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Biomedical subjects

A Leow

Publications and source records attributed to A Leow.

11 recordsLinked to original sources

Brain structural mapping using a novel hybrid implicit/explicit framework based on the level-set method.

This paper presents a novel approach to feature-based brain image warping, by using a hybrid implicit/explicit framework, which unifies many prior approaches in a common framework. In the first step, we develop links between image warping and the level-set method, and we formulate the fundamental mathematics required for this hybrid implicit/explicit approach. In the second step, we incorporate the large-deformation models into these formulations, leading to a complete and elegant treatment of anatomical structure matching. In this latest approach, exact matching of anatomy is achieved by comparing the target to the warped source structure under the forward mapping and the source to the warped target structure under the backward mapping. Because anatomy is represented nonparametrically, a path is constructed linking the source to the target structure without prior knowledge of their point correspondence. The final point correspondence is constructed based on the linking path with the minimal energy. Intensity-similarity measures can be naturally incorporated in the same framework as landmark constraints by combining them in the gradient descent body forces. We illustrate the approach with two applications: (1) tensor-based morphometry of the corpus callosum in autistic children; and (2) matching cortical surfaces to measure the profile of cortical anatomic variation. In summary, the new mathematical techniques introduced here contribute fundamentally to the mapping of brain structure and its variation and provide a framework that unites feature and intensity-based image registration techniques.

Algorithms↗

Displacement of linker for activation of T cells from the plasma membrane due to redox balance alterations results in hyporesponsiveness of synovial fluid T lymphocytes in rheumatoid arthritis.

The T lymphocytes that reside in the synovium of the inflamed joints in patients with rheumatoid arthritis display severe hyporesponsiveness upon antigenic stimulation, which is probably due to their constant subjection to high levels of oxidative stress. Here we report that the synovial fluid T lymphocytes exert severely impaired phosphorylation of the adaptor protein linker for activation of T cells (LAT), a crucial component of the TCR-mediated signaling pathways. In healthy T lymphocytes, LAT is a membrane-bound protein and becomes phosphorylated by zeta-associated protein of 70 kDa (ZAP-70) upon TCR engagement. The molecular basis underlying the deficient phosphorylation of LAT and consequently the hyporesponsiveness of the synovial fluid T lymphocytes lies in the membrane displacement of LAT. We demonstrate that the subcellular localization of LAT is sensitive to changes in the intracellular levels of the antioxidant glutathione. The membrane anchorage of LAT, and consequently the phosphorylation of LAT and the cellular activation of the synovial fluid T lymphocytes upon TCR engagement, is restored in synovial fluid T lymphocytes after supplementation of the intracellular glutathione levels with N-acetyl-l -cysteine. These data suggest a role for the membrane displacement of LAT in the hyporesponsiveness of the synovial fluid T lymphocytes as a consequence of oxidative stress.

Adaptor Proteins, Signal Transducing↗

Treatment with monoclonal anti-tumor necrosis factor alpha antibody results in an accumulation of Th1 CD4+ T cells in the peripheral blood of patients with rheumatoid arthritis.

OBJECTIVE: In rheumatoid arthritis (RA), treatment with tumor necrosis factor alpha (TNFalpha) binding agents has proven to be highly effective. Downregulation of the proinflammatory cytokine cascade and a reduced migration of leukocytes into the joints have been proposed as modes of action of TNFalpha blockade. We investigated whether alterations in the number of circulating pro- and antiinflammatory T cell subsets contribute to the therapeutic effect of monoclonal antibodies (mAb) against TNFalpha in RA patients. METHODS: Phenotypic analysis of peripheral blood T cell subsets was performed on blood from RA patients before and after treatment with an anti-TNFalpha mAb. RESULTS: An accumulation of primed CD45RA- T cells of both the CD4+ and the CD8+ T cell population was seen shortly after treatment. Most notably, within the CD4+,CD45RA- T cell subset, the number of interferon-gamma-producing T cells was significantly increased after anti-TNFalpha mAb treatment, resulting in a significant rise in the Th1:Th2 ratio. In addition, an increase in the number of CD4+ T cells expressing the homing receptor CD49d in high density was observed after treatment, which correlated positively with the increase in the Th1:Th2 ratio. Conclusion. We show that the Th1:Th2 ratio in the peripheral blood is raised by anti-TNFalpha mAb treatment.

Adult↗

Expression of the thioredoxin-thioredoxin reductase system in the inflamed joints of patients with rheumatoid arthritis.

OBJECTIVE: To examine the expression of the thioredoxin (TRX)-thioredoxin reductase (TR) system in patients with rheumatoid arthritis (RA) and patients with other rheumatic diseases. METHODS: Levels of TRX in plasma and synovial fluid (SF) were measured using enzyme-linked immunosorbent assay. Cellular distribution of TRX was determined by flow cytometry and histochemistry. Cellular expression of TR was studied by in situ messenger RNA (mRNA) hybridization. The effect of oxidative stress and tumor necrosis factor alpha (TNF alpha) on TRX expression by cultured rheumatoid fibroblast-like synoviocytes was studied. RESULTS: Significantly increased TRX levels were found in the SF from 22 patients with RA, when compared with plasma levels in the same patients (P < 0.001) and compared with SF TRX levels in 15 patients with osteoarthritis (P < 0.001), 13 patients with gout (P < 0.05), and 9 patients with reactive arthritis (P < 0.0001). The presence of TRX could be demonstrated within the SF-derived mononuclear cells and synovial tissue (ST) of RA patients. Concordantly, expression of TR mRNA was observed in the ST of these patients. Stimulation of synovial fibroblast-like synoviocytes with either H2O2 or TNF alpha induced an increase in the production of TRX. CONCLUSION: The data demonstrate significantly increased concentrations of TRX in the SF and ST of RA patients when compared with the levels in patients with other joint diseases. Evidence is presented that the local environment in the rheumatic joint contributes to increased TRX production. Based on its growth-promoting and cytokine-like properties, it is proposed that increased expression of TRX contributes to the disease activity in RA.

Aged↗

CD28 co-stimulation is intact and contributes to prolonged ex vivo survival of hyporesponsive synovial fluid T cells in rheumatoid arthritis.

In rheumatoid arthritis (RA), T cells in the inflamed joint are considered to play a crucial role in the pathogenesis. However, despite the fact that synovial T cells have an activated memory phenotype, they are functionally suppressed upon combined CD3 and CD28 stimulation. Here, we analyzed the contribution of both CD3 and CD28 to the hyporesponsiveness of synovial T cells in RA. In contrast to the low CD3 responsiveness of synovial fluid (SF) T cells compared to peripheral blood (PB) T cells, the CD28 co-stimulatory response was observed to be unaffected. Hyporesponsiveness of SF T cells has previously been associated with decreased levels of intracellular glutathione (GSH), an antioxidant and regulator of the intracellular redox state. Treatment of SF T cells with N-acetylcysteine, an antioxidant and replenisher of GSH, selectively improved CD3-induced responses, while leaving CD28 responsiveness unaffected. These data show that the CD3 pathway is highly sensitive to intracellular GSH alterations, whereas CD28 responsiveness is relatively refractory. Furthermore, in support for a functional role of CD28 co-stimulation, it was demonstrated that CD28 ligation acted in synergy with the IL-2 receptor gamma chain signaling cytokine IL-15 in the enhancement of the ex vivo survival of SF T cells. These data indicate that CD28 co-stimulatory capacity of SF T cells, in contrast to CD3 stimulation, remains intact despite an altered intracellular redox state. Thereby, CD28 stimulation may contribute to the persistence of T cells at the site of inflammation, which might be of relevance in the pathogenesis of RA.

Arthritis, Rheumatoid↗

Yersinia enterocolitica: a cause of chronic polyarthritis.

To investigate the role of Yersinia persistence in chronic undifferentiated arthritis, two patients who had chronic undifferentiated polyarthritis and circulating IgA and IgG antibodies to Yersinia outer proteins were studied. Immunofluorescence using antibodies directed against Yersinia adhesin A was performed on colonic and synovial tissue. Synovial tissue T cells were cloned aspecifically and screened for their proliferative responses to Yersinia enterocolitica. Furthermore, a Yersinia-specific polymerase chain reaction (PCR) was performed on synovial tissue. Both patients were found to have Yersinia antigens in colonic and synovial tissue. Y. enterocolitica-positive T-cell clones were grown from the synovial tissue: 4 CD4+ clones of 37 clones from patient 1 and 6 CD4+ clones of 53 clones from patient 2. Yersinia-specific PCR products were not detected in the synovial tissue specimens. The results support the hypothesis that an immune-mediated response to Yersinia antigens may play an important role in the pathogenesis of chronic undifferentiated arthritis.

Adhesins, Bacterial↗

Joint-derived T cells in rheumatoid arthritis proliferate to antigens present in autologous synovial fluid.

The histopathological features of rheumatoid joint-inflammation suggest that an antigen-driven activation of T cells plays a central role in the onset and/or perpetuation of the inflammatory process. However, the disease-associated antigens responsible for the activation of T cells in the joint are unknown. In this project we study the response of IL-2 expanded T-cell lines from the synovial fluid (SF) of rheumatoid arthritis (RA) patients against autologous SF in a proliferation assay. Sixteen out of 32 RA patients were found to have CD4+ T cells that proliferate in response to autologous SF. The presence of T cells able to respond to SF antigens in inflamed joints suggests that these T cells play an active role in the pathogenesis of RA. T cell clones reactive to autologous SF were isolated from SF-derived T-cell lines of two RA patients. All clones were of the CD4+, CD8-, alpha/beta+ phenotype. SF-reactivity of T-cell clones from the DR4/DR12-positive RA patient was restricted via the Dw4 subtype of DR4. SF reactivity of T cells of the DR12/DR15 patient was DP-restricted. Some of the T-cell clones responded specifically to autologous and not to allogeneic SF, whereas others revealed responsiveness against a limited number of allogeneic SF samples. The (restricted) specificity of T cells towards autologous SF antigens is indicative for heterogeneity of the epitopes recognized and argues against ubiquitous nonpolymorphic joint constituents as the relevant antigens recognized by the SF-autoreactive T cells.

Arthritis, Rheumatoid↗

Inflamed joints of patients with rheumatoid arthritis contain T cells that display in vitro proliferation to antigens present in autologous synovial fluid. Functional analysis on the basis of synovial-fluid-reactive T-cell clones and lines.

The immunopathology of inflamed joints in patients with RA is thought to result from an antigen-driven T-cell response. The antigen(s) responsible for the activation of synovial T cells, however, are as yet unidentified. In this study, we tested SF as a potential source of (auto)antigen(s). Five of 15 IL-2-expanded T-cell lines generated from SF cells of RA patients displayed a proliferative response to autologous SF. Five CD4+CD8-alpha beta TCR+SF-reactive T-cell clones obtained from responder T-cell lines were studied in more detail. Three T-cell clones from one RA patient were found to recognize epitopes in autologous SF in the context of DR4(Dw4), and two T-cell clones of another RA patient responded to autologous SF in the context of the HLA-DPB1*0401 gene product. The two DP-restricted clones and one of the DR-restricted clones did not proliferate to 50 SF samples of other RA patients, whereas the remaining DR-restricted clones responded to one allogeneic sample. Sequence analysis demonstrated that the latter clones expressed identical V beta 6.9 + TCR beta chains. This was also found for the (V beta 19+) DP-restricted clones. Proliferation of SF-reactive T cells was not only obtained with SF of the joint that had contained the T cells, but also with autologous SF of other affected joints. Together, these findings indicate that epitopes able to stimulate synovial T cells differ among RA patients, but may be similar within multiple joints of an individual patient. The presence of T cells able to respond to SF antigens in inflamed joints suggests that these T cells play an active role in the pathogenesis of RA.

Amino Acid Sequence↗

Activated synovial T cell clones from a patient with rheumatoid arthritis induce proliferation of autologous peripheral blood-derived T cells.

In order to investigate cellular interactions involved in the development of human autoimmune disease, a synovial fluid-derived T cell clone reactive with mycobacterial antigens, termed k38, was employed as a stimulus for autologous peripheral blood mononuclear cells (PBMC). Stimulator cells were used either activated with immobilized OKT3 mAb or in a resting state. Activated k38 cells triggered PBMC to proliferate. A T cell line prepared by coculturing autologous PBMC with irradiated activated k38 cells proliferated upon stimulation with activated k38 cells in the presence of PBMC as a source of accessory cells, as did T cell clones that were subsequently isolated from this line. Blocking studies revealed that proliferation of the anti-k38 line and anti-k38 clones in response to stimulation with clone k38 could be inhibited by monoclonal antibodies against a variety of cellular determinants including HLA class I and LFA-1 beta. It was demonstrated that the antigen reactivity of clone k38 was modulated by the presence of anti-k38 clones. These data provide a model for understanding the cellular interactions that may take place in vivo in the evolution of the chronic synovial inflammatory process.

Antibodies, Monoclonal↗

Effects of inoculation with attenuated autologous T cells in patients with rheumatoid arthritis.

Injection of attenuated autoimmune T cells, T cell vaccination, has been used successfully in the prevention and treatment of experimental animal autoimmune disease. In order to determine whether such a procedure might be applied in rheumatoid arthritis (RA), a phase I study was conducted in thirteen RA patients with a mean disease duration of 12.8 years. All patients received a subcutaneous injection of attenuated autologous T lymphocytes from a CD4 positive clone (n = 4) or line (n = 9) isolated from synovial tissue (n = 3) or synovial fluid (n = 10). No toxic side effects were observed. On the average the patients showed a slight decrease in disease activity which was most marked at 8 weeks after the injection. Specific immune reactivity against the injected T cells was not detected, with the possible exception of one patient who was vaccinated with a clone selected in vitro with antigen and whose disease had begun one year earlier. In this patient a clear decrease in disease activity occurred, which was associated with a decrease in mitogen-induced proliferation of her peripheral blood mononuclear cells and in titres of serum rheumatoid factors. The results of this study show that inoculation of RA patients with autologous T cells is technically feasible and non-toxic, and may be associated with clinical and immunological effects. The data suggest that the potential of T cell vaccination should be further explored in diseases with defined antigen reactivity.

Adult↗