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Biomedical subjects

S J Khoury

Publications and source records attributed to S J Khoury.

At least 19 recordsLinked to original sources

Increased interleukin 12 production in progressive multiple sclerosis: induction by activated CD4+ T cells via CD40 ligand.

Multiple sclerosis (MS) is a chronic inflammatory disease of the central nervous system postulated to be a cell-mediated autoimmune disease in which interferon gamma (IFN-gamma) plays an important role. There is increased IFN-gamma secretion in MS, and IFN-gamma administration induces exacerbations of disease. We found that interleukin 12 (IL-12) was responsible for raised IFN-gamma secretion in MS as anti-IL-12 antibodies reversed raised anti-CD3-induced IFN-gamma in MS patients to normal levels. Furthermore, we found a marked increase in T cell receptor-mediated IL-12 secretion in progressive MS patients vs. controls (24.8 +/- 7.7 pg/ml vs. 1.5 +/- 1.0 pg/ml, P = 0.003) and vs. relapsing-remitting patients (3.7 +/- 1.4 pg/ml, P < 0.05). Investigation of the cellular basis for raised IL-12 demonstrated that T cells from MS patients induced IL-12 secretion from non-T cells, and that T cells from MS patients could even drive non-T cells from normal subjects to produce increased IL-12. Anti-CD40 ligand antibody completely blocked IL-12 secretion induced by activated T cells, and we found increased CD40 ligand expression by activated CD4+ T cells in MS patients vs. controls. The CD40 ligand-dependent Th1-type immune activation was observed in the progressive but not in the relapsing-remitting from of MS, suggesting a link to disease pathogenesis and progression and providing a basis for immune intervention in the disease.

Adult

Ex vivo treatment of antigen-presenting cells with CTLA4Ig and encephalitogenic peptide prevents experimental autoimmune encephalomyelitis in the Lewis rat.

We used a novel approach to study the role of CD28-B7 T cell costimulatory blockade in experimental autoimmune encephalomyelitis (EAE) in the Lewis rat model. APCs were incubated in vitro with CTLA4Ig and the encephalitogenic peptide p71-90 of myelin basic protein. Systemic injection of APCs treated ex vivo with p71-90 and CTLA4Ig before immunization protected animals from clinical EAE. Systemic injection of APCs treated with CTLA4Ig alone, CTLA4Ig and control peptide, peptide alone, or peptide and control Ig was not protective. Injection of APCs treated ex vivo with CTLA4Ig and p71-90 on the day of immunization was also protective, but delaying the injection till day 7 after immunization impaired the protective effect. Immunohistologically, protected animals had decreased inflammatory responses, with inhibition of Th1 and sparing of Th2 cytokines in the brain. Preincubation of APCs with p71-90 and a mutant form of CTLA4Ig that binds only B7-1 also protected animals from developing EAE. These results suggest that ex vivo blockade of CD28-B7-1 leads to the generation of regulatory cells, presumably Th2, which inhibit the generation or priming of encephalitogenic T cells and suppress the autoimmune response to the specific Ag in vivo. These observations have therapeutic implications for autoimmune diseases and transplantation.

Abatacept

Mechanisms of indirect allorecognition in graft rejection: class II MHC allopeptide-specific T cell clones transfer delayed-type hypersensitivity responses in vivo.

Recent animal studies suggest that indirect T-cell recognition of alloantigen plays an important role in allograft rejection and tolerance. In this study, we generated T cell clones from Lewis (LEW, RT1(l)) rat lymph node cells that had been primed in vivo by immunization with immunogenic class II MHC allopeptide RT1.D(u)beta2, representing residues 20-44 of the polymorphic beta chain of RT1.Dbeta(u) (Wistar Furth [WF]). Using reverse transcriptase polymerase chain reaction transcript analysis with specific rat T cell receptor Vbeta primers, we show that six out of nine T cell clones specifically proliferated to RT1.D(u)beta2 and expressed Vbeta 9. One of these clones, clone 2F4, which specifically proliferated to RT1.D(u)beta2 in a dose-response fashion and produced interferon-gamma in response to restimulation by RT1.D(u)beta2, was selected for further studies. The beta-chains of RT1.D(l) and RT1.D(u) residues 20-44 differ by two amino acids at positions 30 and 38. We synthesized two peptides, each containing a single polymorphic site: RT1.D(u)beta 20-33 and RT1.D(u)beta 31-44. Both these peptides were immunogenic by LEW responders, since lymph node cells primed by immunization proliferated equally to the peptides in vitro. Interestingly, in vitro dose-response studies with clone 2F4 showed better proliferative response to peptide RT1.D(u)beta 20-33 than to peptide RT1.D(u)beta 31-44, indicating that this T cell clone preferentially recognizes a single amino acid difference on residue 30. Finally, it has been suggested that indirect allorecognition by CD4+ T cells mediate graft rejection by delayed-type hypersensitivity responses, although definitive studies are lacking. Systemic injection of the 2F4 clone to naive LEW rats elicited an antigen-specific delayed-type hypersensitivity response against RT1.D(u)beta2 peptide and WF splenocytes, confirming indirect presentation in vivo. These data demonstrate that Th1 cell clones generated by in vivo priming via the indirect pathway utilize specific T cell receptor Vbeta and recognize single amino acid differences in the allopeptide. More importantly,these Th1 clones are capable of mediating a specific immune response in vivo. These studies with MHC allopeptide-specific T cell clones further delineate the cellular mechanisms of indirect allorecognition and provide a potential strategy to study its role in acute and chronic rejection, and tolerance.

Adoptive Transfer

Induction of circulating myelin basic protein and proteolipid protein-specific transforming growth factor-beta1-secreting Th3 T cells by oral administration of myelin in multiple sclerosis patients.

Oral administration of antigen is a long recognized method of inducing systemic immune tolerance. In animals with experimental autoimmune disease, a major mechanism of oral tolerance triggered by oral administration of antigen involves the induction of regulatory T cells that mediate active suppression by secreting the cytokine TGF-beta 1. Multiple sclerosis (MS) is a presumed T cell-mediated Th1 type autoimmune disease. Here, we investigated whether in MS patients oral myelin treatment, containing both myelin basic protein (MBP) and proteolipid protein (PLP), induced antigen specific MBP or PLP reactive T cells that either secreted IL4, TGF-beta1, or alternatively did Th1 type sensitization occur as measured by IFN-gamma secretion. Specifically, 4,860 short-term T cell lines were generated to either MBP, PLP, or tetanus toxoid (TT) from 34 relapsing-remitting MS patients: 17 orally treated with bovine myelin daily for a minimum of 2 yr as compared to 17 nontreated patients. We found a marked increase in the relative frequencies of both MBP and PLP specific TGF-beta1-secreting T cell lines in the myelin treated MS patients as compared to non-treated MS patients (MBP P < 0.001, PLP P < 0.003). In contrast, no change in the frequency of MBP or PLP specific IFN-gamma or TT specific TGF-beta1 secreting T cells were observed. These results suggest that the oral administration of antigens generates antigen specific TGF-beta1 secreting Th3 cells of presumed mucosal origin that represent a distinct lineage of T cells. Since antigen-specific TGF-beta1 secreting cells localize to the target organ and then suppress inflammation in the local microenvironment, oral tolerization with self antigens may provide a therapeutic approach for the treatment of cell-mediated autoimmune disease which does not depend upon knowledge of the antigen specificity of the original T cell clone triggering the autoimmune cascade.

Administration, Oral

Antigen-specific TGF-beta1 secretion with bovine myelin oral tolerization in multiple sclerosis.

Multiple sclerosis is a presumed autoimmune disease, associated with inflammation in the CNS white matter, mediated by autoreactive T cells. We previously reported that oral myelin tolerization of relapsing-remitting MS patients resulted in fewer attacks, as compared to a placebo-fed group. Here, we examined whether oral tolerization with bovine myelin resulted in altered autoreactive T-cell populations or altered T-cell fraction. We generated 4,620 T-cell lines from 34 relapsing-remitting MS patients (17 were fed bovine myelin daily), and each line was examined for proliferation to MBP, PLP, and TT and for secretion of IL-4, IFN-gamma, and TGF-beta1. The frequency of TGF-beta1-secreting T-cell lines after MBP and PLP stimulation in fed patients was greater than that of nonfed patients. These experiments demonstrate that oral tolerization with autoantigen results in altered cytokine secretion in a human autoimmune disease with the generation of TGF-beta1-secreting T cells that may regulate the inflammatory response at the site of the demyelinating lesions in multiple sclerosis. These data provide the first evidence of antigen-specific modification of cytokine secretion in a human autoimmune disease.

Administration, Oral

Mechanisms of oral tolerance by MHC peptides.

Recent evidence indicates that MHC peptides play an important role in T-cell recognition of alloantigen. We studied the tolerogenicity of orally administered synthetic MHC allopeptides in the rat model. Initially, we demonstrated that oral administration of synthetic class II MHC allopeptides significantly inhibited the DTH response to the peptides as well as to donor-derived cells. The tolerogenic effect was antigen specific and was induced by immunogenic, but not by nonimmunogenic, allopeptides. Immunohistological studies of DTH skin lesions showed that oral tolerance is associated with a state of "immune deviation" to a predominance of Th2 cell function in the lesions. We recently extended the above observations and examined the tolerogenic effect of orally administered synthetic MHC allopeptides on MLR and CTL generation. We found that oral administration of the class II allopeptides effected significant reduction of MLR proliferation and CTL generation, which was antigen specific. In addition, similar to the DTH results when we compared the tolerogenicity of the immunogenic versus the nonimmunogenic peptides, MLR and CTL suppression was significantly higher with the immunogenic peptides. The gut immune system play an important role in oral tolerance by MHC peptides. Initial experiments showed that intestinal epithelial cells pulsed in vitro with immunogenic MHC allopeptides, or in vivo by oral administration of immunogenic peptides, were capable of presenting these peptides to primed T cells in vitro. Whether such presentation by intestinal epithelial cells or other gut antigen-presenting cells leads to preferential activation of Th2 regulatory cells, which ultimately suppress Th1 alloimmune responses, remains to be determined.

Administration, Oral

Penetrating trauma to the abdominal vessels.

Between January 1975 and December 1989, 1860 patients were admitted to the American University of Beirut Medical Centre with abdominal injuries. Their mean age was 23 years. Of these patients 107 had vascular injuries (an incidence of 6%). Bullets were the most common injurious agents (72%), followed by shrapnel (22%). There were 28 arterial and 113 venous injuries. All patients presented to the emergency unit within 5 h of injury (mean 45 min) and were surgically explored. The overall mortality rate was 36.5%. Patients who were haemodynamically stable had a better outcome than those who presented in shock (P < 0.005). The major cause of death was haemorrhage from uncontrolled bleeding. Two subgroups with a higher mortality were identified: patients with inferior vena caval injury associated with a liver injury had a mortality rate of 78.5%, and those with vascular injury associated with pelvic fracture had a mortality rate of 57% (P < 0.05). Abdominal vascular injuries have a high mortality rate, especially if the inferior vena cava is involved or associated pelvic fractures are present. Prompt resuscitation and control of bleeding are the key to an improved salvage rate.

Abdominal Injuries

CD28-B7 costimulatory blockade by CTLA4Ig prevents actively induced experimental autoimmune encephalomyelitis and inhibits Th1 but spares Th2 cytokines in the central nervous system.

We studied the contribution of the CD28-B7 costimulatory T cell activation pathway to the pathogenesis of experimental autoimmune encephalomyelitis in the Lewis rat model. Systemic administration of CTLA4Ig suppressed clinical disease and was effective even when CTLA4Ig was delayed until day 10 postimmunization, a time when pathologic disease is evident. This protection was not reversible by systemic administration of high doses of IL-2. Detailed immunohistologic studies showed that CTLA4Ig therapy resulted in suppression of the inflammatory response with inhibition of Th1 (IL-2 and IFN-gamma) and sparing of Th2 (IL-4, IL-10, and IL-13) cytokines in the central nervous system. These results indicate that the CD28-B7 T cell costimulatory pathway plays an important role in experimental autoimmune encephalomyelitis, a Th1-mediated disease, and suggest that blockade of this costimulatory pathway protects against active disease by causing a state of immune deviation towards Th2 function. The ability of CTLA4Ig to treat animals with pathologically established disease may have important clinical implications for patients with multiple sclerosis.

Abatacept

Mechanisms of acquired thymic tolerance in experimental autoimmune encephalomyelitis: thymic dendritic-enriched cells induce specific peripheral T cell unresponsiveness in vivo.

Experimental autoimmune encephalomyelitis (EAE), an experimental model for the study of multiple sclerosis, is an autoimmune disease of the central nervous system that can be induced in a number of species by immunization with myelin basic protein (MBP). MBP-reactive CD4+ T cells, predominantly expressing the V beta 8.2 T cell receptor (TCR), migrate from the peripheral lymphoid organs and initiate the inflammatory response in the brain. We have previously shown that a single intrathymic injection of MBP or its major encephalitogenic peptide (p71-90), but not a nonencephalitogenic peptide (p21-40), induces antigen-specific systemic tolerance and inhibits the induction of EAE in Lewis rats. In this study, we investigated the mechanisms of induction and maintenance of acquired thymic tolerance in this model. First, we investigated which thymic cell is responsible for "induction" of systemic tolerance. Thymic dendritic-enriched cells, isolated by plastic adherence, when incubated in vitro with p71-90 and injected intravenously into Lewis rats, were capable of preventing the development of EAE, but his protection was lost in thymectomized recipients. In addition, intravenous injection of thymic dendritic cells isolated from animals that had been previously injected intrathymically with p71-90 but not p21-40 also prevented the development of EAE. Second, to determine the "effector" mechanisms involved in acquired thymic tolerance, we compared TCR expression in the brains of animals with actively induced EAE with TCR expression in animals that received intrathymic injection of p71-90 or p21-40. Using a semiquantitative reverse transcription-polymerase chain reaction (RT-PCR) technique, we found increased expression of CD4 and V beta 8.2 message in brains of immunized animals compared with those of naive animals. In animals intrathymically injected with p71-90 but not p21-40, CD4 and V beta 8.2 transcript levels were significantly reduced compared with immunized controls. Immunohistologic studies of brain tissue and spleens with specific V beta 8.2 and control V beta 10 monoclonal antibodies confirmed these observations in vivo. These findings, taken together with recent data demonstrating that activated T cells circulate through the thymus, suggest that interaction of thymic dendritic cells with specific TCR of activated peripheral T cells can lead to inactivation of these antigen-specific cells and confirm the role of V beta 8.2-expressing T cells in EAE.

Animals

Inhibition of T cell responses by activated human CD8+ T cells is mediated by interferon-gamma and is defective in chronic progressive multiple sclerosis.

The autologous mixed lymphocyte reaction (AMLR) involves the activation of T cells by autologous antigen presenting cells. Cells are generated during the course of the AMLR that have suppressive properties in vitro. In the present study we investigated the induction of CD8+ T cells in the AMLR with suppressive properties and the mechanism by which these cells downregulate in vitro proliferative responses. Purified CD8+ but not CD4+ T cells activated in the AMLR in conditioned medium inhibited proliferation of autologous T cells by anti-CD3 or PPD. Nonactivated CD8+ T cells did not suppress. The CD8+ T cells activated in the AMLR in the presence of conditioned medium (CD8+ Tact) were CD11b negative and were noncytotoxic. The inhibitory effect of CD8+ Tact cells was completely abrogated by anti-IFN-gamma antibody, but not by anti-IL-4, anti-IL-10, or anti-TGF-beta antibody. The induction of CD8+ Tact cells in the AMLR was blocked by anti-IL-2 or by anti-GM-CSF antibody and the combination of these two recombinant cytokines could support the induction of suppressive CD8+ Tact cells. CD8+ Tact cells were defective in patients with chronic progressive multiple sclerosis (MS) as compared to patients with relapsing-remitting MS or normal controls. Our studies provide a basis for understanding the mechanism of suppression by human CD8+ T cells in terms of specific cytokines, and demonstrate the potential importance of these cells in a human autoimmune disease as their function is defective in patients with progressive MS.

CD8-Positive T-Lymphocytes

Therapy for multiple sclerosis.

Multiple sclerosis is hypothesized to be a cell-mediated autoimmune disease directed against central nervous system myelin. Immunotherapy is directed at decreasing the autoimmune response using both specific and nonspecific modulation of the immune system in an attempt to halt accumulation of disability. Symptomatic therapy may also help multiple sclerosis patients.

Humans

Oral tolerance: immunologic mechanisms and treatment of animal and human organ-specific autoimmune diseases by oral administration of autoantigens.

Oral tolerance is a long recognized method to induce peripheral immune tolerance. The primary mechanisms by which orally administered antigen induces tolerance are via the generation of active suppression or clonal anergy. Low doses of orally administered antigen favor active suppression whereas higher doses favor clonal anergy. The regulatory cells that mediate active suppression act via the secretion of suppressive cytokines such as TGF beta and IL-4 after being triggered by the oral tolerogen. Furthermore, antigen that stimulates the gut-associated lymphoid tissue preferentially generates a Th2 type response. Because the regulatory cells generated following oral tolerization are triggered in an antigen-specific fashion but suppress in an antigen nonspecific fashion, they mediate "bystander suppression" when they encounter the fed autoantigen at the target organ. Thus it may not be necessary to identify the target autoantigen to suppress an organ-specific autoimmune disease via oral tolerance; it is necessary only to administer orally a protein capable of inducing regulatory cells that secrete suppressive cytokines. Orally administered autoantigens suppress several experimental autoimmune models in a disease- and antigen-specific fashion; the diseases include experimental autoimmune encephalomyelitis (EAE), uveitis, and myasthenia, collagen- and adjuvant-induced arthritis, and diabetes in the NOD mouse. In addition, orally administered alloantigen suppresses alloreactivity and prolongs graft survival. Initial clinical trials of oral tolerance in multiple sclerosis, rheumatoid arthritis, and uveitis have demonstrated positive clinical effects with no apparent toxicity and decreases in T cell autoreactivity.

Administration, Oral

Longitudinal MRI in multiple sclerosis: correlation between disability and lesion burden.

We followed 18 multiple sclerosis patients clinically and with repeated brain MRIs with and without gadolinium for over 1 year. Clinical evaluations included scoring on the Kurtzke Expanded Disability Status Scale (EDSS) and the Ambulation Index (AI) scale. There was a significant correlation between the change in EDSS or AI and the change in number of lesions on MRI and between cumulative number of lesions on MRI and cumulative change in EDSS or AI. Our findings support the validity of MRI as a measure of clinical activity and potentially as an objective quantitative outcome measure for assessing response to therapy.

Adult

Oral tolerance: a biologically relevant pathway to generate peripheral tolerance against external and self antigens.

OT is a relevant biological pathway for generating peripheral tolerance against both self and external antigens with minimal side effects (fig. 3). This route might, therefore, contain promising potential for the treatment of autoimmune and allergic diseases in the human (fig. 3). Thus, oral administration of autoantigens suppresses experimental autoimmune diseases (EAE, EAU, AA, collagen-induced arthritis, NOD diabetes) in a disease- and antigen-specific manner, and oral administration of alloantigens has led to increase of allograft survival. OT might be important in treatment of immune complex diseases and food allergies. OT is mediated by T lymphocytes using at least two nonmutually exclusive mechanisms: suppression and anergy. Suppression can be adoptively transferred by CD8+ T lymphocytes which act by releasing TGF-beta and IL-4 following antigen-specific triggering. Antigen-driven tissue-directed suppression occurs following oral administration of an antigen from the target organ, even if it is not the disease-inducing antigen (bystander suppression). Thus, synthetic peptides can induce OT, and tolerogenic epitopes of antigen may be different from the autoreactive epitope. Due to the promising results in animal models, OT is being tested in clinical trials in multiple sclerosis, rheumatoid arthritis and uveitis [193, 194].

Administration, Oral

Differential effects of oral versus intrathymic administration of polymorphic major histocompatibility complex class II peptides on mononuclear and endothelial cell activation and cytokine expression during a delayed-type hypersensitivity response.

Oral and intrathymic exposure to antigen can each induce systemic antigen-specific immune tolerance, but the mechanisms have not been well defined. We studied the effects that the route of exposure to antigen has on the mechanisms of tolerance in vivo using synthetic polymorphic class II major histocompatibility complex (MHC) peptides in a skin delayed-type hypersensitivity (DTH) response model. Lewis rats were immunized by injection in the footpad with synthetic peptides (RT1.Bu and/or RT1.Du) derived from the hypervariable domain of MHC class II beta chain of the Wistar-Furth rat in complete Freund's adjuvant and challenged 2 weeks later by injection in the ear with the MHC peptides. An "oral" group received the peptide mixture by gavage (100 micrograms/day for 5 days) 3 days before immunization, and an "intrathymic" group received a single intrathymic injection of 100 micrograms of peptides 48 hours before immunization. Oral therapy reduced the DTH response to 23 +/- 7%, and intrathymic exposure reduced the DTH response to 26 +/- 6% (P < 0.001) as compared with control DTH responses of unmodified Lewis animals. Immunohistological evaluation of DTH skin lesions showed that oral and intrathymic therapy each decreased mononuclear cell infiltration, fibrin deposition, and endothelial activation when compared with that seen in control rats. In contrast, while both protocols markedly reduced interleukin (IL-2) and interferon-gamma expression, they had differing effects on local expression of IL-4, transforming growth factor-beta, IL-2R, and CD45RC (a possible discriminant between Th1 and Th2 cells in rats). Oral therapy was associated with increased expression of IL-4 and preservation of transforming growth factor-beta expression by residual IL-2R+, CD45RC- mononuclear and endothelial cells, whereas thymic exposure suppressed essentially all features of immune activation including IL-2R induction and cytokine expression. Our data a) document the detailed pattern of cytokine expression and mononuclear and endothelial cell activation markers during DTH responses and b) confirm that oral tolerance is associated with immune deviation to a predominance of Th2 cell function, whereas intrathymic tolerance may be mediated by T-cell anergy or clonal deletion.

Administration, Oral