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Biomedical subjects

A George

Publications and source records attributed to A George.

At least 19 recordsLinked to original sources

Monoclonal antibody detection of a major self peptide. MHC class II complex.

MHC class I and class II molecules transport foreign and self peptides to the cell surface and present them to T lymphocytes. Detection of these peptide:MHC complexes has thus far been limited to analysis of the response of a T cell. Previously, we showed that a mAb, Y-Ae, reacts with 10 to 15% of class II molecules on peripheral B lymphocytes and on cells in the thymus medulla but not thymus cortex in mice that express both I-Ab and I-Eb molecules. Elsewhere, we show that Y-Ae detects a self E alpha peptide bound to I-Ab molecules. Data presented here suggest that the antibody binds over the peptide binding groove of class II molecules, and, like a TCR, appears to recognize both the self peptide and polymorphic class II residues. In addition to B lymphocytes, the Y-Ae determinant is expressed at comparable levels on other APC, including macrophages and dendritic cells. Finally, the antibody does not react with invariant chain-associated class II complexes, thus providing direct evidence that invariant chain:class II complexes and peptide:class II complexes are mutually exclusive. These data provide further evidence that immunologic self is of limited complexity, and have important implications for T cell selection, self tolerance, and autoreactivity.

Animals

Reduced free radical generation during reperfusion of hypothermically arrested hearts.

Several studies indicate the presence of hydroxyl radical (OH.) as well as its involvement in the myocardial reperfusion injury. A transition metal-like iron is necessary for the conversion of superoxide anion (O2-) to a highly reactive and cytotoxic hydroxyl radical (OH.). In the present study, we have examined the generation of OH. and free iron in reperfused hearts following either normothermic (37 degrees C) or hypothermic ischemia (5 degrees C). Employing the Langendorff technique, isolated rat hearts were subjected to global ischemia for 30 min at 37 degrees C or 5 degrees C and were then reperfused for 15 min at 37 degrees C. The results of the study suggest that both the OH. generation in myocardium and free iron release into perfusate were significantly lower in hearts made ischemic at 5 degrees C as compared to 37 degrees C. Release of myoglobin and lactic acid dehydrogenase into perfusate also followed a similar pattern. Furthermore, in in vitro studies, chemically generated O2- at 5 degrees C caused a significantly lower rate of oxidation of oxymyoglobin as well as generation of OH. and free iron as compared to 37 degrees C. These results suggest that (1) reperfusion of hypothermic ischemic heart is associated with a reduction in the generation of OH. and cellular damage compared to that of normothermic ischemic heart, and (2) myoglobin, an intracellular protein, is a source of free iron and plays a role in the reperfusion injury mediated by free radicals.

Animals

Effect of tryptophan administration on circulating melatonin levels in chicks and rats: evidence for stimulation of melatonin synthesis and release in the gastrointestinal tract.

The administration of L-tryptophan (Trp, 150-300 mg/kg) to rats and chicks causes a rapid and dose-dependent elevation of circulating melatonin. The elevation of serum melatonin was greater after oral compared to the intraperitoneal route of administration of the same dose of Trp (150 mg/kg). The Trp-induced increase of circulating melatonin was unaffected by prior pinealectomy but was almost abolished by a partial ligature of the portal vein. The Trp-induced increase of melatonin in the portal blood preceded that in the systemic circulation. The gut contains considerable amounts of melatonin and the Trp-induced elevation of melatonin was greater in the duodenum compared to the pineal or the blood. The enterochromaffin cells of the gastrointestinal tract appear to be the major source of the Trp-induced increment of circulating melatonin. The possibility is discussed that the sedating, sleep inducing effects of Trp are mediated by the Trp-induced elevation of circulating melatonin.

Administration, Oral

Use of a murine T-cell hybridoma expressing human T-cell receptor alpha- and beta-gene products as a tool for the production of human T-cell receptor-specific monoclonal antibodies.

We describe the production of mouse monoclonal antibodies specific for the human TcR using as the immunogen transfected murine T-cell hybridoma cells coexpressing mouse CD3 with human Jurkat TcR alpha and beta chains. The shortage of monoclonal antibodies (mAbs) specific for the human TcR-V alpha and V beta families reflects the difficulties in their production by conventional methods using whole human T cells or purified soluble receptors as immunogens. As an alternative strategy to circumvent these difficulties, we have generated a transfected mouse T-cell line expressing a human (Jurkat) TcR alpha beta dimer in a complex with mouse CD3. The parental mouse T-cell line, TG40, is a cell surface TcR-negative, cytoplasmic CD3-positive variant of the mouse T-cell hybridoma 2B4. The human-TcR alpha beta expressing mouse transfectant was used to immunize mice with the same genetic background as the parent mouse T-cell line, and a human TcR-specific response was successfully achieved. MAb-producing hybridomas were generated by fusing spleen cells from the immunized mice with the mouse myeloma cell line NSO. Of 124 hybridoma supernatants screens, 72 showed reactivity to the human T-cell line Jurkat. Twenty-four of the hybridomas producing human (Jurkat) TcR-specific antibodies were cloned and screened for reactivity to Jurkat TcR. Several IgG2b and IgM mAbs specific for the Jurkat T cell line were selected on the basis of their ability to modulate surface CD3 expression on Jurkat cells. Most of the antibodies do not stain other TcR-expressing human T cell leukemia cell lines, implying specificity for the variable domains of the Jurkat TcR.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

FTIRS in H2O demonstrates that collagen monomers undergo a conformational transition prior to thermal self-assembly in vitro.

The assembly of type I collagen molecules into native fibrils can be accomplished in vitro in solutions at physiological ionic strength and pH by raising the temperature above 30 degrees C. The thermal self-assembly reaction exhibits a distinct lag phase. This lag phase has been proposed to be evidence for a conformational transition in the monomer. Fourier transform infrared spectroscopy (FTIRS) is a very sensitive probe of the H-bonded states within the triple helix. The carbonyl group spectrum (amide I, 1700-1600 cm-1) has been investigated in collagen/H2O solutions at 1 mg/mL under self-assembly conditions from 4 to 34 degrees C and, in the same range, at a higher ionic strength where self-assembly does not occur. The deconvoluted spectra show three very clear bands at approximately 1660, 1644, and 1630 cm-1. These bands vary in both frequency maxima and relative intensity over the temperature range examined. Spectra were also obtained in the amide II and III regions. Spectral changes were evident in the 22-26 degrees C range, under fibril-forming conditions, which lead to the hypothesis that the triple helix of the semiflexible collagen molecule is actually perfected during the lag phase, facilitating nucleation and intermolecular interaction. Further spectral changes after fibrils do form show that the molecules are once again distorted as they are bent to fit within the fibrils.

Animals

Responses of single germinal-center B cells in T-cell-dependent microculture.

B cells purified from the germinal centers (GCs) of murine Peyer's patches can be stimulated in a clonal microculture containing helper T cells and dendritic cells to divide and secrete immunoglobulin. Intraclonal isotype switching occurs, and a variety of immunoglobulin isotypes, including IgA, is secreted. Memory cells, which generate clones secreting IgA exclusively, are only rarely identified in the GC B-cell subset. Such memory cells can, however, be readily identified among unfractionated Peyer's patch B cells, and in non-GC subsets of B cells. The results suggest that the GC does not contain IgA memory cells that can be restimulated in vitro to secrete only IgA. When division of GC B cells is prevented by irradiation or aphidicholin treatment, a large subset that secretes IgA as the sole immunoglobulin isotype is seen, and the output of presumably single B cells is large enough to be scored by RIA. Both helper T cells and dendritic cells are required for the phenomenon. The data indicate that commitment to IgA secretion occurs in Peyer's patch GCs and suggest that the prolific cell division known to be supported in GCs may forestall terminal differentiation of preplasmablasts to immunoglobulin secretion.

Animals

DNA methylation changes in the IL-1 (2F) chromosomal region of some radiation-induced acute myeloid leukaemias carrying chromosome 2 rearrangements.

Acute myeloid leukaemias (AML) arising in irradiated CBA/H mice frequently have breakpoints in the F region of chromosome 2. The closely linked cytokine genes interleukin (IL)-1 alpha and beta map to this region, and the beta gene is deregulated in some AMLs. Using pulsed-field gel electrophoresis techniques, we show here that an 800 kb 2F region encoding IL-1 alpha and beta is not obviously rearranged in six leukaemias carrying chromosome 2 abnormalities. However, changes in IL-1 region DNA methylation in three leukaemias may be consistent with loss of hypermethylated sequences from one chromosome copy. These possible 2F region losses are discussed in relation to genomic imprinting and its potential role in murine myeloid leukaemogenesis.

Acute Disease

Use of Peyer's patch and lymph node fragment cultures to compare local immune responses to Morganella morganii.

Lymphoid tissue fragment cultures were established to analyze the differentiative processes among B cells in Peyer's patches (PP) and peripheral lymph nodes (PLN), especially those in germinal centers. PP cultures from both conventionally reared mice and formerly germ-free mice colonized with Morganella morganii could be maintained for greater than 12 days with continued B-cell division, especially among cells binding high levels of peanut agglutinin, a characteristic of germinal center cells. PLN cultures from conventionally reared mice injected with a heat-killed vaccine of M. morganii could be maintained for the same amount of time. Over this period, PP cultures continued to secrete immunoglobulin A (IgA) as well as smaller amounts of IgM. PP cultures from formerly germ-free mice colonized with M. morganii showed net increases of IgA antiphosphocholine (anti-PC) antibodies with avidities as high as those of the prototypic T15 monoclonal antibody. Similar PLN fragment cultures from conventionally reared mice given footpad injections of M. morganii showed net increases of IgM and IgG anti-PC antibodies in the culture fluid. Thus, although M. morganii stimulated lymphoid tissues in vivo to produce an anti-PC response in vitro when given by either the oral or the parenteral route, the antibody isotypes differed between PP and PLN fragment cultures. Fragment culturing may offer a complementary and simpler way to detect a local secretory IgA response than does either measuring IgA antibody in secretions or detecting IgA antibody in the cytoplasm of plasma cells in the lamina propria of gastrointestinal or respiratory tissue.

Animals

The depressed borderline: one disorder or two?

Depression in the borderline patient may present as a reactive mood state, an expression of character, or an independent comorbid affective disorder. The symptom picture is most often heterogeneous, "atypical," and chronic. Pharmacologic trials with tricyclic antidepressants (TCAs) and monoamine oxidase inhibitors (MAOIs) produce modest improvement on a variety of symptoms, though not always on depression. Medication effects on depressed mood in borderline personality disorder (BPD) are independent of comorbid diagnoses of major depression, atypical depression, or hysteroid dysphoria. Residual symptoms are the rule. A literature review, including studies of comorbidity, longitudinal followup, family history, and laboratory and pharmacotherapy studies, suggests that the borderline patient has both a core biologic affective dysregulation and a pathologic personality organization. The combination of constitutional and psychodynamic etiologies for borderline pathology requires consideration of both pharmacotherapy and psychotherapy in any comprehensive treatment.

Borderline Personality Disorder

Reovirus-induced liver disease in severe combined immunodeficient (SCID) mice. A model for the study of viral infection, pathogenesis, and clearance.

Adult severe combined immunodeficient (SCID) mice can be infected by the oral route with reovirus, and a systemic infection can be established. Infectious virus is recovered from all internal organs, and the mice die in 4-6 wk. Chronic, discrete inflammatory lesions appear in the liver of infected mice, and are associated with hepatocytes containing demonstrable levels of viral antigen. The adoptive transfer of Peyer's patch (PP) cells from congenic mice before infection protects the SCID mice against disease and death. Immune donor PP cells can be distinguished from nonimmune cells by their ability to contain and resolve infection by 1 wk after challenge.

Animals

Dendritic cells support production of IgA and other non-IgM isotypes in clonal microculture.

Microcultures of helper T (Th) cells and a few appropriately primed murine B cells can be used to detect cognate T-B interactions which lead to clonal production of IgM, IgG1, and IgE. However, IgG2, IgG3, and IgA are very rarely expressed. We have found that the addition of dendritic cells to such cultures creates an extremely supportive environment for clones expressing IgA with other isotypes, as well as clones expressing only detectable IgA. Typically, 400 dendritic cells were added to 3000 conalbumin-specific Th cells (D10.G4.1) and 30 hapten-specific Peyer's patch (PP) B cells with antigen in 15 microliters. The response was antigen dependent and clonal. Almost half of the clones expressed only non-IgM isotypes, 43% expressed some IgA, and 14% expressed some IgG3; isotype diversity increased over time. Dendritic cells from PP and spleen were found to be equally supportive, and allowed the number of T cells required in microculture to be decreased from 3000 to 400. However, T cell proliferation was not required for the supportive effect of dendritic cells. Surface IgD-bearing cells were also found to switch to IgA production in microculture as judged by their generating clones expressing IgM along with IgA and other isotypes. Again, IgA was usually expressed only in the presence of dendritic cells. The mechanism may involve dendritic cell-induced T cell activation and/or dendritic cell factors, and is under investigation.

Animals

Computed tomography scans and negative symptoms in schizophrenia: chronic schizophrenics with negative symptoms and nonenlarged lateral ventricles.

Computed tomography scans of 31 chronic schizophrenics with negative symptoms and 31 age-matched normal volunteers were assessed for ventricular size, cortical atrophies, third ventricle diameter, and cerebellar atrophies. No significant differences were found in the size of the lateral ventricles or third ventricles between the chronic schizophrenics and the controls. The frontal horns in patients did show a tendency toward increased size compared with controls. Sulci width showed significant differences between patients and controls. The clinical variables, except for the memory test, did not correlate with any brain morphology. A meta-analysis was performed on 17 studies that used the planimetric method in order to evaluate the relationships between the size of the lateral ventricles in patients and their respective controls. We found significant differences between the group of studies using normal controls and the group using medical controls.

Adult

The effects of an iron chelator on cellular injury induced by vascular stasis caused by hypothermia.

Rewarming of a cooled rabbit leg was associated with the generation of oxygen-derived free radicals, shown to be instrumental for tissue injury occurring during rewarming. The present study used a compound that, by its ability to bind with free iron, can remove hydroxyl radical (OH.) from tissue. Deferoxamine reduced tissue injury during cooling and rewarming, as evidenced by its ability to decrease tissue release of lactic acid dehydrogenase and creatine kinase. Deferoxamine also reduced the formation of OH. and lipid peroxidation during the rewarming phase. This compound did not have any effect on the arterial blood flow pattern, which uniformly decreased during cooling and was restored during rewarming. The results of this study indicate the efficacy of deferoxamine in reducing cellular injury associated with cold and rewarming and further suggest a role for oxygen-derived free radicals in the pathophysiology of cold-rewarming injury.

Animals

Detection of hydroxyl radical in the mitochondria of ischemic-reperfused myocardium by trapping with salicylate.

Although the presence of free radicals has been indicated in ischemic-reperfused heart, the exact nature and source of these free radicals are not known. The present study utilized a chemical trap, salicylic acid, to trap hydroxyl radical which could be detected as hydroxylated benzoic acid using high pressure liquid chromatography. Since the hydroxylated product is extremely stable, heart was subjected to subcellular fractionation after ischemia and reperfusion, and each fraction was separately examined for the presence of hydroxyl radical. The results indicated for the first time the presence of hydroxyl radical in the mitochondrial fraction during early reperfusion, which decreased in intensity as the reperfusion progressed.

Animals