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T A Fleisher

Publications and source records attributed to T A Fleisher.

At least 19 recordsLinked to original sources

Increases in circulating and lymphoid tissue interleukin-10 in autoimmune lymphoproliferative syndrome are associated with disease expression.

Autoimmune lymphoproliferative syndrome (ALPS) is an inherited disorder in which genetic defects in proteins that mediate lymphocyte apoptosis, most often Fas, are associated with enlargement of lymph nodes and the spleen and a variety of autoimmune manifestations. Some patients with ALPS have relatives with these same apoptotic defects, however, who are clinically well. This study showed that the circulating levels of interleukin 10 (IL-10) were significantly higher (P <.001) in 21 patients with ALPS than in healthy controls. Moreover, the peripheral blood mononuclear cells (PBMCs) and lymphoid tissues of these patients with ALPS contained significantly higher levels of IL-10 messenger RNA (mRNA; P <.001 and P <.01, respectively). By fractionating PBMC populations, disproportionately high concentrations of IL-10 mRNA were found in the CD4(-)CD8(-) T-cell population, expansion of which is virtually pathognomonic for ALPS. Immunohistochemical staining showed intense IL-10 protein signals in lymph node regions known to contain CD4(-)CD8(-) T cells. Nonetheless, in vitro studies showed no influence of IL-10 on the survival of CD4(-)CD8(-) T cells. Overexpression of IL-10 in patients with inherited apoptotic defects is strongly associated with the overt manifestations of ALPS.

Apoptosis↗

Immunophenotyping.

Immunophenotyping of leukocytes for nonmalignant conditions uses the power of multiparameter flow cytometry to count specific lymphocyte populations and evaluate the presence or absence of particular cell surface markers. Its main clinical indications, and the focus of this chapter, are enumeration of CD4 T-cell counts and activation markers on T cells in human immunodeficiency virus (HIV) infection, immunophenotypic characterization of primary immunodeficiency disorders and immune-mediated diseases, and the study of immune reconstitution following stem cell transplantation (SCT). Immunophenotyping has advanced our understanding of many immunologic disorders, which in turn have stimulated new developments in the field of flow cytometry, such as quantitative flow cytometry and single-platform technology. Semin Hematol 38:100-110. This is a US government work. There are no restrictions on its use.

Animals↗

Cell function-based flow cytometry.

Flow cytometry is increasingly used to assess the functional status of leukocytes, and practically all aspects of their life (and death) are accessible to flow cytometric study. Together with familiar features of flow cytometry, such as multiparameter immunophenotyping, cell function-based flow cytometry has provided many new insights into the relationships among lymphocyte cell surface features; intracellular processes, such as cytokine production and protein phosphorylation; and the functional status of lymphocytes in a variety of human diseases. Direct visualization and quantification of antigen-specific T cells using major histocompatibility complex (MHC)-peptide tetramer technology, in combination with functional assays, has provided the means to study specific T-cell subsets of interest. Even early in its development, this technology already has offered a better understanding of basic and clinical immunology and has invited reassessment of several long-standing immunologic concepts. Semin Hematol 38:169-178. This is a US government work. There are no restrictions on its use.

Animals↗

Prolonged CD4 depletion after sequential autologous peripheral blood progenitor cell infusions in children and young adults.

Administration of mobilized peripheral blood progenitor cells (PBPCs) after high-dose chemotherapy rapidly restores multilineage hematopoiesis, but the ability of such products to restore lymphocyte populations remains unclear. In this report, we evaluated immune reconstitution in a series of patients treated with sequential cycles of high-dose chemotherapy, followed by autologous PBPC infusions (median CD34(+) cell dose 7.2 x 10(6) cells/kg [range 2-29.3]). Although patients experienced rapid reconstitution of B cells and CD8(+) T cells, we observed CD4 depletion and diminished immune responsiveness in all patients for several months after completion of therapy. Mature CD4(+) T cells contained within the grafts did not appear to contribute substantially to immune reconstitution because CD4 counts did not differ between recipients of unmanipulated T-cell replete infusions versus CD34 selected, T-cell-depleted infusions. Rather, at 12 months after therapy, total CD4 count was inversely proportional to age (rho = -0.78, P =.04), but showed no relationship to CD34 cell dose (rho = -0.42, P =.26), suggesting that age-related changes within the host are largely responsible for the limited immune reconstitution observed. These results demonstrate that in the autologous setting, the infusion of large numbers of PBPCs is not sufficient to restore T-cell immune competence and emphasize that specific approaches to enhance immune reconstitution are necessary if immune-based therapy is to be used to eradicate minimal residual disease after autologous PBPC transplantation. (Blood. 2000;96:754-762)

Adolescent↗

Efficient detection of thirty-seven new IL2RG mutations in human X-linked severe combined immunodeficiency.

X-linked severe combined immunodeficiency (XSCID) is a rare and potentially fatal disease caused by mutations of IL2RG, the gene encoding the interleukin-2 receptor gamma chain, a component of multiple cytokine receptors that are essential for lymphocyte development and function. To date, over 100 different mutations of IL2RG resulting in XSCID have been published. Using nonradioactive, direct DNA sequencing of a single PCR amplicon containing the whole IL2RG gene, we found IL2RG mutations in 78 previously unpublished unrelated cases of XSCID. We report 37 newly identified mutations of IL2RG, including 23 point mutations, 10 small deletions, 3 instances of the same single nucleotide insertion, 1 large deletion, and 2 complex mutations. More than half of the mutations (22 of 37) were predicted to result in unstable IL2RG mRNA. The remaining 14 mutations disrupted conserved functional motifs common to all cytokine receptor family members; changed protein conformation, charge, or hydrophobicity; or altered the intracellular portion of the protein, which is critical for proper interaction with signal-transducing molecules including Janus family tyrosine kinase 3.

Base Sequence↗

Sensitive immunoassay of tissue cell proteins procured by laser capture microdissection.

Coupling laser capture microdissection (LCM) with sensitive quantitative chemiluminescent immunoassays has broad applicability in the field of proteomics applied to normal, diseased, or genetically modified tissue. Quantitation of the number of prostate-specific antigen (PSA) molecules/cell was conducted on human prostate tissue cells procured by LCM from fixed and stained frozen sections. Under direct microscopic visualization, laser shots 30 microm in diameter captured specific cells from the heterogeneous tissue section onto a polymer transfer surface. The cellular macromolecules from the captured cells were solubilized in a microvolume of extraction buffer and directly assayed using an automated (1.5 hour) sandwich chemiluminescent immunoassay. Calibration of the chemiluminescent assay was conducted by developing a standard curve using known concentrations of PSA. After the sensitivity, precision, and linearity of the chemiluminescent assay was verified for known numbers of solubilized microdissected tissue cells, it was then possible to calculate the number of PSA molecules per microdissected tissue cell for case samples. In a study set of 20 cases, using 10 replicate samples of 100 laser shots per sample, the within-run (intraassay) SD was approximately 10% of the mean or less for all cases. In this series the number of PSA molecules per microdissected tissue cell ranged from 2 x 10(4) to 6. 3 x 10(6) in normal epithelium, prostate intraepithelial neoplasia (PIN), and invasive carcinoma. Immunohistochemical staining of human prostate for PSA was compared with the results of the soluble immunoassay for the same prostate tissue section. Independent qualitative scoring of anti-PSA immunohistochemical staining intensity paralleled the LCM quantitative immunoassay for each tissue subpopulation and verified the heterogeneity of PSA content between tissue subpopulations in the same case. Extraction buffers were successfully adapted for both secreted and membrane-bound proteins. This technology has broad applicability for the quantitation of protein molecules in pure populations of tissue cells.

Calibration↗

Immune function.

The innate and the adaptive immune systems have evolved to provide a rapid and specific means for protecting hosts against the many microbes experienced over a lifetime. These two immune responses interact cooperatively to enhance the host defense. Defects in either of these two pathways can have devastating consequences, as evidenced [figure: see text] by primary immune deficiencies, many of which are discussed in this issue of the Pediatric Clinics of North America. The immune system has a central role in the pathogenesis of many disorders that involve an inflammatory response, including allergic and autoimmune diseases. New and more effective therapies for these many disorders will develop as the understanding of the immune system and its many secreted mediators continues to increase.

B-Lymphocytes↗

Autoimmune lymphoproliferative syndrome. A human disorder of abnormal lymphocyte survival.

The importance of Fas in the homeostatic balance between lymphocyte survival and death is underscored by the three main consequences of defective Fas-mediated apoptosis, as experienced by patients with ALPS: (1) abnormal accumulation of lymphocytes results in lymphadenopathy, hepatosplenomegaly, and hypersplenism; (2) failure of removal of potentially autoreactive lymphocytes, a process normally used to eliminate lymphocytes that have escaped negative selection in the thymus and bone marrow (see article by Fleisher and Blessing, p. 1197), is associated with the appearance of autoimmune manifestations; and (3) inappropriate survival of lymphocytes may lead to the development of malignancies. As with other "experiments of nature," the many aspects of ALPS have provided valuable new insights into the immune system and the importance of a proper balance between life and death of lymphocytes. ALPS is an example of how a mouse disease model was applied directly to the identification of the molecular basis and the understanding of a remarkable disease in humans. It is also an example of clinical observations being linked to basic scientific data to unlock the underlying defect(s) causing a disease. Despite the difficulty in fully understanding the complex nature of the clinical course, the immunologic abnormalities, and the genetic aspects of ALPS, the accumulated experience in diagnosis, treatment, and follow-up of patients and relatives has generated a "road map" that can be used as a guide for their care. As examples, the appreciation that manifestations of lymphoproliferation usually subside over time has allowed a "wait-and-see" approach in many patients who might previously have been treated aggressively. The appreciation that these patients are at increased risk for malignancies has mandated the adoption of careful and lifelong follow-up. Future efforts directed at careful clinical follow-up and scientific investigation are required to learn more about the incidence and natural history of ALPS, therapeutic interventions directed at altering the consequences of TNFRSF6 mutations, and the identification of other genetic and environmental factors that may have a role in the pathogenesis of ALPS.

Apoptosis↗

Detection of intracellular phosphorylated STAT-1 by flow cytometry.

We have applied flow cytometry to the investigation of interferon-gamma activation of human monocytes. This approach uses monoclonal antibodies that distinguish between the native and phosphorylated forms of STAT-1. It enables rapid and quantitative assessment of STAT-1 phosphorylation on a discrete cell basis and is both more sensitive and less time consuming than immunoblotting. Furthermore, it allows for discrimination between a mixture of cells that differ in their response to interferon-gamma. This approach should allow for the evaluation of different intracellular signaling pathways using a combination of monoclonal reagents that are specific for native and activation modified proteins. Application of this form of testing should prove valuable in screening for signaling defects in selected patients with recurrent infections. In addition, this technique should permit dissection of a full range of cellular signaling pathways at the protein level.

DNA-Binding Proteins↗

The role of Fas and related death receptors in autoimmune and other disease states.

The Fas receptor, also known as APO-1 or CD95, has emerged as a key initiator of apoptotic programmed cell death in a variety of cell types. CD4(+) T cells are unique in their ability to commit "suicide" by stimulating their own Fas receptors with secreted or membrane-bound Fas ligand. This takes place in the setting of repeated stimulation with T-cell antigens and is thought to be a mechanism for controlling the expansion of T cells during viral infections and autoimmune disease states. T cells can also trigger apoptosis in B cells, macrophages, and other cell types through Fas ligand. These interactions negatively regulate the immune system but can also contribute to immunopathology, as occurs in Fas-mediated damage of target tissues in hepatitis and other organ-specific autoimmune diseases. The dual role of Fas in the immune response complicates the understanding of its role in disease states and may limit its potential as a therapeutic target. Despite the many roles of Fas in immunoregulation, findings in experimental mouse strains and human patients with genetic deficiencies in the Fas pathway have shown that the main result of disrupting this pathway in vivo is systemic autoimmunity and a predisposition toward lymphoid malignancies. The role of Fas in various cell types and the lessons we have learned from Fas-deficient patients with the autoimmune lymphoproliferative syndrome will be discussed.

Animals↗

Autoimmune lymphoproliferative syndrome with defective Fas: genotype influences penetrance.

Autoimmune lymphoproliferative syndrome (ALPS) is a disorder of lymphocyte homeostasis and immunological tolerance. Most patients have a heterozygous mutation in the APT1 gene, which encodes Fas (CD95, APO-1), mediator of an apoptotic pathway crucial to lymphocyte homeostasis. Of 17 unique APT1 mutations in unrelated ALPS probands, 12 (71%) occurred in exons 7-9, which encode the intracellular portion of Fas. In vitro, activated lymphocytes from all 17 patients showed apoptotic defects when exposed to an anti-Fas agonist monoclonal antibody. Similar defects were found in a Fas-negative cell line transfected with cDNAs bearing each of the mutations. In cotransfection experiments, Fas constructs with either intra- or extracellular mutations caused dominant inhibition of apoptosis mediated by wild-type Fas. Two missense Fas variants, not restricted to patients with ALPS, were identified. Variant A(-1)T at the Fas signal-sequence cleavage site, which mediates apoptosis less well than wild-type Fas and is partially inhibitory, was present in 13% of African American alleles. Among the ALPS-associated Fas mutants, dominant inhibition of apoptosis was much more pronounced in mutants affecting the intracellular, versus extracellular, portion of the Fas receptor. Mutations causing disruption of the intracellular Fas death domain also showed a higher penetrance of ALPS phenotype features in mutation-bearing relatives. Significant ALPS-related morbidity occurred in 44% of relatives with intracellular mutations, versus 0% of relatives with extracellular mutations. Thus, the location of mutations within APT1 strongly influences the development and the severity of ALPS.

Alleles↗

A pilot study of low-dose fludarabine in membranous nephropathy refractory to therapy.

BACKGROUND: Lymphocytes are believed to play a role in the induction and perpetuation of membranous nephropathy. Fludarabine is a purine nucleoside analog with selective activity against both dividing and resting lymphocytes. We evaluated the tolerance, toxicity, pharmacokinetics, immunologic, and clinical effects of fludarabine in patients with membranous nephropathy in an single arm pilot study. PATIENTS AND METHODS: Eight patients with idiopathic (n = 7) or lupus (n = 1) membranous nephropathy who had failed high-dose prednisone (n = 8) and/or alkylating agents (n = 2), or cyclosporine (n = 1) were treated with 6-monthly cycles of fludarabine (cycles 1-2, 20 mg/m2/day x 2 days, cycles 3-6, 20 mg/m2/day x 3 days). Mean proteinuria was 9 g/day with a mean duration of disease of 25 months (range 12-48). Proteinuria, GFR and effective renal plasma flow were compared before and after completing the treatment. RESULTS: Seven patients completed the protocol. CD3, CD4, CD8 and B cell counts decreased by 53%, 46%, 61% and 84%, respectively, at the end of treatment and remained at lower than pretreatment levels 6 months after completing the trial. Despite lymphopenia, serum immunoglobulin levels remained unchanged. Both naive (CD45RA+) and memory CD4+ T cells (CD45RO+) were reduced (naive > memory). Proteinuria decreased by > or = 50% in 5 out of 7 patients (p = 0.11). Filtration fraction improved in all patients with decreased filtration fraction at baseline. The only side-effect observed was one episode of acute bacterial sinusitis that responded promptly to antibiotic therapy. CONCLUSION: We conclude that low-dose fludarabine treatment in patients with membranous nephropathy is well tolerated and results in significant lymphopenia involving B more than T cells. In this pilot study improvement in proteinuria and filtration rate were observed. Additional studies are required to determine the optimal dose and clinical efficacy of fludarabine.

Adult↗

Histamine potently suppresses human IL-12 and stimulates IL-10 production via H2 receptors.

IL-12 and IL-10, respectively, stimulate Th1 and Th2 immune responses. The development of some allergic reactions, infections, and tumors are associated with excessive histamine production and a shift toward Th2 responses. Here we address the possibility that this association is causally linked, at least in part, to modulation of IL-12 and IL-10 production by histamine. We report that histamine dose-dependently inhibited the secretion of human IL-12 (p70) and increased the production of IL-10 in LPS-stimulated whole blood cultures. These effects of histamine were antagonized by cimetidine, an H2 receptor antagonist, but not by selective H1 and H3 receptor blockers, and were mimicked by an H2 receptor agonist. The effects of histamine on IL-12 and IL-10 secretion were independent of endogenous secretion of IL-10 or exogenous addition of IL-12, while Ro 20-1724, a phosphodiesterase inhibitor, potentiated the effects of histamine on IL-12 and IL-10 production, implicating cAMP in its actions. Similar modulatory effects of histamine on IL-12 and IL-10 production, which were reversed by the H2 antagonist cimetidine, were observed in PBMC and isolated monocytes stimulated by Staphylococcus aureus Cowan strain 1 and LPS, respectively. Thus, histamine, via stimulation of H2 receptors on peripheral monocytes and subsequent elevation of cAMP, suppresses IL-12 and stimulates IL-10 secretion, changes that may result in a shift of Th1/Th2 balance toward Th2-dominance. This may represent a novel mechanism by which excessive secretion of histamine potentiates Th2-mediated allergic reactions and contributes to the development of certain infections and tumors normally eliminated by Th1-dependent immune mechanisms.

Adult↗

Intestinal lymphangiectasia, a disease characterized by selective loss of naive CD45RA+ lymphocytes into the gastrointestinal tract.

Intestinal lymphangiectasia (InL) is a disease characterized by hypoproteinemia and lymphocytopenia resulting from blocked intestinal lymphatics and loss of lymph fluid into the gastrointestinal tract. This leads to immunologic abnormalities including hypogammaglobulinemia, skin anergy and impaired allograft rejection. In the present study, we evaluated whether the above immunologic abnormalities are secondary to a quantitative or qualitative disorder of T cells. In initial studies we demonstrated that adult InL patients' peripheral blood contain strikingly (and significantly) reduced numbers of CD4+/CD45RA+ T cells, whereas the numbers of CD4+/CD45RO+ T cells were only moderately (and not significantly) reduced. In addition, the CD4+/CD45RO+ T cell population contained an increased percentage of highly differentiated and previously sensitized cells, as demonstrated by decreased CD27 and CD31 expression and increased HLA-DR and CD69 expression. In subsequent functional studies, we showed that the InL CD4+/CD45RO+ T cells, when stimulated in vitro, proliferate fivefold less than control CD4+/CD45RO+ T cells and produce fourfold more IL-4 and threefold less IFN-gamma and IL-2. Thus, this cytokine production profile also reflects the highly differentiated nature of the residual cell population. Overall, these studies provide new information on the trafficking of naive/mature and Th1/Th2 T cell populations in this disease model.

Adult↗

A pilot study of 2-chloro-2'-deoxyadenosine in the treatment of systemic lupus erythematosus-associated glomerulonephritis.

OBJECTIVE: To determine the safety and tolerability, as well as the clinical and immunologic effects, of 2-chloro-2'-deoxyadenosine (2-CdA) in patients with systemic lupus erythematosus-associated glomerulonephritis. METHODS: In a phase I study, 12 patients with proliferative lupus nephritis received 2-CdA either in weekly escalating intravenous treatments (0.15 mg/kg/week x 4, 0.1875 mg/kg/week x 4, 0.225 mg/kg/week x 4; n = 5) or in a continuous 7-day infusion (0.05 mg/kg/day; n = 7). Safety, renal improvement, and immunologic effects were evaluated for 12 months. RESULTS: Patients treated with 2-CdA showed peripheral lymphocyte depletion without a significant reduction in neutrophil, monocyte, or platelet numbers or hematocrit levels. Naive and memory T cells were decreased, as were lymphocytes with markers of early and late activation. Peripheral B cell depletion was not associated with significant decreases in serum immunoglobulin levels. Continuous infusion induced better clinical responses than weekly infusions, as evidenced by 1) the percentage of patients showing complete response (43% versus 0%), 2) the percentage with at least 50% reduction in proteinuria (43% versus 20%), 3) the percentage with at least a 50% reduction in urinary dysmorphic red cells (57% versus 0%), and 4) the percentage in whom cellular casts disappeared (43% versus 0%). Several infections occurred; these responded to standard antibiotic therapy. CONCLUSION: In this pilot study, 2-CdA was safely administered to 12 patients with lupus nephritis. It induced prolonged reductions in lymphocyte populations and may be efficacious in selected patients with lupus nephritis when administered as a continuous infusion.

Adult↗

Reduction in HTLV-I proviral load and spontaneous lymphoproliferation in HTLV-I-associated myelopathy/tropical spastic paraparesis patients treated with humanized anti-Tac.

Human T-lymphotropic virus type I (HTLV-I)-associated myelopathy/tropical spastic paraparesis (HAM/TSP) is a neurological disease that results from an interaction of retroviral infection and immune activation. In this study, five doses (1 mg/kg) of humanized anti-Tac antibody were administered to 9 HAM/TSP patients at weeks 0, 2, 6, 10, and 14. Preliminary immunological studies on HAM/TSP patients treated with humanized anti-Tac indicate that there is a selective down-regulation of activated T cells and a decrease in the HTLV-I viral load in peripheral blood lymphocytes, most likely through the selective removal of HTLV-I-infected, activated CD4+ lymphocytes.

Antibodies↗