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M Dardenne

Publications and source records attributed to M Dardenne.

At least 19 recordsLinked to original sources

Hematopoietic stem cells and myeloid precursor cells in nonobese diabetic (NOD) mice.

Expression of diabetes susceptibility genes at the hemopoietic stem cell level is sufficient for the development of the disease in nonobese diabetic (NOD) mice. This work investigated whether the defects that reside within the stem cells have consequences on the homeostasis of the stem and progenitor cell compartments. The fraction of cyclically active stem cells, or spleen colony-forming units (CFU-s), is enlarged, and their differentiation toward megakaryocytopoiesis seems to be enhanced in NOD mice at 3 and 10 weeks of age as compared to C57BL/6 mice. Whereas colony-forming unit assay (CFU-A) numbers are normal in the bone marrow, they are significantly increased in the spleen of NOD mice. A strain-dependent difference in granulocyte-macrophage colony-forming cell (GM-CFC) numbers was observed; they were higher in NOD mice than in B6 mice of three and ten weeks of age. These results suggest that autoimmune type 1 diabetes mellitus of the NOD mouse is accompanied by disorders of myelopoiesis and megakaryopoiesis. This observation is in keeping with the role of macrophages in the development of diabetes and with the hyperactivity of diabetic platelets.

Animals

Glucocorticoids in the nonobese diabetic (NOD) mouse: basal serum levels, effect of endocrine manipulation and immobilization stress.

The NOD mouse is a recognized model for studying immunologically mediated insulin-dependent diabetes mellitus (IDDM). In most colonies, the disease appears with a greater preponderance in females than in males and castration alters the expression of the disease. The prevalence of diabetes may also vary depending upon environmental factors such as stress. Therefore, we measured in the NOD mouse serum glucocorticoid concentrations in basal and stress conditions. We observed in NOD as well as in C57BL/6 mice, taken as controls, a circadian rhythm of corticosterone, with females having higher values than males. After a single restraint stress, female and male NOD mice exhibit a comparable response, whereas after repeated stress, males respond significantly less than females, suggesting an adaptation phenomenon. In contrast, there is no difference in the pattern of corticosterone response of C57BL/6 females and males to both types of stress, but females always respond better than males. Moreover, whatever the stress considered, NOD mice generally exhibit a higher corticosterone response than C57BL/6 mice. The sexual dimorphism in diabetes expression in NOD mice may be related to the levels of corticosterone, a hyperglycemic hormone, in both basal and stress conditions. However, the understanding of corticosteroid effects in this model of type I IDDM is rather complex given their well known anti-inflammatory and immunosuppressive effects in other models of autoimmune diseases.

Adrenalectomy

Enhanced metabolism of arachidonic acid by macrophages from nonobese diabetic (NOD) mice.

The inbred nonobese diabetic (NOD) mouse spontaneously develops an autoimmune diabetes, which is now recognized as an experimental model for human type I insulin-dependent diabetes mellitus (IDDM). The autoimmune reaction, specifically directed against pancreatic beta cells (insulitis), involves both macrophages and T lymphocytes. The study of the production of cyclooxygenase and lipoxygenase derivatives of arachidonic acid metabolism shows that in some conditions, and in particular in the presence of zymosan A, macrophages from NOD mice produced significantly more 6-keto-prostaglandin F1 alpha (6-keto-PGF1 alpha) and leukotriene C4 (LTC4) than macrophages from age- and sex-matched C57BL/6 mice. Moreover, zymosan A-stimulated macrophages from NOD females produced significantly more LTC4 than did macrophages from NOD males. These results may be of interest, given the bidirectional relationship between the various cytokines involved in the destruction of beta cells of the islets of Langerhans and different eicosanoids.

6-Ketoprostaglandin F1 alpha

In vivo effects of growth hormone on thymus function in aging mice.

It is well demonstrated that the normal functioning of the thymus gland is under neuroendocrine control. Thus, steroid, thyroid, and pituitary hormones can affect distinct structural and/or functional thymic parameters. Particularly growth hormone (GH) was shown to be capable of restoring some thymus functions in old individuals. This prompted us to carry out a multiparametric analysis of the thymus in young, middle-aged, and old mice, subjected to GH treatment lasting 3 or 6 weeks. For that, we treated animals with daily injections of ovine GH (2 micrograms/g BW). Although the general microarchitecture of the thymus remained unchanged following in vivo GH treatment, there was a clearcut increase in thymulin production, independent of the age group analyzed. Regarding the lymphoid compartment, we could not find evidence of changes in total thymocyte numbers nor in the subsets phenotypically defined by the expression of CD3, CD4, and CD8 antigens. Nonetheless, in GH-treated middle-aged and old mice, the concanavalin A-dependent proliferative response of thymocytes, as well as IL-6 production were enhanced compared to age-matched controls. These findings support the notion that GH has a pleiotropic effect upon the thymus, functionally affecting both microenvironmental and lymphoid compartments of the organ.

Aging

Growth hormone and insulin-like growth factor-I stimulate hormonal function and proliferation of thymic epithelial cells.

We have investigated the role of GH and insulin-like growth factor-I (IGF-I) in controlling the secretion of thymulin, a hormone produced by thymic epithelial cells (TEC). Thymulin plasma concentrations (mean +/- SD) were increased in 21 patients with acromegaly compared to those in 30 controls, as assessed by bioassay (4.24 +/- 0.97 vs. 2.67 +/- 0.87; P less than 0.001) and RIA (561 +/- 241 vs. 315 +/- 113 pg/L; P less than 0.01). Good correlations were observed between plasma levels of thymulin and IGF-I (P less than 0.001). In vitro experiments demonstrated that both recombinant human GH and IGF-I significantly increased thymulin production in culture supernatants of normal human TEC and a rat TEC line. In parallel, IGF-I also significantly stimulated the proliferation of human TEC, as measured by bromodeoxyuridine incorporation. Additionally, the stimulatory effect of GH on thymulin production was abrogated by both an anti-IGF-I antibody and an anti-IGF-I receptor antibody. These results support a role for GH and IGF-I in the control of thymic hormonal function in man and suggest that the effect of GH may be mediated by local secretion of IGF-I within the thymus.

Acromegaly

Modulation of thymocyte subsets during acute and chronic phases of experimental Trypanosoma cruzi infection.

Several observations have demonstrated the importance of T-cell-mediated mechanisms in experimental Chagas' disease. In previous studies, we have shown that mice acutely infected by Trypanosoma cruzi develop a progressive thymic atrophy with severe alterations in the lymphoid compartment. In this report we performed a kinetic analysis of the murine thymic lymphocytes comparing acute and chronic phases of infection. At the chronic phase, we observed that total thymocyte numbers returned to age-matched control values. Additionally, the decrease in the percentage of CD4+CD8+, in parallel with an increase of CD4+CD8-, CD4-CD8+, CD3high, TcR alpha beta and TcR gamma delta cells detected in the acute infection, was also restored in chronically infected mice. This thymocyte recovering is probably linked to the increase in the percentage of thymocyte precursors, such as CD4lowCD8- and CD4-CD8low cells, together with the increase in the number of IL-2R+ and cycling cells, appearing in the late stages of acute infection.

Acute Disease

Thymulin activity during very-low-calorie diet.

The potential use of thymulin levels as a sensitive and functional marker of energy deficiency was investigated in 13 obese women during a 3-week very-low-calorie diet. Mean weight loss was 8.92 +/- 0.52 kg after 21 days of treatment. The patients were free from infection as assessed by serum orosomucoid and C-reactive protein measurements. Serum albumin levels were not decreased throughout the experiment whereas transthyretin concentrations fell significantly during the first 2 weeks and remained fairly stable thereafter. Orosomucoid levels dropped only after 3 weeks of dieting. Serum zinc concentrations were within the normal range on admission and at the end of the experiment. Thymulin activity was not altered throughout the study, suggesting that this thymic hormone cannot be used as a functional marker of short-term energy restriction.

Adult

Identification and functional activity of prolactin receptors in thymic epithelial cells.

Thymic epithelial cells (TECs), the major component of the thymic microenvironment, can be modulated by pituitary hormones. We have shown previously that prolactin (PRL) can influence the endocrine activity of TECs and stimulate TEC proliferation as well as cytokeratin expression, suggesting the existence of PRL receptors on TECs. Using a series of monoclonal antibodies (mAbs) to the extracellular domain of the rat liver PRL receptor, we have demonstrate that rat TECs bear specific receptors for PRL, as assessed by immunoblotting as well as by immunocytochemistry experiments. Using a probe specific for the long form of PRL receptor, mRNAs of 6.7 and 10.1 kilobases were detected, although by immunoblot the major protein in TECs had a molecular mass of 43 kDa. Functionally, these mAbs were able to modulate thymulin secretion, as well as TEC proliferation. Moreover, the mAbs cross-reacted with human TECs and were able to mimic the action of PRL on these cells. These data bring further support for the general concept of the neuroendocrine immune circuit and extend the notion for a pleiotropic role of PRL as an immunomodulatory hormone.

Animals

Influence of inoculum age on hybridoma culture kinetics.

To determine the influence of the inoculum age on the kinetics of hybridoma growth and metabolism, spinner flasks have been inoculated with cells previously propagated in T flasks for 43, 52, 62 and 71 hr respectively. Increasing the age of the inoculum is found to result in a longer lag phase, in a lower maximum specific growth rate and in a reduced maximal cell density. During the growth phase specific rates of glucose and glutamine uptake and of ammonia and lactate production are similar. However, with the older inoculum, much higher metabolic activities are observed during the lag phase. The production of antibodies is delayed with increasing inoculum age, but the final antibody concentrations are similar, which indicates a higher specific antibody production rate when inoculating with older cells.

Ammonia

Induction of thymocyte proliferation by supernatants from a mouse thymic epithelial cell line.

The thymic stroma plays a critical role in the generation of T lymphocytes by direct cell-to-cell contacts as well as by secreting growth factors or hormones. The thymic epithelial cells, responsible for thymic hormone secretion, include morphologically and antigenically distinct subpopulations that may exert different roles in thymocyte maturation. The recent development of thymic epithelial cell lines provided an interesting model for studying thymic epithelial influences on T cell differentiation. Treating mouse thymocytes by supernatants from one of TEC line (IT-76M1), we observed an induction of thymocyte proliferation and an increase in the percentages of CD4-/CD8- thymocytes. This proliferation was largely inhibited when thymocytes were incubated with IT-76M1 supernatants together with an anti-thymulin monoclonal antibody, but could be enhanced by pretreating growing epithelial cells by triiodothyronine. We suggest that among the target cells for thymulin within the thymus, some putative precursors of early phenotype might be included.

Animals

Specific binding sites for growth hormone in cultured mouse thymic epithelial cells.

Growth Hormones bound specifically to murine Thymic epithelial cells, which represent the major component of thymic micro-environment and can be modulated by pituitary hormones. The Kds found with human growth hormone and bovine growth hormone were 0.14 and 0.27 nM with a Bmax 0.56 and 0.35 fmol/10(6) cells respectively. Competition experiment analysis showed ED50 of 0.24 nM for hGH, 0.46 nM for rGH, 0.71 nM for bGH, 11.8 nM for hPRL and 11.2 nM for oPRL. No specific binding of [125I]-oPRL was observed under the same conditions. Both hPRL and bGH showed a negative regulatory effect on the number of the hGH binding sites when incubated with the culture for three days. The presence of GH receptors on Thymic epithelial cells provides biochemical evidence for the effect of GH on thymic function.

Animals

Sex steroids, glucocorticoids, stress and autoimmunity.

Interest in the field of neuroimmunoendocrinology is in full expansion. With regard to this, steroid influence on the immune system, in particular sex steroids and glucocorticoids, has been known for a long time. Sex steroids are part of the mechanism underlying the immune sexual dimorphism, as particularly emphasized in autoimmune diseases. Immunosuppressive and anti-inflammatory effects of glucocorticoids are now considered a physiological negative feedback loop to cytokines produced during an immune and/or inflammatory response. Psychosocial factors may play a role in the development of immunologically-mediated diseases, e.g. autoimmune diseases. The nonobese diabetic (NOD) mouse, that develops an immunologically-mediated insulin-dependent diabetes mellitus (IDDM) is an interesting model to study the role of endogenous steroids. Insulitis is present in both sexes, but diabetes has a strong preponderance in females. Hormonal alteration, such as castration, modulates the incidence of diabetes, whereas environmental factors, such as stress, accelerate the disease. In the present paper, we have reviewed the role of gender, sex steroid hormones, stress and glucocorticoids in autoimmunity as well as analyzed their different levels of actions and interrelationships, focusing particular attention on the immunologically-mediated IDDM of the NOD mouse.

Animals

Studies on the thymus in Chagas' disease. II. Thymocyte subset fluctuations in Trypanosoma cruzi-infected mice: relationship to stress.

Changes in thymic T-cell subsets in mice acutely infected with Trypanosoma cruzi have been studied in both C3H/HeJ and C57BL/6 mice. The significant decrease in thymocyte number, observed in both mouse strains on day 14 post-infection correlated with a drastic decrease in CD4+CD8+ cell number, whereas the number of CD4-CD8-, CD4+CD8- and CD4-CD8+ cells remained essentially unchanged. The important increase in CD3hi cell frequency confirmed that resistant thymocytes during Chagas' disease development were mostly medullary thymocytes, whereas the thymic cortex was largely depleted, as previously observed on thymus sections. This involution of the thymus could have been due to the increase of circulating glucocorticoid levels observed after infection. However, similar cell modifications were found in infected adrenalectomized mice whose serum corticosterone levels were only slightly augmented. Thus, the thymic alterations appear not to be linked to stress responses, at least those dependent on high levels of circulating glucocorticoids.

Animals

Extracellular matrix components of the mouse thymus microenvironment: ontogenetic studies and modulation by glucocorticoid hormones.

The present investigation was an ontogenetic study on the distribution of extracellular matrix (ECM) components in the thymic microenvironment of C57BL/6 mice (comprising young and old adults and developing embryos) and NZB mice. In addition, we evaluated the in vivo and in vitro influence of hydrocortisone treatment on basement membrane protein production by a thymic epithelial cell line. In young normal animals, Type I collagen was restricted to the interstitial spaces of the capsule and septa, where Type IV collagen, fibronectin, and laminin could be detected in the basement membranes. In addition, fibronectin-containing fibers were seen within the medulla of the thymic lobules. The ECM distribution pattern in the developing embryos was distinct from that observed in adults, since a fine meshwork of basement membrane-containing proteins was clearly seen throughout the parenchyma. Moreover, aging normal and NZB mice exhibited a denser ECM pattern than young adult normal animals. Treatment with hydrocortisone, both in vivo and in vitro, resulted in enhancement of ECM expression, detected in mice as early as 2 hr post injection and lasting for several days. Considering that the fluctuations of ECM expression parallel important events in thymocyte differentiation, we discuss the possibility that the two phenomena may be associated.

Animals

Influence of castration, alone or combined with thymectomy, on the development of diabetes in the nonobese diabetic mouse.

The nonobese diabetic (NOD) mouse is a recognized model for studying immunologically-mediated insulin-dependent diabetes mellitus. The disease appears with a greater preponderance in females than in males. Castration at weaning led to a significant increase in the prevalence of diabetes in NOD males, whereas a tendency to a decreased prevalence was observed in NOD females. Castration combined with thymectomy was found to further increase the prevalence of diabetes in NOD males, whereas in females castration reversed the effect of thymectomy. These results on changes in diabetes prevalence were corroborated by the degree of lymphocytic infiltration directed toward the pancreatic islets of Langerhans. Taken together these results indicate a direct relationship between the endocrine and immune systems, whereby orchidectomy has a deleterious effect on the immunopathogenesis of diabetes. In addition, we examined whether the distribution of lymphocyte subpopulations, mitogen reactivity, lymphokine production, and in vivo response to a thymus-dependent antigen, such as sheer red blood cell, were dependent or independent of the sex steroid environment.

Animals

Studies on the thymus in nonobese diabetic mouse. I. Changes in the microenvironmental compartments.

The nonobese diabetic (NOD) mouse develops an autoimmune type I diabetes, which is predominantly seen in females, is triggered by T cells, and whose frequency is enhanced following thymectomy at weaning. Attempting to characterize a thymic pathology in these animals, we analyzed the microenvironmental compartment of the organ with respect to structural and functional molecules expressed by thymic epithelial cells (TEC), as well as extracellular matrix components. We observed, in both males and females, a precocious decrease in the cell numbers of discrete medullary TEC subsets, namely, those respectively defined by the expression of cytokeratins 3/10 and cytokeratin 19. In addition, some cells bearing the TR.5 phenotype (normally restricted to the medulla) could be detected in the NOD mouse thymic cortex. There was also a significant early decrease in thymulin production in females, as compared to males. As regards the extracellular matrix compartment, the most striking alteration was the presence of abnormally enlarged perivascular spaces, increasing in size with age. In these structures large amounts of T cells and, to a lesser extent, B cells were consistently encountered. In addition to B cells, the NOD mouse thymus showed on both TEC and extracellular matrix the presence of deposits of immunoglobulins, revealed with fluorescence-labeled goat anti-mouse Ig sera. Finally, the NOD mouse sera labeled both TEC and extracellular matrix proteins on normal mouse thymus frozen sections. Together, these data clearly demonstrate that the NOD mouse thymus undergoes a variety of microenvironmental changes, whose particular role in the pathophysiology of the disease is yet to be demonstrated.

Animals

A new radioimmunoassay for the thymic peptide thymulin, and its application for measuring thymulin in blood samples.

A new, specific and sensitive radioimmunoassay, using a polyclonal antiserum raised in rabbits, is described for quantitating plasma thymulin. As little as 300 fg thymulin can be measured in one assay tube. The method has been used to measure thymulin in human blood (umbilical vessel blood, 2191 +/- 123 fg/ml; children and adults up to the age of 20 years, 1499 +/- 119 fg/ml; and adults between 21-65 years, 371 +/- 18 fg/ml). There is a highly significant decrease within these three groups (P less than 0.001 by one way analysis of variance). Also plasma thymulin levels were determined in rats (601 +/- 127 fg/ml) and in pooled plasma samples from mice (638 +/- 56 fg/ml). No thymulin was detected in plasma obtained from nude rats, nude mice and thymectomised mice. These results show that the radioimmunoassay described here is a useful quantitative tool for measuring plasma thymulin that will have applications in basic, applied and clinical research.

Animals