significantly affect epithelial physiology. Monocytes treated with conditioned media from activated T cells evoked epithelial abnormalities similar to those caused by culture with activated PBM. Total correction of epithelial abnormalities was achieved only by treating T cell-conditioned medium with anti-interferon-gamma (IFN-gamma) before addition to monocytes, as well as addition of anti-tumor necrosis factor-alpha (TNF-alpha) to the coculture. Exogenous recombinant IFN-gamma and TNF-alpha added to T84 monolayers did not mimic the physiological changes induced by immune cells; addition of these cytokines to monocytes did reproduce the effects. We conclude that T cell-derived IFN-gamma activates monocytes to release TNF-alpha and other soluble mediators, resulting in epithelial dysfunction.

Actins↗

MHC class I-mediated antigen presentation and induction of CD8+ cytotoxic T-cell responses in autoimmune diabetes-prone NOD mice.

The common class I alleles (e.g., Kd and Db) within the H2g7 major histocompatibility complex (MHC) clearly contribute to autoimmune IDDM in NOD mice, but the mechanism by which this occurs has been controversial. One laboratory has reported that the peptide transporter encoded by the Tap1 gene within H2g7 is defective, and this contributes to IDDM by impairing MHC class I-mediated antigen presentation. If true, defective MHC class I-mediated antigen presentation should segregate with the H2g7 haplotype. NOD mice, related congenic stocks, and other control strains were used to test this hypothesis. H2g7-positive strains did not differ from those expressing other MHC haplotypes in ability to present MHC class I-restricted H3aa or H3ab minor histocompatibility (H) antigens to cytotoxic T-lymphocytes (CTL). The H2g7 haplotype was found to have a reduced capacity to mediate MHC class I-restricted presentation of the H47a minor H antigen. However, MHC class I-restricted presentation of H47a was found to be Tap independent. NOD mice and control strains also did not differ in ability to activate adenovirus-specific MHC class I restricted CTL. Thus, the H2g7 haplotype is not characterized by a Tap gene defect that only impairs the inductive phase of the immune response. In addition, MHC class I-restricted presentation of either minor H or adenoviral antigens was equivalent in male and female NOD mice. Therefore, while the class I alleles of the H2g7 haplotype exert diabetogenic functions in NOD mice, this is not elicited through a Tap gene defect. The absence of female-specific Tap gene defects also indicates this cannot account for the reduced male incidence of IDDM in some NOD mouse colonies.

Alleles↗

Budesonide inhibits T cell-initiated epithelial pathophysiology in an in vitro model of inflammation.

Recognition of the therapeutic value of glucocorticosteroids in the treatment of inflammation has preceded awareness of the mechanism(s) of action of these drugs. We recently showed that coculture of human T84 epithelial monolayers for 2 days with anti-CD3 activated peripheral blood mononuclear cells (A-PBM) led to impaired ion transport responses and reduced barrier function. We tested the hypothesis that budesonide, as a member of the new generation of more topically selective steroids, could prevent these immune-mediated epithelial abnormalities. Budesonide added to the coculture system dose-dependently inhibited the following functional T84 abnormalities measured in Ussing chambers: reduced transport responses (decreased short-circuit current changes to carbachol (raises [Ca2+]i) and forskolin (raises cAMP, cyclic adenosine monophosphate(i)); and increased permeability (decreased resistance and increased fluxes of 3H-mannitol and 51CrEDTA). For the beneficial effects of budesonide to be observed, PBM pretreatment (> or = 3 hr) and daily addition (for 2 days) to the coculture system was necessary. Budesonide (10(-7) M) dramatically reduced A-PBM proliferation (measured by 3H-thymidine incorporation) and cytokine (IL-1beta, IL-2, IL-6, IFN-gamma, TNF-alpha) production, but was not cytotoxic to immune cells. Budesonide treatment of T84 epithelial cells alone did not directly affect epithelial physiology, nor did it prevent epithelial abnormalities evoked by subsequent exposure to A-PBM or conditioned media from immune cells. Our studies showed that budesonide prevents epithelial dysfunction in this model by inhibiting activation of both T cells and monocytes.

Adult↗

Role of T lymphocytes in secretory response to an enteric nematode parasite. Studies in athymic rats.

Athymic (nude) rats have been used to assess the role of thymus-dependent T cells in the control of the intestinal response following infection with the enteric parasite, Nippostrongylus brasiliensis. Tissues from infected rats were excised on days 4, 7, 10, and 21 postinfection (p-i) for physiological and morphological studies; uninfected (day 0) rats served as controls. In response to the worm burden, jejunal tissues displayed a secretory response, indicated by an elevated baseline short-circuit current (Isc) on days 7 and 10 p-i, and were more responsive to histamine than control tissues. Despite this enhanced secretory response, approximately 35% of the worm burden was still present on day 21 p-i (compared with expulsion of > 95% by day 14 p-i in normal rats). Mast cell activation and hyperplasia, increased goblet cell (implying increased mucus synthesis) and intraepithelial leukocyte numbers, and abnormalities in Isc responses after electrical stimulation of enteric nerves were identified following infection. These events in nude rats were attenuated or delayed in onset as compared with conventional immunocompetent rats. Our results support the postulate that thymus-dependent T cells regulate the timing and/or nature of the mucosal response to enteric parasitic infections. However, ion secretion was not altered in the absence of T cells and, therefore, is more likely to be a consequence of mast cell activation.

Analysis of Variance↗

Cytotoxic activity of V beta 8+ T cells in Crohn's disease: the role of bacterial superantigens.

In Crohn's disease, disease-related stimuli could alter the T cell receptor (TCR) repertoire. To examine the possibility that changes in function may occur in T cell subsets without obvious changes in expression of TCR, we analysed the TCR repertoire of cytotoxic T lymphocytes in Crohn's disease peripheral blood. Furthermore, we examined the effect of bacterial superantigens, staphylococcal enterotoxin B (SEB) and E (SEE) on the cytotoxic function of T cell subsets bearing different TCR V genes using MoAbs specific for CD3 and TCR V gene products in a redirected cytotoxicity assay. There was no difference between patients and controls in the cytotoxicity measured in concanavalin A (Con A)-stimulated peripheral blood mononuclear cells (PBMC) with anti-CD3 or with six of seven anti-TCR V gene MoAbs. However, the cytotoxicity of V beta 8 T cells was decreased in Crohn's disease patients. This was not due to a decrease in total or CD8+ T cells expressing V beta 8. Furthermore, in normal subjects, PBMC stimulation with SEE and SEB selectively expanded and increased the cytotoxicity of V beta 8 and V beta 12 T cells, respectively. In Crohn's disease, although SEB stimulation increased the number and cytolytic function of the V beta 12 subset, SEE stimulation failed to increase cytolytic activity of V beta 8+ T cells in spite of the expansion of V beta 8+ T cells. These results suggest that the changes in cytotoxic function observed in V beta 8 T cells in Crohn's patients may reflect previous exposure to a V beta 8-selective superantigen.

Crohn Disease↗

Adenovirus-mediated cytokine gene transfer at tissue sites. Overexpression of IL-6 induces lymphocytic hyperplasia in the lung.

The biologic function of cytokines may be best studied in the context of a defined tissue site. To establish a model for studying the function of IL-6 at local tissue sites, we targeted the IL-6 transgene into the bronchial epithelium in the lung of Sprague-Dawley rats by intratracheal administration of a recombinant human type 5 adenovirus with rat IL-6 cDNA incorporated into the E3 region of the viral genome. This approach led to a highly compartmentalized overexpression of the IL-6 transgene and production of bioactive protein within the lung for about 7 days post-infection. Associated with this overexpression of IL-6 was the development of profound local lymphocytic hyperplasia around day 7, characterized by the dramatic expansion of bronchial associated lymphoid aggregates and massive lymphocytic infiltration in the pulmonary parenchyma. Concurrently, there were strikingly increased numbers of lymphocytes in bronchoalveolar lavage fluids. The majority of these lymphocytes were found to be CD3+CD8+ cytotoxic T and CD3+CD4+ helper T cells with the remaining being primarily a small number of CD45R+ B cells. In addition, there was moderate bronchial and alveolar epithelial hyperplasia associated with lymphocytic hyperplasia. However, all of these changes subsided concomitant with the decrease in IL-6 expression and the lung seemed normal at 12 to 14 days post-infection. Thus, our study provides a tissue-specific transient transgene model for investigating cytokine functions in vivo and demonstrates that IL-6 has a profound stimulatory effect on the local lymphoid tissue in the lung.

Adenoviruses, Human↗

Intestinal expression and cellular immune responses to human heat-shock protein 60 in Crohn's disease.

Changes in the intestinal expression of the endogenous human 60-kDa heat-shock protein (HSP60) were investigated in patients with Crohn's disease. HSP60 immunoreactivity was detected in epithelial cells, vascular smooth muscle, and nerve cell bodies of both small and large bowel from patients with Crohn's disease. However, control tissue showed a similar pattern of HSP60 expression. Western blot analysis confirmed that the HSP60 immunoreactivity detected in the intestine corresponded to the 60-kDa HSP. The proliferative response of peripheral blood lymphocytes (PBL) and intestinal intraepithelial lymphocytes (IEL) to recombinant human HSP60 was examined. The results indicate that there was no significant difference in responses between patients with Crohn's disease and controls. Furthermore, there was no increase in the proportion of gamma/delta T cell receptor-bearing T cells in PBL from patients with Crohn's disease cultured for six days in the presence of human HSP60 as compared to control patients. These results suggest that endogenous human HSP60 is unlikely to be a target for an autoimmune response in patients with Crohn's disease.

Adolescent↗

Phenotypic and functional assessment of intraepithelial lymphocytes bearing a 'forbidden' alpha beta TCR.

Differences in the surface antigen phenotype, such as the expression CD8 as an alpha alpha homodimer or the lack of Thy-1, on intestinal intraepithelial lymphocytes (IEL) are related, in part, to alternative differentiation pathways. The relationship of IEL lacking the pan-T cell marker CD5 to these IEL, their TCR repertoire and function has not been examined directly. We explored the TCR repertoire and function of the CD5- IEL subset in relation to the expression of the 'autospecific' V beta 6 TCR in MIs-1a mice and to gamma delta TCR. The results indicate that CD5 expression was absent on the majority of TCR gamma delta IEL (96.9%) and on a significant proportion of TCR alpha beta IEL (25.0%). Virtually all IEL in DBA/2 (MIs-1a) mice that expressed the 'autospecific' V beta 6 TCR were CD5-, and this correlated with the expression of CD8 alpha alpha. To assess the functional capacity of this subset of IEL, we examined proliferation and IL-2 production in response to TCR activation. Although CD5- IEL proliferated in response to anti-CD3, IEL bearing TCR V beta 6, in MIs-1a mice, were not responsive to TCR-mediated activation. Similarly, TCR gamma delta IEL were not responsive to stimulation by anti-TCR gamma delta antibodies. The addition of exogenous IL-2, however, reconstituted the proliferative response of both TCR gamma delta IEL and the TCR V beta 6 expressing IEL. We conclude that the lack of CD5 defines a unique subset of intraepithelial T cells expressing either TCR gamma delta or alpha beta that include potentially autoreactive cells that remain anergic in the absence of IL-2.

Animals↗

Presence of intestinal intraepithelial lymphocytes in mice with severe combined immunodeficiency disease.

The murine intestinal epithelium contains a heterogeneous population of intraepithelial leukocytes (IEL) most of which are granulated, Thy-1-CD5-CD8+. In order to assess the lineage relationship of this subgroup of IEL to peripheral T cells, we examined IEL in mice with the severe combined immunodeficiency (scid/scid) mutation, which lack T and B cells in peripheral lymphoid tissues. Electron and light microscopy showed that the intestine from scid/scid mice had granulated IEL similar to IEL in normal C.B-17 mice. Flow cytometry of isolated IEL stained with monoclonal antibodies against Thy-1, CD3, CD4, CD5 and CD8 showed that scid/scid mice IEL contained cells with the Thy-1-CD4-CD5-CD8+ phenotype. Immunohistochemical staining of IEL in tissue sections with antibodies to Thy-1 and CD8 confirmed that the Thy-1-CD8+ cells were in the intestinal epithelium. These scid/scid IEL also lacked CD3 expression and mRNA for the V gamma 7 V region gene of the gamma T cell receptor. We conclude that scid/scid mice contain precursors for IEL that can differentiate into a granulated Thy-1-CD5-CD8+ IEL in the intestine. The absence of CD8+ peripheral T cells in these mice suggests that these IEL differ from classical T cells in their ability to differentiate and express CD8 and do not require T cell receptor expression for their localization to the intestine.

Animals↗

Selective modulation of the natural killer activity of murine intestinal intraepithelial leucocytes by the neuropeptide substance P.

Neuropeptides can influence immune effector cell function at both systemic and mucosal immune sites. We examined the ability of substance P (SP) to modulate the natural killer (NK) activity of intestinal intraepithelial leucocytes (IEL). Yac-1 killing by IEL but not splenic cells was increased after either 18 hr preincubation or 6 hr of co-incubation with SP. We also examined the NK activity of IEL and spleen isolated from mice treated with SP in vivo. The selective increase in NK activity of IEL occurred without any demonstrable change in the number or phenotype of the IEL. The IEL responsive to SP in vivo and induced in vivo by SP were both Thy-1- and did not kill the NK insensitive mastocytoma cell line P815. Lastly, we examined the ability of SP to induce the release of interleukin-2 (IL-2) and IL-4 from IEL after 6 and 18 hr of in vitro culture. No increase in the release of these cytokines was observed, suggesting that IL-2 and IL4 are not involved in the local augmentation of IEL NK activity by SP. These observations suggest that SP has a selective stimulatory effect on intestinal activity and may play a role in the regulation of intestinal cell-mediated immunity.

Animals↗