Search PubMed⌕ Search

Biomedical subjects

S Targan

Publications and source records attributed to S Targan.

At least 37 records · Page 2Linked to original sources

Human mucosal T-cell cytotoxicity.

Non-major histocompatibility complex-restricted cytotoxicity triggered by antibodies to the CD3 component of the human T-cell receptor complex is thought to be an indirect measure of in vivo primed cytotoxic T-cell activity. We have used this technique to examine the lytic activity of freshly isolated T cells from noninflamed human colonic mucosa. Anti-CD3-triggered T-cell (anti-CD3-T) cytotoxicity was found in all mucosal specimens studied. The mucosal anti-CD3-T effectors do not have Fc receptors for immunoglobulin G, and are therefore distinct from T gamma cells, which mediate antibody-dependent cellular cytotoxicity. The surface antigen phenotype of mucosal anti-CD3-Ts is CD2+, CD3+, CD8+, CD4-, CD16-, and Leu7-. In contrast, peripheral blood anti-CD3-T effectors are Leu7+. Although non-major histocompatibility complex-restricted, mucosal anti-CD3-T cytotoxicity has considerable target specificity, which differs from that of natural killer and lymphokine-activated killer cells. The profile of target cell susceptibility and the inhibitory effects of anti-CD45 antibody suggest that the CD45 molecule on the effector cell may be an important determinant of anti-CD3-T sensitivity. As anti-CD3-triggered lysis may be a marker of in vivo primed mucosal T cells of undetermined antigen specificity, this technique might have important implications in inflammatory bowel disease, where the antigen(s) inciting the mucosal immune reactivity is not certain.

Antigens, Surface↗

Hermansky-Pudlak syndrome: an immunologic assessment of 15 cases.

PURPOSE: The Hermansky-Pudlak syndrome is an autosomal recessive disorder consisting of the triad of oculocutaneous albinism, a storage pool platelet defect, and multisystem tissue deposition of ceroid pigment. Although the underlying metabolic defect has not been identified, secondary or associated effects on the immune system are suggested by reports of an association with disorders such as pulmonary fibrosis, granulomatous colitis, lupus, and frequent bacterial infections. We evaluated a large group of patients with the Hermansky-Pudlak syndrome to assess immune competence in this condition. PATIENTS AND METHODS: Fifteen patients with this syndrome were studied. Control subjects included healthy volunteers in the same age range as the patients. Peripheral blood lymphocytes and neutrophils were isolated according to previously described methods. Immunofluorescent staining, flow cytometry, and cytotoxicity assays were performed. Determination of lymphocyte transformation, mixed lymphocyte response, and neutrophil function was made. RESULTS: Immunoglobulin levels, complement, lymphocyte subsets, natural killer and lymphokine-activated cytotoxicity, mixed lymphocyte responses, and lectin-induced transformation were normal in all patients. In addition, there was no evidence for a lymphocyte proliferative response to a preparation of urinary ceroid pigment isolated from these patients. Neutrophil function, including luminol-dependent chemiluminescence, chemotaxis, and aggregation was not significantly different from control values. CONCLUSION: The results suggest that there is no generalized defect of peripheral blood lymphocyte or neutrophil function in the Hermansky-Pudlak syndrome. We propose that future studies should examine the possibility that associated disorders arise from a defect within the monocyte-macrophage system, perhaps secondary to ceroid accumulation.

Adolescent↗

Modulation of ongoing human immunoglobulin synthesis by natural killer cells.

Freshly separated human NK cells (NKH-1+) inhibited IgE synthesis from IgE myeloma U266/AF-10 as much as 70% whereas they enhanced IgG and IgA synthesis 200 and 500% from the lymphoblastoid cell lines GM-1500 and GM-1056, respectively. The inhibition of IgE synthesis by NK cells was due to a direct cytolytic effect on AF-10. This could be reversed using K562 cells in a cold target competition assay. NK cells also inhibited spontaneous IgE as well as IgG and IgA synthesis from B cells of highly atopic donors. On the other hand the enhancement of Ig secretion by NKH-1+ cells was shown to be mediated by soluble factors released from NK cells. Furthermore when NK cells were preincubated with immune complexes (IgE-IC) constructed of human IgE and mouse IgG1 monoclonal anti-human IgE, inhibition of IgE synthesis was reversed, and in some cases actual enhancement of IgE synthesis was observed, while enhancement of IgG and IgA synthesis was not affected. In contrast to NK cells, T cells depleted of NK cells (T-NK), when activated by IgE-IC, suppressed IgE synthesis in an isotype specific fashion. Thus, NK and T-cell modulation of ongoing Ig synthesis involve distinct mechanisms.

Antibody Formation↗

Human mucosal cytotoxic effector cells.

Human intestinal lamina propria mononuclear cells have been shown to mediate mitogen-induced cellular cytotoxicity, antibody-dependent cellular cytotoxicity, and lymphokine activated killer cell function. However, although natural killer cells have been demonstrated in the gut mucosa of rodents, recent reports found little or no spontaneous cytotoxic activity in the lamina propria of the human gut. Using the natural killer cell-related monoclonal antibody NKH-1, which has not previously been applied to studies of mucosal killer cell function, we have shown by immunofluorescence that 2%-3% of enzymatically dispersed lamina propria lymphocytes are NKH-1+. A "panning" technique was then used to enrich for the NKH-1+ cells. Panned cells were consistently greater than or equal to 80% NKH-1+ by indirect immunofluorescence. Unlike their counterparts in the peripheral blood, the mucosal NKH-1+ cells were Leu-11-. Although unseparated lamina propria lymphocytes failed to exhibit natural killer activity against K562 targets in 4-h chromium release assays at effector to target ratios of up to 100:1, the NKH-1+ cells were cytolytically active at ratios of less than 5:1. Mucosal lymphocytes depleted of natural killer cells (NKH-1-) exhibited cytotoxic activity when cultured for 72 h with interleukin-2. The precursors of the lymphokine culture activated phenomenon were NKH-1-, Leu-11-, T4-, T3-, T11+, and T8+. Although lamina propria T3+ cells did not exhibit spontaneous or culture activated cytotoxicity, they were shown to exhibit nonspecific anti-CD3 (anti-T3)-induced T-cell cytotoxicity. In conclusion, functional natural killer and lymphokine activated killer cells are both present in the human gut mucosa and represent distinct populations of cytotoxic cells. In addition, anti-CD3-induced cytotoxicity is a feature of mucosal T cells. These mucosal killer cell subsets differ phenotypically from those previously described in the peripheral blood.

Antigens, Differentiation, T-Lymphocyte↗

Evidence for involvement of serine proteases in the late stages of the natural killer cell lytic reaction.

An irreversible inhibitor (L-1-tosylamide-2-phenylethyl-chloromethylketone) and substrate (N-acetyl-L-tyrosineethylester) of the neutral serine protease chymotrypsin were evaluated for their effects on the natural killer cell lytic reaction sequence. During direct cell-mediated cytolysis these inhibitors had no effect on natural killer cell binding to target cells but were able to inhibit the "trigger" mechanism which initiates killing. In addition, they inhibited later calcium-dependent events in the lytic reaction and killer cell-independent lysis. These findings suggest that serine proteases may be required during several stages of natural killer cell lysis, including calcium-dependent programming as well as the actual lethal hit.

Calcium↗

Intestinal immunity and inflammation: recent progress.

The previous sections illustrate that we are still defining (a) which sets of lymphoid cells are present in the intestine and which are not, (b) which sets are peculiar to the intestine, and (c) how the sets that are there function in the intestinal microenvironment. An understanding of the latter point is going to require knowledge of how these sets communicate with and regulate one another via cell surface molecules such as MHC class I and class II molecules, and via soluble mediators or lymphokines. The recent advances in various technologies make this a particularly exciting time in this field because the tools are now available to address and answer some of these basic and important questions in mucosal immunology. At the same time these advances hold great promise for our eventual understanding of chronic inflammatory diseases of the intestine. As was mentioned at the outset, the immune system has considerable power for both protection and destruction. It remains a puzzle how this latter potential is contained and controlled in the intestine of most individuals, such that they do not have inflammatory disease even in the setting of intense stimulation by substances, such as endotoxin, that are phlogistic elsewhere in the body. An answer to the question of why everyone does not have intestinal inflammation could provide new insights into the mechanisms involved in chronic intestinal inflammatory diseases. The recent advances just detailed, as well as others sure to come, suggest that it is only a matter of time before such questions are answered.

Animals↗

Inhibition of cytotoxicity by sulfasalazine. II. Sulfasalazine and sulfapyridine inhibit different stages of the NK and NKCF lytic processes.

Sulfasalazine and sulfapyridine but not 5-aminosalicylate inhibit spontaneous cytotoxicity mediated by human natural killer (NK) cells. The aim of this study was to determine which stage(s) of the NK cytotoxic reaction is inhibited by these compounds. Effector/target cell binding studies performed in parallel with cytotoxicity assays using purified large granular lymphocytes indicated that inhibition is a post-binding event. The kinetic profile of inhibition in a calcium pulse assay showed that inhibition continues long after the effector cell triggering stage and that although sulfasalazine may have some inhibitory effect on the calcium-dependent events of the programming phase, sulfapyridine continues to inhibit during the calcium-independent or lethal hit phase of the cytotoxic sequence. The NK soluble cytotoxic factor (NKCF) assay was used as a measure of the lethal hit since the time course of this assay permits study of the various substages of this terminal event in the lytic sequence. Sulfasalazine and sulfapyridine but not 5-aminosalicylate inhibited NKCF-mediated target cell lysis. Different substages of the NKCF-induced lytic reaction were affected by these agents. Sulfasalazine appears to inhibit binding of NKCF to the target cell whereas sulfapyridine predominantly inhibits early post-binding events.

Aminosalicylic Acids↗

The effect of 6-mercaptopurine on natural killer-cell activities in Crohn's disease.

Crohn's disease patients on long-term 6-mercaptopurine therapy (more than 4 months) were evaluated for activity of peripheral blood natural killer cells. Natural killer-cell cytolytic activity against K-562 tumor-cell targets was examined, as was natural killer-cell suppression of lymphoblastoid B-cell antibody production. In addition, these patients were studied for their ability to generate antitetanus-specific IgG-antibody-producing lymphoblastoid B cells following in vivo booster immunization. Crohn's disease patients on 6-mercaptopurine therapy had significant reductions in peripheral blood natural killer-cell activity against K-562 targets compared to normals, disease controls, and Crohn's disease patients not on 6-mercaptopurine. Natural killer-cell suppression of lymphoblastoid B-cell antibody production was likewise decreased in 6-mercaptopurine-treated patients compared to normal controls. In contrast, the in vivo generated lymphoblastoid B-cell antibody responses of Crohn's disease patients on 6-mercaptopurine therapy were not decreased compared to normal, while Crohn's disease patients not on 6-mercaptopurine therapy had significantly impaired IgG antitetanus antibody responses. These findings suggest that 6-mercaptopurine therapy in Crohn's disease affects several lymphoid subpopulations, resulting in a decreased natural killer-cell cytotoxic activity against K-562 target cells and a decreased natural killer-cell ability to suppress lymphoblastoid B-cell antibody production, as well as an improved humoral immune response following tetanus toxoid booster immunization.

Adult↗

Defective generation of tetanus-specific antibody-producing B cells after in vivo immunization of Crohn's disease and ulcerative colitis patients.

In vivo booster immunization with tetanus toxoid normally results in the temporal development of circulating populations of B cells that secrete antibody after in vitro culture. In assessing the humoral immunoregulatory status in patients with inflammatory bowel disease, we found that the antibody production by the B cells that spontaneously secrete tetanus-specific immunoglobulin G in vitro, and which occur in the circulation 7 days postimmunization, was highly variable and below normal in the majority of Crohn's disease and ulcerative colitis patients. The decreased in vitro antibody responses correlated with the lack of an increase in the serum antitetanus immunoglobulin G titers, but did not correlate with disease activity, location, or steroid therapy. The majority of patients who did not produce an immunoglobulin G-antitetanus toxoid antibody response similarly failed to produce an immunoglobulin G-antidiphtheria antibody response after immunization. Lymphocytes from the patients who failed to produce normal levels of antitetanus toxoid antibody did, however, proliferate normally when stimulated by tetanus toxoid in vitro. These results suggest there are in vivo humoral immune defects in inflammatory bowel disease.

Adult↗

Studies on the mechanism of the human natural killer cell lethal hit: a new method for rapid physical isolation of lethally hit K562 targets and inhibition of cytolysis by reduced temperature or trypsin.

A new method was developed which allows for rapid (2 min) physical isolation of viable K562 target cells after being programmed to lyse (lethally hit) by purified human natural killer (NK) cells (LGL). To achieve this K562 cells which were obtained from the 34-36% interface of discontinuous Percoll gradients and purified human NK cells (LGL) which were obtained from the (43-45% Percoll) interface were employed. Using a Ca2+ pulse method and the separation of NK-K562 conjugates with EDTA and rapid centrifugation on Percoll gradients at 4 degrees C we could physically isolate the lethally hit K562 cells from the LGL allowing the study of the events leading to their subsequent lysis. Lysis of "purified" lethally hit K562 cells occurred in the absence of Ca2+ or Mg2+ and was blocked by reduced temperature (4 degrees C), or by the protease enzyme trypsin. When lethally hit targets were held at 4 degrees C (to block lysis) then rewarmed to 37 degrees C lysis ensued but with a rate slower than that of control cells not held at 4 degrees C. These data support the concept that transfer of protease-sensitive and possibly temperature-dependent structures from the NK cell to the target is a requisite step in NK cytolysis.

Cell Line↗

NK and T cell subsets regulate antibody production by human in vivo antigen-induced lymphoblastoid B cells.

This study demonstrates the existence of two different suppressive systems for the regulation of antitetanus toxoid antibody production by human lymphoblastoid (LB) B cells. These B cells appear in the circulation 5 to 7 days after in vivo immunization and spontaneously secrete antibody during a 3-day in vitro culture. One suppressive system was mediated by large granular lymphocytes that exhibited high natural killer activity. This suppressive cell subset spontaneously inhibited the antibody production by autologous LB cells, and this effect could be enhanced by the addition of interferon. This inhibition of antibody synthesis could be readily reversed by the addition of as few as 10(2) K-562 cells to the culture. Additionally, the activity of this suppressive cell population could be reduced by complement (C)-mediated lysis with Leu-7 antibody. These results strongly suggest that this autologous suppression was mediated by NK cells. The other suppressor system was contained in the fraction of high density T cells depleted of Fc receptor-bearing cells, which was low in NK activity. This subset inhibited LB function in the presence of pokeweed mitogen but not interferon, and even the addition of up to 10(6) K-562 NK target cells only minimally reversed this inhibition. These results indicate that two distinct subsets of cells share regulatory functions on the in vivo induced B lymphoblastoid cells. The observation that NK cells can inhibit these highly differentiated B cells expands our view of the spectrum of natural targets recognized by NK cells.

Antibodies, Bacterial↗

Isolation of spontaneous and interferon inducible natural killer like cells from human colonic mucosa: lysis of lymphoid and autologous epithelial target cells.

Viable mononuclear and epithelial cells were dispersed from human colonic tissue by treatment with collagenase and ethylene diamino-tetra acetate (EDTA) and separated by centrifugal elutriation. Using a single cell cytotoxic assay, functional endogenous and interferon responsive mononuclear cytotoxic cells were detected. Compared to peripheral blood lymphocyte associated killer cells that had been exposed to similar treatment, these colonic killer cells demonstrated lower efficiency cytotoxicity of Molt-4 target cells. Furthermore, inefficient, but interferon responsive cytotoxic cells were present which bound and lysed freshly isolated autologous epithelial cells. The cytotoxicity of these colonic mononuclear natural killer (NK) like cells appeared specific in that cells bound but did not lyse NK resistant Raji cells, even after interferon activation.

Cell Line↗

Activation of human NKCC by moderate exercise: increased frequency of NK cells with enhanced capability of effector--target lytic interactions.

In the present study we examined the mechanism of human natural killer cellular cytotoxicity (NKCC) augmentation by 5 min of moderate exercise and its interrelationship to in vitro interferon (IFN) activation. Cytotoxicity was measured by employing both a single-cell cytotoxic assay and a standard 3-hr chromium-51 (51Cr) release assay. The former was used to assess changes at the single NK cell--target cell level and the latter to assess changes in overall lytic capacity of a given population of NK cells. Several findings were obtained: (1) moderate exercise augmented NKCC in vivo by recruiting a 'new' population of active cytotoxic NK cells. (2) This 'new' population of active cells probably was derived from cells which can bind targets but are non-cytotoxic. (3) In a standard 51Cr-release assay, additional augmentation of these exercise-activated cells occurred in vitro following exposure to interferon. (4) This additional increase in cytotoxicity produced no alteration in the frequency of killer cells as viewed at the single cell level. (5) Thus interferon's capacity to increase further the overall lytic ability of exercise-activated NK cells was not due to its activation of an additional subset of pre-NK cells, but due to its increasing the capacity of effector--target lytic interactions (recycling) of the same set of NK and pre-NK cells.

Cytotoxicity, Immunologic↗