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Biomedical subjects

W Savino

Publications and source records attributed to W Savino.

At least 19 recordsLinked to original sources

Functional gap junctions in thymic epithelial cells are formed by connexin 43.

A multiparametric study was carried out to investigate the presence and possible role of communicating junctions in the thymus, particularly in the thymic epithelium, the major component of the thymic microenvironment. The presence of direct cell-cell communication mediated by gap junctions was demonstrated in human and murine thymic epithelial cells (TEC) by means of in situ and in vitro immunohistochemical labeling as well as in vitro fluorochrome injection and double whole-cell patch clamp experiments. Moreover, both immuno- and Northern blot studies revealed that the gap junction protein connexin 43 and its mRNA were present in TEC. Importantly, we showed that thymic endocrine activity, as ascertained by thymulin production, could be specifically down-modulated in vitro by a gap junction inhibitor, octanol. We also investigated the existence of gap junctions between TEC and thymocytes. In thymic nurse cells we were able to detect cell-cell communication, although only a minor percentage of epithelial/thymocyte pairs were coupled in a given moment. In contrast, intercellular communication was not detected between cultured phagocytic cells of the thymic reticulum and the respective rosetting thymocytes. We suggest that gap junctions formed by connexin 43 may represent a novel (and rather cell type-specific) pathway for intrathymic cellular communication, including TEC/TEC as well as possible TEC/thymocyte interactions.

Animals

Increased deposition of extracellular matrix components in the thymus gland of MDX mouse: correlation with the muscular lesion.

The present work describes the expression of extracellular proteins in the thymus and skeletal muscle of the X-linked dystrophic MDX mouse which corresponds to an experimental model for the human disease Duchenne muscular dystrophy. MDX dystrophic mice showed marked alterations in the thymic cytoarchitecture including cortical atrophy that was paralleled by denser epithelial cell network with intense immunolabelling for cytokeratins pair 8/18 and increased vascularization assessed with monoclonal antibody anti-desmin. Consistent augmentation of intrathymic extracellular matrix components (ECM) was observed especially at weaning and by the onset of disease. Interestingly, the amount of ECM elements in the gastrocnemius muscle of MDX wild-type dystrophic mice also showed a prominent difference as compared to age-matched non-dystrophic BALB/cAn animals. A marked but uneven overdeposition of reticulin and collagen fibres (type I, type IV), laminin and fibronectin were often present in the skeletal muscle of dystrophic mice, mostly around lesioned fibres. Alterations in both organs positively correlated with the degree of dystrophy thus suggesting that similar stimuli may be enhancing ECM production in both thymus and skeletal muscle. Although the thymus gland might not be directly involved in the development of the murine X-linked muscular dystrophy, it should be considered as a further target in this disease.

Animals

Extracellular matrix components of the mouse thymus microenvironment. IV. Modulation of thymic nurse cells by extracellular matrix ligands and receptors.

Extracellular matrix (ECM) proteins can influence cell migration and differentiation in a variety of cell systems. Within the thymus, these molecules are heterogeneously distributed, and their physiological role is poorly understood. This prompted us to carry out in vitro studies using the thymic nurse cell (TNC) model. We observed that fibronectin and laminin accelerate spontaneous in vitro release of thymocytes from TNC, whereas anti-ECM antibodies exhibited a blocking effect. Similar results were obtained with anti-ECM receptor reagents. Moreover, these antibodies abrogated in vitro reconstitution of TNC complexes and thymocyte adhesion to TNC-derived epithelial cultures. Our results indicate that lymphocyte traffic in TNC (comprising both entrance into and exit from the epithelial structure) is affected by interactions involving extracellular matrix ligands and receptors. In this respect, the dynamic analysis of thymic nurse cell complexes should be regarded as a relevant in vitro tool for functional studies of distinct adhesion molecules in intrathymic lymphocyte traffic.

Animals

Immunoreactivity of a cytokeratin-related polypeptide from adult Schistosoma mansoni.

A saline extract (SE) derived from living adult Schistosoma mansoni confers high levels of resistance to challenge infection in mice and rabbits. We have carried out a number of experiments to analyse the composition of SE and to define the proteins that are rapidly released from the parasite. One of these proteins, with apparent molecular mass of 62 kDa, is recognized by polyclonal and monoclonal antibodies raised against high molecular mass cytokeratins from human epidermal cells. Immunocytochemical studies revealed a tegumental staining using the anti-cytokeratin antibody. Moreover, sera from schistosomiasis patients, as well as those from animals immunized with SE, were able to recognize this 62 kDa polypeptide as shown by immunoblot assays. These results suggest the existence of cytokeratin-containing filaments in the schistosome.

Animals

Control of thymus physiology by peptidic hormones and neuropeptides.

Several immune-neuroendocrine interactions are known to occur both in primary and secondary lymphoid organs. Here, Mireille Dardenne and Wilson Savino review data obtained in humans and experimental animals showing that peptidic hormones and neuropeptides can influence the thymus pleiotropically. These mediators modulate thymic epithelial cells (TECs), affecting thymulin secretion, cytokeratin expression, production of extracellular matrix (ECM) proteins and cell growth. Interestingly, such neuroendocrine influences appear to be part of a bidirectional circuitry, since thymic-derived peptides also regulate the release of hormones from the pituitary and hypothalamus.

Animals

Endogenous IL-10 and IFN-gamma production controls thymic cell proliferation in mice acutely infected by Trypanosoma cruzi.

Thymocytes from mice with experimental Trypanosoma cruzi infection respond poorly to Con-A stimulation. However, the proliferative capacity of these cells is not impaired, as demonstrated by the fact that at high doses, exogenous rIL-2 restores thymidine uptake. This finding could be explained either by insufficient IL-2 production or by the appearance of inhibitory factors during T. cruzi infection. This paper shows that in response to Con A, IL-2 production is decreased in the model. Furthermore, the whole profile of cytokine production is modified, with a striking increase in IL-10, IFN-gamma, IL-4, IL-5 and IL-6 production. The results indicate that IL-10 plus IFN-gamma are responsible for the decrease in the Con A-induced proliferation since a normal proliferative response as well as normal IL-2 production can be restored if both cytokines are neutralized by adding their monoclonal antibodies (MoAbs). Evidence is provided also for an enhanced non-specific cytotoxicity of thymic cells from infected mice that might involve IL-4, IL-5 and IL-6. This is the first study demonstrating an alteration of thymic cell function by T. cruzi infection which results from overstimulation of IL-10 and IFN-gamma production.

Animals

CD44 expression in T-cell lymphoblastic leukemia.

1. CD44 is an adhesion molecule expressed by B and T lymphocytes that mediates cell attachment to extracellular matrix components and specific cell surface ligands. In normal process of T-cell development, CD44 can be implicated in homing of bone marrow-derived T-cell precursors into the thymus. In hematopoietic malignancies, CD44 and other adhesion molecules can mediate the behavior of neoplastic cells such as metastatic migration. In the leukemic process, CD44 expression is correlated with increased numbers of circulating blasts and it is present at other sites such as the central nervous system. 2. In the present study, CD44 was investigated in lymphoblasts from 30 patients with T-cell lymphoblastic leukemia (T-ALL) and in peripheral lymphocytes from 10 healthy individuals. CD44 expression was detected in 23 (77%) of T-ALL cases studied and was correlated with clinical features such as mediastinal mass, adenomegaly, and infiltration of the central nervous system and other organs. Interestingly, CD44 expression in patients with tumor infiltration was higher than in patients with no tumor infiltration. 3. These data suggest that CD44 may be regarded as an additional marker for tumor expansion in T-cell leukemias.

Adolescent

Altered deposition of extracellular matrix components in the skeletal muscle and lymph node of the MDX dystrophic mouse.

1. MDX mice derived from a colony of C57BL/10ScSn mice develop an X-linked recessive muscular dystrophy, thus providing an adequate model to study the pathogenesis of muscular dystrophy. 2. Skeletal myofibers of MDX mutant mice were heterogeneous, with disorganization of myofilaments and the absence of immunolabelling for dystrophin with monoclonal antibody DY4/6D3. 3. Marked deposition of reticulin, collagenic fiber (types, I, IV) and laminin (LN) were consistently present mostly around lesioned and necrotic myofibers associated with an intense inflammatory reaction, whereas strong immunolabelling for TIII-C, TIV-C and FN was often associated with regenerated fibers. 4. During the onset (3 weeks of postnatal life) of disease and height of myonecrosis (5-6 weeks of postnatal life), popliteal lymph nodes showed dense argyrophilic meshwork, intense immunolabelling for collagens types I and IV, FN, LN and enlargement of the hili which were packed with mononuclear cells. Such alterations, albeit less intense, were still observed in MDX mice with 20 weeks of postnatal life. 5. The results support the view that ECM components might be influencing the migration of inflammatory cells and the process of myonecrosis in the skeletal muscle of MDX dystrophic mice.

Animals

Expression of prolactin receptors in murine lymphoid cells in normal and autoimmune situations.

We have analyzed the expression of prolactin receptors (PRL-R) on murine lymphoid cells by using flow cytofluorometry analysis with biotinylated anti-PRL-R mAb raised against several epitopes of the extracellular domain of the PRL-R and by using polymerase chain reaction amplification. We demonstrated that PRL-R were universally expressed in normal rat and mouse hematopoietic tissues. In both primary lymphoid organs, namely, thymus and bone marrow, > 90% of cells were labeled by the anti-PRL-R mAb, but the density of PRL-R (assessed by fluorescence intensity) was lower on thymocytes than on bone marrow cells. In peripheral lymphoid organs there were smaller proportions of cells bearing PRL-R and we could clearly distinguish cell subsets of various fluorescence intensities. By using classical markers for lymphoid cell populations, we noted that all B cells and macrophages from spleen, lymph nodes, and blood strongly expressed the PRL-R. Regarding T cell populations, large proportions (> 85%) of PRL-R+ cells were detected in the four thymocyte subsets, thus contrasting with the smaller proportions (50 to 65%) of T cells labeled in the periphery. Similar percentages of PRL-R+ cells were observed in CD4+ and CD8+ peripheral lymphocyte subsets. Importantly, the stimulation of thymocytes and spleen cells with the T cell mitogen Con A promoted an enhancement of the density of PRL-R molecules on the cell membranes. Because hyperprolactinemia is associated with some autoimmune diseases, we also investigated PRL-R expression in the NZB autoimmune mouse. In contrast to the pattern observed in normal animals, the frequencies of PRL-R-bearing T cells as well as the density of PRL-R per cell increased with age in NZB mice, suggesting that some imbalances of PRL/PRL-R interaction might occur in autoimmune situations. In conclusion, our data provide a molecular basis for a better understanding on the mode of action of PRL within the immune system in physiologic and pathologic situations.

Animals

Thymic extracellular matrix in human malnutrition.

Previous studies have shown that malnutrition severely affects both lymphoid and epithelial components of the thymus. Yet, few data are available concerning the extracellular matrix (ECM) of the thymic microenvironment in malnutrition. We studied by histological, ultrastructural, and immunohistochemical means thymuses obtained in necropsies from 19 malnourished children. We observed a consistent increase in the intralobular ECM-containing network which could be ascertained histologically by the dense reticulin staining. This abnormally dense ECM network contained fibronectin, laminin, and type IV collagen. Importantly, the enhancement of thymic ECM in malnourished individuals positively correlated with the degree of thymocyte depletion. This correlation may represent a cause-effect relationship in which the contact of thymocytes with abnormally high amounts of thymic ECM triggers and/or enhances programmed cell death.

Basement Membrane

Restoration of the thymus in aging mice by in vivo zinc supplementation.

A multiparametric study of the thymus was performed in normal aging mice (12-15 months old) submitted to a mild oral zinc supplementation during 3-6 months as compared to age-matched control mice. First, this study demonstrated that in rodents, zinc levels are significantly reduced with aging and can be restored to values close to those observed in young animals after 6 months of zinc supplementation. Second, our data showed that oral zinc administration stimulates thymus growth and partially restores the microenvironmental as well as lymphoid compartments of the organ. Regarding thymic endocrine function, a significant increase in thymulin levels and a concomitant decrease in plasma thymulin inhibitors were observed, suggesting that the age-related decline of thymic function might at least partially be due to extrinsic factors, such as zinc deficiency. The total number of thymic lymphocytes was consistently increased, without significant changes in CD4/CD8 defined thymocyte subsets. Finally, structural changes of the thymus epithelium were also detected, including the disappearance of epithelial cysts frequently observed in old animals, reappearance of a normal pattern of the thymic epithelial cell network, and a decrease in the extracellular matrix network. Taken together, these data suggest that aging-related physiological zinc deficiency induces some relevant changes in thymus structure and function which can be partially corrected by a mild oral zinc supplementation.

Administration, Oral

Extracellular matrix proteins in intrathymic T-cell migration and differentiation?

Intrathymic T-cell migration and differentiation is not completely understood. Here, Wilson Savino and colleagues argue that certain interactions between differentiating thymocytes and thymic epithelial cells are mediated by extracellular matrix proteins and that these interactions influence intrathymic migration events and thymocyte differentiation.

Cell Communication

Extracellular matrix components of the mouse thymic microenvironment. III. Thymic epithelial cells express the VLA6 complex that is involved in laminin-mediated interactions with thymocytes.

We describe herein the expression of the VLA6 complex by murine thymic epithelial cells (TEC). The immunohistochemical distribution revealed that VLA6 is found in both thymic medullary and subcapsullary areas. Moreover, studies by immunoelectron microscopy revealed a membrane labeling of the VLA6 molecule, including at desmosomal sites. By means of immunoblotting, immunoprecipitation, and affinity chromatography of extracts from a mouse TEC line, we further demonstrated that VLA6 is a laminin (LN) receptor in these cells. In keeping with this finding, we showed that TEC adhesion, spreading, and proliferation were enhanced in vitro by LN. The fact that VLA6 is also expressed by the large majority of thymocytes raised the hypothesis that it might be involved in LN-mediated TEC-thymocyte interactions. Interestingly, in vitro experiments showed that there is an increase in the TEC-thymocyte adhesion upon glucocorticoid hormone treatment, a situation in which the expression of VLA6 as well as LN is enhanced. Most importantly, this adhesion can be reversed by pre-treating TEC with an anti-alpha 6 integrin mAb. Additionally, spontaneous in vitro thymocyte release by thymic nurse cell complexes was enhanced by LN and partially blocked by anti-alpha 6 or anti-beta 1 antibodies. Our results suggest that VLA6 is involved in LN-mediated TEC-thymocyte interactions that can be relevant for thymic microenvironmental cell physiology and intrathymic T cell differentiation events.

Animals