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Biomedical subjects

G F del Prete

Publications and source records attributed to G F del Prete.

4 recordsLinked to original sources

The autoimmune infiltrate of Basedow's disease: analysis of clonal level and comparison with Hashimoto's thyroiditis.

The availability of high efficiency T-cell cloning techniques recently allowed the identification and characterization of clones derived from the thyroid infiltrate of patients with autoimmune thyroid diseases. Phenotypical and functional analysis of T-cell clones obtained from thyroid infiltrates of patients with Hashimoto's thyroiditis show that most of them are progenies of CD8+ cytolytic T cells with natural killer activity. This phenomenon, of potential importance in tissue damage, is markedly less pronounced in Basedow's disease glands. In both Hashimoto's thyroiditis and Basedow's disease only a minority of clones appear to be specific for autologous thyroid cells and most of them are potent interferon-gamma producers, while increased secretion of tumor necrosis factor-alpha is observed only in Hashimoto's thyroiditis. In contrast with normal lymphoid tissue, only very few T cell clones derived from both BD and HT infiltrates were able to produce detectable amounts of IL-4, suggesting that most of the thyroid-infiltrating T cells represent quite homogeneous populations of Th1-type "inflammatory" T cells. This peculiar potential of lymphokine secretion could play a role in the expression and/or maintenance of thyroid autoimmunity and thyroid functional damage.

CD4-Positive T-Lymphocytes↗

Cytolytic T lymphocytes with natural killer activity in thyroid infiltrate of patients with Hashimoto's thyroiditis: analysis at clonal level.

T Lymphocytes from thyroid infiltrates and peripheral blood (PB) of 3 patients with Hashimoto's thyroiditis (HT) were cloned using a microculture system previously shown to allow the clonal expansion of virtually all PB T lymphocytes from normal individuals. The phenotypic and functional features of a total number of 153 clones from thyroid infiltrates and 206 clones from PB were examined and compared with those of 272 clones derived from normal PB and spleens. The majority of clones derived from thyroid infiltrates of patients with HT had the cytotoxic/suppressor (T8+) phenotype, whereas the majority of clones from PB expressed the helper/inducer (T4+) phenotype. In addition, a consistent proportion (25%) of clones derived from PB of one patient had a phenotype (T3+T4-T8-) that was only occasionally found on clones obtained from PB or spleens of normal subjects. Most clones derived from both PB and thyroid infiltrates of the patients with HT had cytolytic activity, assessed by a lectin-dependent cytolytic assay against the murine P815 tumor cell line. The high frequency of cytotoxic T cells in thyroid infiltrates was related to the increased proportion of T8+ cells, whereas enhanced percentages of cytotoxic cell precursors with T4+ and T3+T4-T8- phenotypes primarily accounted for the high frequency of cytolytic T cells in the PB of the same patients. Many cytolytic T cell clones derived from thyroid infiltrates also had natural killer activity against human K562 and MOLT-4 target cells. These data provide the first functional analysis of T lymphocytes infiltrating the thyroid gland in patients with HT and suggest that the high proportions of cytolytic T cell precursors found in both thyroid infiltrates and PB of these patients may be of importance in determining the tissue damage in thyroid autoimmune disease.

Antibodies, Monoclonal↗

Surface markers and function of circulating thyroid autoantibody-producing cells.

The in vitro synthesis of antithyroglobulin (anti-Tg) and antithyroid microsomal (anti-M) autoantibodies by peripheral blood mononuclear cells (MNC) from patients with autoimmune thyroid diseases was investigated using sensitive immunoradiometric assays. Cultures were carried out in the presence or in the absence of pokeweed mitogen (PWM). Thyroid autoantibodies were undetectable in supernatants of MNC cultures from 9 normal subjects. Supernatants of MNC cultured without PWM had detectable levels of anti-Tg and anti-M in 5 (19.3%) and in 2 (7.7%) of 26 patients with autoimmune thyroid diseases, respectively. In the presence of PWM, a marked increment in the antibody concentrations occurred in all but 1 of these cultures, and the number of positive cultures increased to 13 (50.1%) for anti-Tg and to 15 (57.7%) for anti-M. Studies of MNC fractions depleted of T lymphocytes (non-T cells) were carried out on selected patients showing antibody synthesis only after PWM stimulation. Autoantibody production was not found with non-T cells, but the effect of the mitogen was restored by readdition of T cells. Irradiation (1000 rad) of T cells before coculturing significantly enhanced autoantibody production. With this model no significant functional difference was found between autologous and allogenic T cells from thyroid autoimmune disease patients or from normal subjects. The cells involved in PWM-driven thyroid autoantibody synthesis, as defined by depletion studies, were lymphocytes bearing DR antigens and surface immunoglobulin G (IgG) without detectable surface immunoglobulin M (IgM). Depletion from MNC suspensions of Tg-binding cells abolished PWM-stimulated anti-Tg production, but did not alter the synthesis of anti-M. Further studies were carried out on MNC from a single patient with Hashimoto's thyroiditis, whose non-T cells consistently produced large amounts of anti-M and total IgG in the absence of PWM. The addition of PWM to these unfractionated MNC slightly increased the production of anti-M, but inhibited antibody synthesis after depletion of T lymphocytes. Interestingly, the addition of autologous T lymphocytes to non-T cells inhibited the spontaneous synthesis of anti-M. These data indicate that in vitro synthesis of anti-Tg and anti-M by MNC may be frequently induced by stimulation with PWM in patients with thyroid autoimmune disorders. PWM-stimulated synthesis of thyroid autoantibodies appears to be T-cell dependent and modulated by radiosensitive T lymphocytes. The cells responsible for PWM-dependent thyroid autoantibody synthesis are B lymphocytes with surface membrane IgG and have receptors specific for the autoantigen.(ABSTRACT TRUNCATED AT 400 WORDS)

Adult↗