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Biomedical subjects

M Ricci

Publications and source records attributed to M Ricci.

At least 181 records · Page 10Linked to original sources

Signet-ring cells in advanced gastric cancer. A clinical, pathological and histochemical study.

A pathological and histochemical study on the presence of signet-ring cells (SRC) in 108 advanced gastric cancer (AGC) has been evaluated. According to Laurén's classification, 59 were of intestinal (I) and 49 of diffuse (D) type. The amount of SRC seems to be a prognostic parameter in D-carcinoma: the 5-year survival rate was 49% and 22% in cases with 1-24% and 75-100% SRC, respectively. Histochemically, in our series of SRC D-carcinoma the quality of mucin secretion of SRC closely resembled the goblet cells of intestinal metaplasia. The histogenetic origin of D-gastric carcinoma was discussed.

Adenocarcinoma, Mucinous↗

In vitro IgE synthesis induced by human T cell clones in normal B cells and its suppression by heterogenous T cell populations.

Thirty-four out of 119 human T cell clones established from tonsillar or peripheral blood T cell suspensions of 3 nonallergic individuals were able to induce normal B cells to synthesize remarkable amounts of IgE in vitro. The activity of these clones was apparently mediated by triggering of the monomorphic molecular complex CD3 immediately before or during their incubation with the target B cells. The addition to the cultures of mitogen-stimulated autologous unfractionated T cells inhibited in a dose-dependent fashion, the T cell clone induced IgE, but not IgG, synthesis.

Adult↗

Enhanced production of gamma-interferon by thyroid-derived T cell clones from patients with Hashimoto's thyroiditis.

T lymphocytes from thyroid infiltrate and peripheral blood (PB) of four patients with Hashimoto's thyroiditis (HT) were analysed at clonal level for their ability to secrete interleukin 2 (IL-2) and gamma-interferon (gamma-IFN). As controls, T cell clones from PB of four normal donors and from spleen of two trauma victims were used. While no abnormality was found in the capacity to produce IL-2, the proportion of gamma-IFN-producing (IFN-P) T cell clones derived from HT infiltrates was significantly higher (P less than 0.0005) than that of IFN-P clones derived from normal or patient PB. Most of CD4+ and CD8+ IFN-P clones from thyroid infiltrates, as well as a proportion of CD4+ PB-derived clones of patients with HT, released higher amounts of gamma-IFN than control clones. A relationship could be demonstrated between high gamma-IFN production and natural killer (NK) activity in T cell clones from thyroid and PB of HT patients. In fact, the percentage of IFN-P clones with NK potential (NK+) was remarkably higher (P less than 0.0005) in thyroid infiltrates than in normal spleen or PB. The proportion of IFN-P NK+ clones from patient PB was also significantly increased (P less than 0.02) but, unlike thyroid-derived clones in which the majority of IFN-P NK+ clones were CD8+, most PB-derived IFN-P NK+ clones from the same patients expressed the CD4+ phenotype. Almost all thyroid NK+ clones could be triggered to produce more gamma-IFN, while gamma-IFN synthesis by NK-negative thyroid clones was comparable to that of control clones. In view of the multiple effects ascribed to gamma-IFN in the cascade of events leading to immune responses, the abnormal potential to gamma-IFN secretion shown by intrathyroidal T lymphocytes may be of importance in the pathogenesis of autoimmune thyroiditis.

Adult↗

Clonal analysis of T lymphocytes in spleens from patients with Hodgkin's disease. Frequent occurrence of unusual T4-positive cells which co-express cytolytic activity and production of interleukin-2.

T-lymphocyte populations isolated from spleens of untreated patients with Hodgkin's disease (HD) were grown by combining limiting dilution techniques and an assay system that allows clonal proliferation of virtually all human T cells. Under these conditions, high proportions of splenic T lymphocytes (50-80%) underwent clonal expansion, so that the set of clones obtained could be considered representative of the starting T-cell population. A total number of 229 clones from 6 HD spleens (3 uninvolved and 3 histologically involved by the disease) and 133 clones from 3 control spleens (obtained from otherwise healthy individuals, who underwent post-traumatic splenectomy) were examined for surface markers and tested in functional assays. One hundred and seventy-five clones from HD spleens and 75 clones from control spleens expressed the "helper/inducer" (T3+ T4+ T8-)phenotype, whereas as 54 clones from HD spleens and 58 control clones expressed the "cytotoxic/suppressor" (T3+T4-T8+) phenotype. As assessed by a non-specific lectin-dependent lytic assay, the proportion of HD clones displaying cytolytic activity was higher than that of cytolytic clones derived from control spleens. The majority of T4+ clones obtained from HD spleens (either uninvolved or histologically involved by the disease) were cytolytic, whereas only a small proportion (less than 10%) of T4+ clones derived from normal peripheral blood or spleens displayed cytolytic activity. The cytolytic potential of T4+ clones obtained from HD spleens did not reflect the activity of natural killer (NK) cells, since a minority of these clones exerted NK activity on K562 target cells. In addition, most of the T4+ cytolytic clones derived from HD spleens produced particularly high amounts of interleukin-2 (IL-2). These data indicate that T lymphocytes which concentrate in spleens of patients with HD consist at least in part of an infrequent T4+ cell subset co-expressing cytolytic activity and production of IL-2. These cells may reflect a cytotoxic reaction against unknown antigens associated with self class-II histocompatibility antigens.

Antigens, Differentiation, T-Lymphocyte↗

Frequent T4-positive cells with cytolytic activity in spleens of patients with Hodgkin's disease (a clonal analysis).

Purified T lymphocytes isolated from spleens of untreated patients with Hodgkin's disease (HD) were cloned by using a microculture system previously shown to allow clonal expansion of virtually all peripheral blood T lymphocytes. Cells were plated under limiting conditions with irradiated feeder cells and PHA. Interleukin 2 (IL 2)-containing supernatants were added 48 hr later. The phenotypic and functional characteristics of a total number of 221 clones derived from six different HD spleens were investigated and compared with those of 133 clones obtained from three spleens of otherwise healthy individuals who underwent posttraumatic splenectomy. The majority of T cell clones derived from HD spleens expressed the T4+ (helper/inducer) phenotype. However, further functional characterization showed that as much as 50% of these T4+ clones displayed cytolytic activity in a lectin-dependent lytic assay allowing detection of cytolytic cells of any specificity. In contrast, less than 10% T4+ clones derived from control spleens were cytolytic, as assessed by the same lectin-dependent lytic assay. The cytolytic potential of T4+ and T8+ clones established from spleens of patients with HD did not reflect the induction of lymphokine-activated killer cells, because only a minority of them displayed natural killer (NK) activity against NK-sensitive K562 and MOLT-4 cell lines. These findings indicate that T lymphocytes found in the spleens of patients with HD may represent, at least in part, the expansion of a subset present in small percentages among normal peripheral blood or spleen T lymphocytes, which is involved in a cytotoxic reaction.

Antigens, Differentiation, T-Lymphocyte↗

Analysis of the role of interferon-gamma, interleukin 2 and a third factor distinct from interferon-gamma and interleukin 2 in human B cell proliferation. Evidence that they act at different times after B cell activation.

Recombinant interferon-gamma (rIFN-gamma) was able to induce proliferation of human tonsillar B cells activated with suboptimal concentrations of anti-mu antibody. The B cell growth factor (BCGF) activity of rIFN-gamma was not due to substances contaminating the IFN-gamma preparation, nor was it mediated by factors released by T cells or large granular lymphocytes following activation by rIFN-gamma. The response of B cells to rIFN-gamma peaked on day 3 of culture and rapidly declined thereafter, whereas the response of parallel anti-mu-activated B cell cultures to recombinant interleukin 2 (rIL2) appeared on day 3, but continued at least until day 5. In addition, B cells responsive to rIFN-gamma could be at least in part separated from those responsive to rIL2, the former being primarily contained in B cell fractions enriched for high-density small B lymphocytes. Finally, the addition to anti-mu-stimulated B cell cultures of very low concentrations of rIFN-gamma potentiated the B cell proliferation promoted by rIL2. The simultaneous addition of monoclonal antibodies against IFN-gamma and T cell activation antigen to anti-mu-stimulated B cell cultures strongly reduced the B cell proliferative response promoted by three different crude BCGF preparations obtained by polyclonal T cell activation in mixed lymphocyte culture. However, the supernatant from a T cell clone (DP5/11) apparently free of IL2, which manifested a BCGF activity similar to that of rIFN-gamma, still maintained its ability to promote proliferation of anti-mu-activated B cells after complete removal of IFN-gamma. Taken together, our data indicate that although some T cell clones are able to produce a BCGF distinct from both IFN-gamma and IL2, these lymphokines account for most of the BCGF activity of supernatants obtained from polyclonal T cell populations. They also suggest that IFN-gamma and the BCGF distinct from IFN-gamma and IL2 act primarily in the earlier phases of B cell activation and potentiate the proliferative response of activated B cells to IL2.

Adjuvants, Immunologic↗

Human T cell clones can induce in vitro IgE synthesis in normal B cells regardless of alloantigen recognition or specificity for peculiar antigens.

A total number of 119 (98 CD 4+ and 21 CD 8+) T cell clones were established from tonsil and peripheral blood of three nonallergic individuals and examined for their ability to induce in vitro IgE synthesis in normal B cells. Following preactivation for 24 h with phytohemagglutinin, 34 clones (33 CD 4+ and 1 CD 8+) induced normal B cells to synthesize remarkable amounts of IgE in vitro. In contrast, equal numbers of T blasts of phytohemagglutinin-induced T cell lines obtained from unfractionated T lymphocyte suspensions of the same donors did not show such an effect. The in vitro IgE synthesis evoked by T cell clones was detectable between day 6 and 9 and peaked on day 12. Most clones maintained their ability to stimulate in vitro IgE synthesis in repeated assays over a 3-month period. The induction of IgE synthesis by cloned T cells did not reflect alloantigen recognition on target B cells, since T cell clones induced IgE synthesis in B cells from all randomly selected donors tested, including autologous B cells. Preincubation for 24 h with optimal stimulatory concentrations of anti-CD 3 (OKT 3) monoclonal antibody or its addition through the entire culture period also enabled T cell clones to stimulate de novo IgE synthesis in vitro in normal B cells. Virtually all the T cell clones active on IgE synthesis induced the in vitro production of remarkable amounts of IgM and IgG as well. These data indicate that several human T cell clones can induce normal B cells to synthesize immunoglobulin of different classes, including IgE, regardless of alloantigen recognition on target B cells or specificity for peculiar antigens. The activity of these clones was apparently mediated by triggering of the monomorphic molecular complex CD 3, immediately before or during the incubation of T cell clones with the target B cells.

Antigens, Differentiation, T-Lymphocyte↗

New trends on the pathogenetic aspects of allergic bronchial asthma.

The central role of IgE antibodies in allergic bronchial asthma (ABA) is not disputed any longer. Immunological mechanisms other than IgE-mediated reactions in the pathogenesis of ABA have not yet been definitely demonstrated. There is controversy as to whether IgG STS antibodies, probably IgG4, play a role in the disease process. There is no evidence to support the involvement of immune complexes. Anti-beta-2-adrenergic receptor autoimmune responses cannot be considered as responsible for the development of the disease at the present time. In the last few years a great effort has been made to understand the immunological mechanisms underlying the enhanced and long-standing IgE antibody production in atopic diseases. The results obtained in different laboratories, including our own, are in favor of a high responder status to allergen epitopes in a large proportion of atopics and suggest that a preferential expression of IgE isotype in the antibody responses may occur through different mechanisms. Of great interest is the recent demonstration of IgE-binding factors with IgE-potentiating and suppressive activity and of other related regulatory molecules and receptors. Progress has been recently achieved in the characterization of mediators responsible for the different pathological changes of ABA. A linkage between immediate IgE-mediated reactions, bronchial late-phase reactions (LPR) and chronic inflammation (CI) has been reported. It has been demonstrated that a cascade of mediators and cell interactions induce both LPR and CI. There is evidence of a close relationship between LPR-CI and nonspecific bronchial hyperreactivity. A better knowledge of pathogenetic mechanisms of ABA would open new perspectives in the therapy. A modulation of IgE antibody production can be attempted in different ways. At present a control of mediator release and of airway hyperreactivity can be achieved by several pharmacological interventions and by the avoidance of common and/or occupational allergens or pollutants.

Allergens↗

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↗

In vivo activated cytotoxic T cells in the thyroid infiltrate of patients with Hashimoto's thyroiditis.

High proportions of T8+ cells with inverted T4/T8 ratio were found in freshly isolated thyroid lymphocytes from patients with Hashimoto's thyroiditis. In addition, about one third of thyroid infiltrating cells expressed the TAC antigen, whereas in patient peripheral blood (PB) or normal lymphocytes from PB or lymphoid organs the percentage of TAC-positive cells was consistently lower than 10%. Following negative selection with OKT4 or OKT8 monoclonal antibodies and complement, TAC+ T cells were enriched in the T8+ cell population. Thyroid infiltrating T cells from two patients underwent two different cloning procedures. In the first, single T cells were initially activated with phytohaemagglutinin (PHA) and interleukin 2 (IL-2), in the other with recombinant IL-2 (rIL-2) alone. The majority of T cell clones obtained by initial PHA-stimulation (55-65%) had the T8+ phenotype, but the frequency of T8+ clones obtained by stimulating T cells with rIL-2 alone was even higher (78 & 71%, respectively). The majority of T8+ clones elicited by PHA (35/37 & 36/38) and all the T8+ clones (36/36 & 22/22) obtained from thyroid infiltrates with initial stimulation by rIL-2 displayed cytolytic activity. Most of cytolytic T8+ clones obtained from thyroid infiltrates with both cloning procedures, displayed NK activity against human K562 and MOLT-4 target cells, but not against a NK-resistant target, such as Raji cells. These data suggest that in Hashimoto's disease a considerable proportion of thyroid infiltrating T cells are in vivo activated T8+ cytolytic T cells with NK activity, which may be of importance in determining or maintaining the tissue damage of the target gland.

Adult↗

Autoantibodies to human nuclear antigen(s)-HNA-in connective tissue diseases and other disorders.

Autoantibodies reacting with nuclear antigen(s) on human cells (HNA) with weak or without reactivity on nuclei of other species have been found by the indirect immunofluorescence technique used in routine tests for the diagnosis of autoimmune diseases. Precipitin lines were obtained by counterimmunoelectrophoresis (CIE) only when human lymphocyte extracts were used and not with rabbit thymus acetone powder. By comparison with reference sera, the autoantibodies directed to HNA were found to be different from SSA/Ro antibodies and did not give the fluorescence pattern of anti nuclear mitotic apparatus (NuMA) antibodies on HEp-2 cells. The prevalence of sera with anti-HNA antibodies not associated with other antinuclear antibodies (ANA) is low (about 0.7% of ANA found in routine assay). In association with ANA of other specificities, the prevalence of anti-HNA antibodies, demonstrated after absorption of sera with rat liver acetone powder, was higher (about 1% of ANA positive sera). By treatment with physicochemical agents and enzymes, the HNA was found to be a DNA (glyco)-protein complex extractable with saline solution, resistant to 56 degrees C for 6 h and stable at pH values ranging from 3 to 10. Anti-HNA antibodies were found in patients with mild connective tissue diseases, but also in idiopathic interstitial pneumonia and in chronic hepatitis.

Adult↗