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J S Jaffe

Publications and source records attributed to J S Jaffe.

At least 19 recordsLinked to original sources

A highly sensitive fluorescent micro-assay of H2O2 release from activated human leukocytes using a dihydroxyphenoxazine derivative.

This study describes a simple, reliable, highly sensitive and quantitative fluorescence microplate-assay of H2O2 from activated leukocytes using a novel horse radish peroxidase (HRP) substrate N-acetyl-3,7-dihydroxyphenoxazine (A6550). Unlike the widely used fluorescent HRP substrate scopoletin, A6550 is non-fluorescent and becomes highly fluorescent upon HRP-catalyzed H2O2 oxidation. Using 50 microM A6550, the change in fluorescence due to H2O2 generated from phorbol 12-myristate 13-acetate-activated human eosinophils and neutrophils is found to have a linear cell dose response up to 1.5 x 10(4) and 5 x 10(4) cells, respectively. The increase in fluorescence from A6550 is specifically due to H2O2 generation since it is inhibitable by catalase. Oxidized A6550 is found to be highly stable and the H2O2 dose response is linear as long as the ratio of A6550:H2O2 in the reaction mixture is higher than five. Unlike scopoletin, A6550 has a very low background, which changes little with time. In addition, the high fluorescent yield of oxidized A6550 results in an increased sensitivity for the detection of H2O2. When the concentrations of A6550 and HRP were 10 microM and 0.2 U/ml, respectively, as low as 2 pmol of H2O2 could be reliably measured. The sensitivity of A6550/H2O2 assay is found to be at least 10-fold higher than with scopoletin as the HRP substrate. The protocol described in this study using A6550 to measure H2O2 release from activated granulocytes can be easily adapted to other cell types which generate H2O2.

Catalase

Cytokine mRNA expression in human platelets and a megakaryocytic cell line and cytokine modulation of platelet function.

Platelet formation and function are regulated, in vivo, to varying degrees by cytokines in the micro-environment. While white blood cells are the major source of cytokines within the cardiovascular system, the question addressed in this study was whether platelets and the platelet precursor, the megakaryocyte, may also serve as a source of cytokines. Cytokines produced by or carried within platelets could be released at sites of vascular injury and participate in wound healing. Platelets and a human megakaryocyte-like cell line, HU3, were found to express message for interleukin 7 (IL-7), stem cell factor (SCF), transforming growth factor beta (TGF-beta), cMpl, the IgE receptor subunits Fc epsilon RI alpha gamma and the transcription factor, NF-E2. Other cytokines expressed in HU3 cells but not in platelets included IL-1 beta, IL-6, IL-10, IL-13, TNF-alpha and the FC epsilon RI beta subunit. The HU3 cell line seemed to be further along the maturation/differentiation pathway to platelet formation than a second blood derived bipotential cell line, MB02. The MB02 cell line did not express IL-6, IL-10, SCF, TNF-omega nor cMpl. Furthermore, culturing the HU3 cells in TPO appeared to repress expression of Fc epsilon RI beta directing the cell closer to the platelet phenotype. In light of the presence of cytokine expression in platelets/megakaryocytes, agonist-induced platelet aggregation was measured in the presence of added cytokines as a means to evaluate potential cytokine modulation of platelet function. Collagen-induced aggregations were significantly enhanced by IL-6, SCF and TPO. Other cytokines tested significantly stimulated the thrombin receptor activating peptide, SFLLRNP-, U46619- and ADP-induced platelet aggregations with TPO being the most consistent activator. It is possible that cytokines released from platelets act in concert with cytokines released from other cellular sources to modulate haemostasis and thrombosis differentially depending upon the site of injury.

Base Sequence

Human lung mast cell activation leads to IL-13 mRNA expression and protein release.

Using reverse transcriptase-polymerase chain reaction (RT-PCR) and enzyme-linked immunosorbent assay (ELISA), we studied the generation of the recently described Th2 cytokine interleukin-13 (IL-13) by anti-IgE-activated lung fragments (LF), lung mast cells (LMC), and the mast cell line HMC-1. We found that IL-13 messenger ribonucleic acid (mRNA) was constitutively expressed in LF and rapidly increased after anti-IgE challenge, persisting throughout a 16-h period. Quantitative-competitive PCR (QCPCR) demonstrated an increase from 1.2 fg to 120 fg of IL-13 mRNA/micrograms LF total cellular RNA. Time-course experiments showed that IL-13 protein was not increased in supernatants at 2 h after activation, but was upregulated by 8 h. Anti-IgE-activated LF supernatants contained 592.1 +/- 314.8 pg IL-13/g wet weight of tissue at 24 h (mean +/- SE; n = 11). LMC demonstrated upregulation of IL-13 mRNA expression following treatment with A23187 (n = 4), with maximal upregulation by 3 h; anti-IgE or phorbol myristate acetate (PMA) also led to increased IL-13 mRNA expression. QCPCR analysis of LMC IL-13 mRNA expression at 4 h after activation showed a 7-, 13.8-, and 13.2-fold increase after A23187, anti-IgE, and PMA, respectively. Quantities of IL-13 released from optimally activated LMC and peripheral blood T cells were comparable. HMC-1 also showed enhanced IL-13 mRNA beginning 30 min after A23187 activation, with peak expression from 1 to 10 h, followed by waning over the subsequent 24 h. A23187 stimulation of HMC-1 led to 100-fold upregulation of IL-13 mRNA within 4 h and detectable IL-13 in 24-h supernatants. These results demonstrate that activation of LF and LMC through multiple signal-transduction pathways results in increased IL-13 mRNA and protein expression temporally consistent with a potential role in chronic allergic inflammation.

Cells, Cultured

IgE-dependent expression of interleukin-5 mRNA and protein in human lung: modulation by dexamethasone.

mRNA and protein expression of the Th2 cytokines IL-4 and IL-5 from human lung were examined during the first 4 hr following IgE-mediated triggering, a time representative of the evolving late-phase reaction (LPR). Lung explants were incubated for 16 hr at 37 degrees C in culture media alone or with added dexamethasone (10(-6) M), washed, and then challenged with buffer or anti-IgE (3 micrograms/ml). Using RNase protection assays, in 16/16 individual lungs IL-5 mRNA expression was observed at 4 hr following anti-IgE and at no points following buffer challenge. Fragments released 1129 +/- 499 ng of IL-5/g wet wt over a 24-hr period (mean +/- SEM, n = 5). Neither IL-4 transcripts nor protein were detected in any anti-IgE challenges. Both the IgE-mediated IL-5 mRNA and protein responses were below the limits of detection following dexamethasone preincubation, suggesting a mechanism for the potent inhibitory effects of these agents observed in the LPR.

Dexamethasone

Human lung mast cell IL-5 gene and protein expression: temporal analysis of upregulation following IgE-mediated activation.

The late-phase of allergic asthma is characterized by infiltration of the airway with eosinophils within 6 h of mast cell activation. Pro-eosinophilic/pro-allergic (TH2) cytokines, originally described as T-lymphocyte products, have recently been ascribed to mast cells as well. To date, however, it is unknown if TH2 cytokine gene expression by the human mast cells is subject to receptor-mediated regulation analogous to that of T-cells, and if messenger RNA (mRNA) expression results in protein secretion occurring in a temporal context consistent with the late-phase response. We examined interleukin-4 (IL-4), IL-5, and IL-6 mRNA expression induced by anti-IgE activation of human lung explants as assessed using reverse transcription/polymerase chain reaction (RT-PCR). Anti-IgE stimulation resulted in rapid and sustained upregulation of IL-5 message, but did not have analogous effects on IL-4 or IL-6. Using quantitative-competitive PCR, we demonstrated that 100 ng of total cellular RNA from human lung contained 1 fg of IL-5 mRNA; this increased to 100 fg 4 h after anti-IgE activation. The source of the anti-IgE-enhanced IL-5 mRNA is likely the mast cell itself, as anti-CD3 activation of lung led to a dissimilar array of cytokine expression. In addition, human lung mast cells purified to near homogeneity expressed IL-5 mRNA after activation, as shown by both RT-PCR and in situ hybridization. In both lung fragments and purified human lung mast cells, the modulation of IL-5 mRNA expression preceded the secretion of IL-5 protein, detected as early as 4 h after activation. Neither isolated purified mast cells nor purified peripheral blood T cells could be induced to secrete detectable amounts of IL-5 protein when activated only with antibodies against IgE or CD3-T cell receptor complex, respectively. However, mast cells (n = 4) and T cells (n = 6) cultured at comparable concentrations (4 x 10(6)/ml) activated through their respective antigen receptors in the presence of phorbol ester yielded comparable IL-5 production (253 +/- 126 pg/ml versus 183 +/- 75 pg/ml, mean +/- SE). We conclude that mast cells are analogous to T cells in the requirement of co-stimuli for the production of IL-5 protein. Moreover, the rapid kinetics of IgE-mediated IL-5 transcription and protein elaboration are consistent with a primary role for mast cell activation directly leading to late-phase airway eosinophilia.

Enzyme-Linked Immunosorbent Assay

Evidence for an abnormal profile of interleukin-4 (IL-4), IL-5, and gamma-interferon (gamma-IFN) in peripheral blood T cells from patients with allergic eosinophilic gastroenteritis.

Allergic eosinophilic gastroenteritis is characterized by elevated total IgE, specific IgE to food antigens, and eosinophilia of tissue and blood. Because the lymphokines IL-4, IL-5, and gamma-interferon, regulate IgE synthesis, and eosinophilopoiesis in vitro, we examined whether there is an imbalance in their production in allergic eosinophilic gastroenteritis. To explore this hypothesis, three adult patients with allergic eosinophilic gastroenteritis were studied. Flow cytometric studies of peripheral blood mononuclear cells from these patients did not reveal evidence of T cell activation or disturbance of T cell numbers or subsets. T cells were capable of normal mitogenic activation in vitro. IL-4 and IL-5 production were markedly elevated with mitogenic stimulation. Most IL-4 and IL-5 production was by CD4+ T cells. Synthesis of IL-5 by CD4+ T lymphocytes in three patients and CD8+ T lymphocytes in two patients occurred in the absence of mitogen. Mitogen-stimulated GM-CSF and gamma-interferon synthesis by CD4+ T cells was normal. Lymphokine mRNA in total cellular RNA derived from endoscopic biopsies was examined by reverse transcription/polymerase chain reaction. Mucosal biopsies from control subjects and most biopsies from allergic eosinophilic gastroenteritis patients contained less than 10(-8) micrograms IL-5 mRNA/1 microgram total cellular mRNA. gamma-Interferon mRNA was not detected by reverse transcription/polymerase chain reaction in biopsies from patients with allergic eosinophilic gastroenteritis but was present in controls. These lymphokine abnormalities are consistent with the elevated IgE and eosinophilia seen in allergic eosinophilic gastroenteritis and suggest that strategies targeting T lymphocytes may be efficacious in treatment of this disease.

Adolescent

Functional abnormalities of CD8+ T cells define a unique subset of patients with common variable immunodeficiency.

A substantial subgroup of patients with common variable immunodeficiency (CVI) exhibit an abnormal T-cell phenotype characterized by a low CD4/CD8 ratio associated with a significant increase in the absolute number of CD8+ T cells (CVI4/8low patients). In the present study, we examined the phenotypic and functional properties of purified T-cell subsets in this group of CVI patients. CD8+ T cells from CVI4/8low patients manifested increased expression of HLA-DR and CD57 and decreased expression of CD45RA as compared with CD8+ T cells from normal controls. When stimulated with anti-CD3 and phorbol 12-myristate 13-acetate, purified patient CD8+ T cells exhibited significantly decreased proliferation, c-myc expression, and interleukin-2 (IL-2) production compared with that of normal CD8+ T cells. Nevertheless, mitogen-activated patient CD8+ T cells secreted elevated amounts of gamma-interferon and IL-5 and normal amounts of IL-4. This abnormal pattern of proliferation and cytokine production was limited to the CD8+ T-cell subset as CD4+ T cells from these patients exhibited normal proliferation and cytokine production. In further functional studies, purified CD8+ T cells from CVI4/8low patients manifested increased cytotoxic T-lymphocyte activity and suppressor activity, as compared with normal CD8+ T cells, when they were tested in (1) an anti-CD3 "redirected" cytotoxicity assay and (2) a suppressor assay consisting of CD8+ T cells and Staphylococcus aureus Cowan I (SAC) plus IL-2-stimulated normal (allogeneic) B cells. In the latter case, patient CD8+ T cells suppressed IgG production, but not IgM production. Finally, in studies to evaluate the role of patient CD8+ T cells in the pathogenesis of hypogammaglobulinemia, we determined the capacity of SAC and IL-2 to induce Ig production in highly purified patient B cells, ie, in the absence of patient CD8+ T cells. We found that, whereas B cells from one patient produced normal amounts of IgG, B cells from three patients were unable to produce normal amounts of IgG under these conditions. These data establish the phenotypic and functional characteristics of CD8+ T cells in CVI4/8low and clearly distinguish CVI4/8low patients from other patients with this syndrome. The data do not support the contention that hypogammaglobulinemia in CVI4/8low patients is due to a direct effect of CD8+ T cells on terminal B-cell differentiation, except in the occasional patient. The abnormal CD8+ T cells may, nevertheless, have more subtle effects of lymphoid function that play a role in disease pathogenesis.

Antibody Formation

NIH conference. New insights into common variable immunodeficiency.

Common variable immunodeficiency (CVI) is a heterogenous immunodeficiency syndrome characterized by hypogammaglobulinemia, recurrent bacterial infections, and various immunologic abnormalities. In addition to recurrent infections, patients with this syndrome also have an increased incidence of autoimmune disease and malignancy. Because the spectrum of associated diseases is broad, patients with CVI are seen by various medical specialists. This review discusses the pathogenesis, clinical manifestations, diagnosis, and treatment of CVI.

B-Lymphocytes

Reduced interleukin-2 (IL-2) production in common variable immunodeficiency is due to a primary abnormality of CD4+ T cell differentiation.

Common variable immunodeficiency (CVI) is a condition characterized by hypogammaglobulinemia and impaired antibody responses, resulting in recurrent bacterial infections in untreated patients. In addition, affected individuals exhibit an increased incidence of autoimmunity, malignancy, and certain viral infections, suggesting the presence of an underlying generalized immune dysregulation. We have previously described a subgroup of CVI patients in whom T cells within PBMC populations exhibit a selective defect in lymphokine production. IL-2, IL-4, and IL-5 mRNA production was impaired in these patients, while proliferation, IL-2R expression, and c-myc mRNA production were normal. In the present series of experiments, using highly purified CD4+ T cells prepared by negative selection, we show that this lymphokine production defect is a primary abnormality of CVI CD4+ T cells: whereas CD4+ T cells from CVI patients proliferate normally in response to stimulation by PHA, staphylococcal enterotoxin B (SEB), or anti-CD2 antibodies, these stimuli induce significantly less IL-2 production than observed with CD4+ T cells from normal individuals. Furthermore, we show that this IL-2 production defect is not due to an accessory cell abnormality, since it was seen in the presence of normal (allogeneic) accessory cells, and patient accessory cells supported normal amounts of IL-2 production by PHA-stimulated CD4+ T cells obtained from normal individuals. Of interest, we also found that while IL-2 production by CD4+ T cells from CVI patients induced by stimulation with immobilized anti-CD3 antibody was reduced compared to CD4+ T cells from normal control individuals, this reduction was not statistically significant. Furthermore, stimulation of both CVI patient and normal CD4+ T cells with either ionomycin+phorbol myristate acetate or a combination of immobilized anti-CD3 antibody plus anti-CD28 antibody resulted in a 50-fold increase in IL-2 production compared to stimulation with immobilized anti-CD3 antibody alone, and, under these conditions, CVI and normal CD4+ T cells produced equivalent amounts of IL-2. Finally, minor defects in interferon-gamma production by CD4+ T cells from CVI donors were observed, but these were less severe than the IL-2 production defects and were not statistically significant. We conclude that a primary abnormality of lymphokine production exists in the CD4+ T cells of a subset of patients with CVI.(ABSTRACT TRUNCATED AT 400 WORDS)

Antibodies, Monoclonal

T-cell abnormalities in common variable immunodeficiency.

Common variable immunodeficiency (CVI) is a heterogeneous condition marked by a number of different immunologic defects. One group of patients, perhaps 60% of the CVI group as a whole, is characterized by T cells that produce reduced amounts of IL-2 (mRNA and protein product), IL-4, and IL-5 (mRNA) when stimulated with phytohemagglutinin. This defect does not extend to all lymphokines, however, because the cells produce normal amounts of interferon-gamma (mRNA and protein product) when exogenous IL-2 is present. Recently, we have reexamined the T cell lymphokine production defect using a panoply of T-cell activation stimuli and have shown that the defect is a subtle one that depends on activation of the cell via the CD3-T-cell receptor complex. Because T cells proliferate normally when stimulated via this receptor, this finding suggests the presence of a "downstream" defect, perhaps one involving the factors that are necessary for activation of lymphokine genes. A second form of CVI, in this case involving approximately 30% of the CVI group as a whole, is characterized by a reduced CD4/CD8 ratio and elevated numbers of CD8+ T cells bearing the CD57 marker. Although the CD4+ T cells in this patient group elaborate normal amounts of IL-2 under various activation conditions, their CD8+ T cells produce increased amounts of interferon-gamma. Furthermore, the CD8+ T cells in this case act as "suppressor" T cells, which suppress IgG production but not IgM production of purified (normal) SAC+, IL-2-induced B cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Antigens, CD

Cytokines and their role in the pathogenesis of severe food hypersensitivity reactions.

Cytokines are proteins produced by one cell that are capable of altering the behavior of another cell. Their biologic effects are both pleomorphic and redundant. A number of cytokines have been implicated in the genesis of allergic reactions, including IL-4, IL-5, IL-6, and tumor necrosis factor (TNF). In contrast, other cytokines such as gamma interferon (gamma-IFN) may have biologic actions that act to limit allergic responses. In studies on patients with severe food allergy, we have found cytokine production from peripheral T cells to be abnormal following mitogenic stimulation. These lymphokine abnormalities may contribute to the elevation in IgE and the eosinophilia seen in severe food allergy.

Cytokines

Carcinoma of prostate in men aged fifty and under: therapeutic options.

We made a retrospective study of 20 men, aged fifty or under, with adenocarcinoma of the prostate to evaluate presenting symptoms, stage, grade, and therapeutic results. Sixty-five percent were found to have extracapsular spread of disease (Stage C or D). The therapy used was one or a combination of three types: radical prostatectomy, radiation therapy, and hormonal manipulation. Five of 6 patients with Stage B disease and 3 of 6 patients with Stage C disease were treated with radiation therapy. The other Stages B and C patients underwent radical prostatectomy. In all 5 of Stage B patients receiving radiation, therapy failed; the mean time to tumor recurrence was 3.2 years. Two of 3 patients with Stage C disease died of metastatic disease within three years of receiving radiation. The 4 patients (Stages B and C) who underwent radical prostatectomy are free of disease. There was a statistically higher failure rate among the radiation therapy patients with Stages B and C disease than among the surgical patients (X2 = 8.4, p less than 0.1).

Adenocarcinoma

A novel lymphoproliferative/autoimmune syndrome resembling murine lpr/gld disease.

In mice, the two distinct autosomal recessive genes lpr and gld can induce a syndrome characterized by autoantibody formation and the progressive accumulation of an unusual CD4-CD8- T cell population in peripheral lymphoid tissue. This phenotype does not precisely mirror any human disease. In this report we describe two patients with a progressive lymphoproliferative disorder associated with autoimmunity. The peripheral blood and lymph nodes of these patients contained large numbers of an unusual CD4-CD8- T cell population. These CD4-CD8- T cells express surface markers characteristic of mature peripheral blood T cells (CD3, CD2, CD5), express the alpha/beta form of the T cell receptor, and do not express surface markers characteristic of immature thymocytes (CD1) or NK cells (CD16, CD56). Functionally, these cells exhibited deficient proliferation and lymphokine production upon stimulation with mitogenic antibodies to CD3 or CD2. Both proliferation and lymphokine production could be augmented by co-stimulation with an antibody directed at the CD28 determinant. The clinical and immunological features of this syndrome resemble the lymphoproliferative/autoimmune disease seen in lpr and gld mice.

Animals

3-dimensional sonographic analysis based on color flow Doppler and gray scale image data: a preliminary report.

This paper presents preliminary results of a technique that permits acquisition and display of three-dimensional (3D) anatomy using data collected from color flow Doppler and gray scale image sonography. 3D sonographic image data were acquired as two-dimensional planar images with commercially available equipment. A translational stage permitted the transducer position and orientation to be determined. Color flow sonographic video image data were digitized into a PC-AT computer along with transducer position and orientation information. Color flow velocity and gray scale data were separated, 3D filtered, and thresholded. A surface rendering program was used to define the vessel blood-lumen interface. Planar slices of arbitrary orientation and volume rendered images were displayed interactively on a graphics workstation. The technique was demonstrated in a lamb kidney in vitro and for the carotid artery at the bifurcation in vivo. Our results demonstrate the potential of 3D sonography as a technique for visualization of anatomy. Color flow data offer direct access to the vascular system, facilitating 3D analysis and display. 3D sonography offers potential advantages over existing diagnostic studies in that it is noninvasive, requires no intravenous contrast material, offers arbitrary plane extraction and review after the patient has completed the examination, and permits vascular anatomy to be visualized clearly via rendered images.

Animals

Difference Fourier analysis of "surface features" of bacteriorhodopsin using glucose-embedded and frozen-hydrated purple membrane.

A difference Fourier map of the projected structure of bacteriorhodopsin has been synthesized from electron diffraction amplitudes collected from membranes prepared in the glucose-embedded state and the frozen-hydrated state. Phases of a recently published data set for glucose-embedded specimens were used for the difference Fourier map. Moderate resolution (9 A) and high resolution (4.25 A) maps both indicate that glucose is exchangeable for water in the region of the map corresponding to the lipid regions. We interpret this as indicating that there is a small surface depression in this region of the structure. The depth of this feature is estimated to be 1/6 the thickness of the protein region in the membrane. The data obtained in this study rules out the existence of an aqueous transmembrane channel, the dimensions of which are large enough to allow free exchange of glucose for water. Several new features are also observed in the protein region of the membrane. These features are probably due to segments of the polypeptide at the aqueous interface that are well ordered in frozen-hydrated specimens but not in glucose-embedded specimens. Candidate structures for the origin of these features are extensions of the helices, or linker regions connecting the helices.

Bacteriorhodopsins

Preparation of frozen-hydrated specimens for high resolution electron microscopy.

A method is presented for preserving the high resolution structure of biological membranes in a frozen-hydrated environment for electron microscopy. The technique consists of sandwiching a specimen between two carbon films and then waiting while some of the solvent evaporates. When the solvent layer is judged to be of an appropriate thickness, the specimen is then frozen in liquid nitrogen. The specimen can then be inserted into the precooled stage of an electron microscope. Electron diffraction studies of the purple membrane of Halobacterium halobium recorded at -120 degrees C have shown that the structure can be preserved to a resolution of 3.5 A. The main advantage of this method over previous techniques is that the hydrating conditions can be accurately controlled.

Freeze Drying