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C Mandet

Publications and source records attributed to C Mandet.

At least 37 records · Page 2Linked to original sources

Cell and extracellular matrix rejection in arterial concordant and discordant xenografts in the rat.

Vascularized xenografts are rejected acutely and hyperacutely in concordant or discordant combinations, respectively. We investigated the impact of the donor-recipient combination on the rejection of arterial xenografts, analyzing the cellular and extracellular matricial compartments. Aortic xenografts were performed in a concordant (hamster) and a discordant (guinea pig) combination with Lewis rat. Graft cells and immune effectors were characterized by immunohistochemistry after 15 min and up to 30 days postimplantation. Macroscopic and microscopic structure of the grafts was studied at 60 days. IgC in the concordant combination and C3, C5b9, and IgM in the discordant combination deposited on endothelial cells, acutely and hyperacutely, respectively. The same immune effectors deposited on medial smooth muscle cells, but later than on endothelial cells. In both combinations the medial extracellular matrix was covered by IgM and IgC and infiltrated by monocytes (90%) and T lymphocytes (10%), with elastinolysis in the vicinity of monocytes. However, elastin resorption in the media at day 60 differed in concordant and discordant xenografts(75+/-10% and 99+/-1%, respectively). Intimal thickening and aneurysm developed in concordant and discordant combinations, respectively. Unlike arterial allografts, arterial xenografts are not a homogeneous group. The donor-recipient combination determines the mechanism and the timing of graft cell rejection, as well as the magnitude of medial elastin injury. As a consequence, chronic graft remodeling differs in the two combinations.

Acute Disease↗

Inflammatory cells and myocardial fibrosis: spatial and temporal distribution in renovascular hypertensive rats.

OBJECTIVE: The fibroblasts producing collagen are co-localized with inflammatory cells in myocardial fibrosis areas of spontaneously hypertensive rats, suggesting that collagen overproduction in this model may be modulated by inflammatory cells. The present study extends these observations to the Goldblatt model of hypertension in which the renin-angiotensin system is activated. METHODS: Inflammatory cells were identified with monoclonal antibodies directed against macrophages (ED1+), T helper (CD4+) and cytotoxic lymphocytes (CD8+), and MHC class II-expressing cells (Ia+). The alkaline phosphatase-anti-alkaline phosphatase (APAAP) immuno-staining technique was used. A new computer-assisted morphometric method was utilized to quantify the inflammatory infiltrate in each cardiac compartment with polarized-light microscopy. Cells responsible for the collagen synthesis were identified by in situ hybridization. The collagen content was estimated by morphometry on left ventricle sections stained with Sirius red, and by biochemical quantification of the hydroxyproline concentration. RESULTS: Computer-assisted morphometry under polarized light was well suited to quantify inflammatory cells labeled by the APAAP technique. Inflammatory cells were co-localized with collagen-synthesizing fibroblasts. The main inflammatory cells were CD4+ lymphocytes > Ia+ > ED1+ > CD8+ cells. These cell densities were increased in hypertensive rats in all cardiac areas compared to control rats except for IA+ cells which were concentrated in microscars. Macrophage density was correlated with plasma renin activity. The inflammatory cell density which best correlated with fibrosis was macrophage density, and which best correlated with systolic blood pressure was macrophage and T helper lymphocyte densities. CONCLUSIONS: One can speculate that the correlation between macrophage density and blood pressure as well as with plasma renin activity may indicate that angiotensins and/or elevation of blood pressure could participate in the initial signalling which may mobilize inflammatory cells. These inflammatory cells could promote fibrosis by releasing mediators such as growth factors or cytokines which act upon fibroblasts.

Animals↗

Mediators of perivascular inflammation in the left ventricle of renovascular hypertensive rats.

OBJECTIVE: Inflammatory cells invade the fibrotic myocardium of spontaneously hypertensive rats at the same sites as where fibroblasts are produced. The role of these inflammatory cells in myocardial fibrogenesis was studied in the present work. METHODS: The production and distribution of proteins that may be implicated in inflammation was examined by immunohistochemistry of sections of left ventricles from 1-month and 4-month renovascular hypertensive and age-matched control rats using antibodies against ICAM-1, LFA-1, TGF beta 1, PDGF-A, T and H kininogens, IgG, IgM, C3, and C5b-9. Infiltrating inflammatory cells were phenotyped by immunohistochemistry. The TGF beta 1 and PDGF-A mRNA levels were checked by RT-PCR. RESULTS: Infiltrating cells were mainly T helper lymphocytes and macrophages, and there were more inflammatory cells in hypertensive rats than in control rats, localized especially around coronary arteries and in microscars. There were more ICAM-1 and LFA-1 in the ventricles of hypertensive than in control rats at 1 month, but the ICAM-1 expressions in hypertensive and control rats were similar at 4 months. TGF beta 1 and PDGF-A mRNA steady states increased in 4-month hypertensive rats, but there was no labeling for TGF beta or PDGF by immunohistochemistry. There was only faint labeling for T and H kininogens, and it was not increased in hypertensive rats. There were deposits of IgM and C5b-9 only in hypertensive rats. CONCLUSION: Thus, inflammatory cells infiltrate the cardiac tissue of renovascular hypertensive rats as in the case of spontaneously hypertensive rats and these cells may use the ICAM-1/LFA-1 system to infiltrate, but neither TGF beta 1 and PDGF-A, nor the kininogen system seem to be associated with cardiac fibrogenesis. Otherwise, the complement system could act as arteriosclerotic and/or leukocyte mobilizing factors.

Animals↗

Sequential immunological targeting of chronic experimental arterial allograft.

Arterial wall is the main site involved in the chronic rejection process. The rat aortic allograft model was used here to characterize and describe the sequential evolution of the different targets and effectors of arterial wall immunological injury and response during arterial allograft rejection. Rat abdominal aortae were isografted or allografted from Brown-Norway to Lewis rats. Endothelial and smooth muscle cell injury and humoral and cellular immunological effectors were characterized from 0 to 60 days after transplantation using a battery of specific antibodies. The intimal proliferative response was also characterized over this time. Isografted Brown-Norway aorta adventitia had very few cellular components, which suggests that donor adventitia would be poorly antigenic in allografts. In contrast, allograft adventitia was the site of a major inflammatory cell invasion in which the expression of an adhesion molecule by colonizing capillary endothelial cells could play a main role. This adventitial infiltration continued as long as medial smooth muscle persisted. The luminal endothelial cells disappeared early, probably associated with macrophage margination. In contrast, medial smooth muscle cell disappearance occurred later and was specifically targeted by immunoglobulins. Intimal proliferation was the most delayed phenomenon, involving both inflammatory cell infiltration at an early stage and later myofibroblastic proliferation, and could be related to the specific expression of growth factors in this layer. The rat aortic allograft model appeared useful for characterizing specific targets and effectors of chronic arterial graft rejection, demonstrating an early stage of endothelial injury and the presence of immunoglobulins involved in chronic medial smooth muscle cell injury.

Animals↗

Self-reactive anti-class II T helper type 2 cell lines derived from gold salt-injected rats trigger B cell polycolonal activation and transfer autoimmunity in CD8-depleted normal syngeneic recipients.

Brown Norway (BN) rats given gold salts develop an autoimmune syndrome with an immune complex-type glomerulonephritis in the context of a polyclonal B cell activation that was suspected to be due to the emergence of anti-self major histocompatibility complex (MHC) class II T cells. In the present study, six anti-self MHC class II T cell lines have been derived from six gold salt-treated rats by repeated stimulations with normal syngeneic MHC class II-bearing cells. The T cell lines proliferated in the presence of self MHC class II-positive B cell-enriched or B cell-depleted cells and the proliferation was inhibited by preincubating stimulator cells with an anti-IA monoclonal antibody. The T cell lines produced interleukin (IL)-4 only or IL-4 and some interferon (IFN)-gamma and could, therefore, be considered as T helper type 2 (Th2) and Th0 cells, respectively. They triggered normal syngeneic B cells to produce in vitro IgE, anti-DNA, anti-laminin and anti-2,4-6-trinitrophenol antibodies through, at least in part, cognate interactions. More interestingly, these lines when transferred into normal BN rats induced an autoimmune syndrome similar to or even more severe than the one observed in the active gold model, provided the recipients were CD8 depleted. These manifestations included a dramatic increase in serum IgE concentration and the production of anti-DNA and anti-laminin antibodies. In addition, all recipients displayed an autoimmune glomerulonephritis due to anti-laminin antibodies, granular IgG deposits in the interstitium, in the vessel walls and along the tubular basement membranes and a severe tubulointerstitial nephritis with marked mononuclear cell infiltration. An anti-ovalbumin T cell line that produced IL-4 and low amounts of IFN-gamma was used as a control and did not induce autoimmunity. These results demonstrate for the first time the ability of autoreactive Th2 as well as Th0 cell lines to induce antibody-mediated autoimmunity. They also show that CD8+ cells play a crucial role in the control of such autoreactive cells. Finally, this work suggests that Th2 cells could initiate cell-mediated reactions either directly or indirectly.

Animals↗

Genetic study of gold-salt-induced immune disorders in the rat.

BACKGROUND: Rheumatoid arthritis patients treated with gold salts occasionally develop a glomerulonephritis and an increase in serum IgE concentration. Brown-Norway (BN) rats injected with aurothiopropanolsulphonate (ATPS) exhibit an increase in serum IgE concentration, produce antilaminin antibodies (Abs) and develop glomerular linear immunoglobulin (Ig) deposits, occasionally a membranous glomerulopathy and vascular granular Ig deposits. Lewis (LEW) rats are resistant. METHODS: The genetic requirements governing the appearance of these manifestations were studied in congenic rats, and in F1 hybrids injected with ATPS. RESULTS: Non-MHC-linked genes from the BN strain were absolutely required for all the traits to be observed. The RT1n (BN) or RT1(1) (LEW) haplotypes at the MHC were permissive for all the manifestations to appear and two RT1(1) alleles were associated with the highest response. However, granular Ig deposits were only observed in RT1n rats. The high serum IgE concentration and the antilaminin Ab level were associated with the presence of glomerular Ig deposits but were not associated with the presence of vascular Ig deposits. CONCLUSIONS: This study shows that susceptibility to ATPS was mainly dependent upon non-MHC-linked BN genes and that the involvement of MHC-linked genes differed depending upon the character considered. There is an epistatic effect between the various genes.

Analysis of Variance↗

Colocalization of myocardial fibrosis and inflammatory cells in rats.

BACKGROUND: Left ventricular overload and aging lead to an increase in fibrosis in the rat cardiac interstitium. The relationship between fibrosis, fibroblast activity, and inflammatory cell infiltration, was explored in spontaneously hypertensive rats (SHR) and Wistar controls. EXPERIMENTAL DESIGN: The left ventricle of three groups of eight SHR and eight Wistar controls hearts were sectioned for light microscopy, immunohistochemistry, and in situ hybridization with a cDNA probe encoding the murine alpha 1 chain of type I collagen. Fibrosis was measured morphometrically. Monoclonal antibodies directed against Ia antigen, CD8+ cytotoxic, CD4+ helper lymphocytes and monocyte/macrophages were used to localize and quantify the inflammatory cells. RESULTS: In 2-month-old rats, with nearly normal interstitial cardiac tissue, fibroblasts expressing collagen mRNA were located around coronary vessels. The areas of fibrosis and interstitial cellular infiltration were more extensive in 22-month-old rats than in 12-month-old rats and greater in SHR than in Wistar. Fibroblasts expressing collagen mRNA were mainly found at the border between fibrosis and myocytic cells, and were always colocalized with lymphocytes and macrophages. The interstitial areas of fibrosis and collagen I expressing fibroblasts had the same pattern of infiltrating cells in normotensive rats than in SHR. Fibrosis and the density of macrophages and CD4+ lymphocytes were correlated. CONCLUSIONS: Thus, fibroblast activity could be closely related to the presence of lymphocytes and macrophages in the myocardium of spontaneously hypertensive and aged rats.

Aging↗

Evidence for a role of antilaminin-producing B cell clones that escape tolerance in the pathogenesis of HgCl2-induced membranous glomerulopathy.

In Brown-Norway rats HgCl2 induces an autoimmune disease due to a T-dependent B cell polyclonal activation. This disease is marked by the production of numerous antibodies including antiglomerular basement membrane (GBM) antibodies. Rats exhibit a biphasic glomerulopathy with heavy proteinuria. Initially anti-GBM antibodies are found linearly deposited; they precede the appearance of membranous glomerulopathy. Rats recover spontaneously even if HgCl2 injections are pursued, but mechanisms at play are unclear. We have assessed the effects of transplanting the spleen from a BN rat, either at the acme of the disease or at the time of convalescence, into naive BN rats, some of which were then injected with HgCl2. Transplantation of a spleen from HgCl2-injected rats at the acme of the disease dramatically protects BN rats from all the manifestations of the mercury disease. BN rats transplanted with a spleen from HgCl2-injected rats at the time of convalescence only exhibited a typical membranous glomerulopathy with heavy proteinuria but without circulating anti-GBM antibodies. Antilaminin antibodies were eluted from the glomeruli. This study shows that spleen cells from HgCl2-injected rats are able to confer tolerance to HgCl2-induced autoimmunity. It also shows that some B cell clones escape this tolerance. Finally, this study strongly suggests that membranous glomerulopathy, responsible for proteinuria in this model, is related to the presence of antilaminin antibodies.

Animals↗

Effect of the thiol group on experimental gold-induced autoimmunity.

Brown Norway rats injected with aurothiopropanolsulfonate sodium salt develop systemic autoimmunity. The aim of this study was to assess the influence of the sulfur-containing group in this experimental model of gold-induced autoimmunity. It was shown that the sulfur-containing group does not induce autoimmunity of itself, but potentiates the immunotoxic effects of gold.

Animals↗

D-penicillamine-induced autoimmunity in Brown-Norway rats. Similarities with HgCl2-induced autoimmunity.

D-penicillamine (DP) has been previously shown to induce an autoimmune disease in Brown-Norway (BN) rats, characterized by a dermatitis, by the production of antinuclear antibodies, by the formation fo circulating immune complexes, and by linear IgG deposits along the glomerular basement membrane. These manifestations are quite similar to those observed in mercuric chloride (HgCl2)-induced autoimmunity. The mechanism of the latter disease has been recently partly elucidated. The aim of this study was to compare DP and HgCl2-induced autoimmunity in BN rats and to compare the mechanisms involved in both situations. A transient increase in the number of spleen cells, affecting B cells and CD4+ T cells, and an increase in serum IgE concentration, previously reported in HgCl2-induced autoimmunity, were observed during DP treatment. Autoreactive anti-class II T cells able to proliferate not only in the presence of autologous B cells but also in the presence of syngeneic normal B cells were found in DP-treated BN rats. Spontaneous regulation occurred, associated with the disappearance of autoreactive T cells. Suppressor CD8+ T cells were not involved in this phenomenon. Mechanisms involved in both the induction and the regulation of DP-induced autoimmunity seem to be quite similar to those reported in HgCl2-induced autoimmunity.

Animals↗

Specificity and cross-reactive idiotypes of anti-glomerular basement membrane autoantibodies in HgCl2-induced autoimmune glomerulonephritis.

Mercury-induced autoimmune glomerulonephritis in the Brown-Norway (BN) rat is characterized by the successive appearance of linear and granular glomerular IgG deposits. Anti-laminin autoantibodies represent the major part of the anti-glomerular basement membrane (GBM) antibodies produced in this model. Fusions were performed in this model and four anti-GBM monoclonal antibodies (mAb) were obtained. Three of them were laminin specific. Using rabbit anti-idiotype antibodies, cross-reactive idiotypes (CRId) were characterized on anti-laminin antibodies. They were expressed on the three anti-laminin mAb, on kidney-eluted and circulating anti-laminin antibodies. CRId-bearing immunoglobulins were detected transiently in the circulation and paralleled the anti-laminin antibody activity. By immunofluorescence studies on kidney cryostat sections two different CRId were defined. One was localized close to the antigen-combining site since it was not revealed on kidney-bound antibodies, in contrast with the second CRId. This latter CRId was also found deposited in a typical linear pattern in the early phase of the disease and in a granular pattern in the late phase, demonstrating that these CRId are components of immune deposits. Taken together, these results suggest that in this model of T-dependent polyclonal B cell activation, restricted sets of V genes encode for at least a part of the anti-GBM autoantibodies.

Animals↗

Graft-versus-host reactions in the rat mimic toxin-induced autoimmunity.

Gold salts, D-penicillamine or mercurials induce autoimmunity in Brown Norway (BN) rats and provoke an immunosuppression in Lewis (LEW) rats. It has been suggested that immunologically mediated manifestations induced by drugs could result from graft-versus-host (GVH) like reactions. We show that BN spleen cells transferred into (LEW x BN)F1 hybrids induce a chronic GVH reaction (GVHR). This reaction led to an autoimmune disease quite similar to that induced by drugs in BN rats. In both situations, a common part of the B cell repertoire is triggered. In contrast, LEW spleen cells transferred into (LEW x BN)F1 hybrids provoke a lethal GVHR. This is to be compared with the CD8-mediated immunosuppression observed in LEW rats injected with HgCl2. These findings are in agreement with the prediction that immune dysregulation induced by drugs leads to GVH-like reactions either stimulatory or suppressive depending upon the strain tested.

Animals↗

Immunohistochemical study of complement S protein (Vitronectin) in normal and diseased human kidneys: relationship to neoantigens of the C5b-9 terminal complex.

The localization of S protein (Vitronectin) antigen was studied by indirect immunofluorescence and immunoelectron microscopy in normal adult human kidneys and in biopsy specimens from patients with a wide range of renal diseases, and compared with that of neoantigens of the C5b-9 terminal complement complex. S protein antigen was diffusely present in arteriolar perimyocytic matrices, the glomerular basement membrane and mesangial matrix, and tubular basement membranes in the cortex of normal and diseased kidneys without superimposable staining for C5b-9 neoantigens. Cell remnants embedded in normal and sclerotic extracellular matrices expressed S protein antigen and also stained for C5b-9 neoantigens. Several lines of evidence suggested that S protein present in connective matrices most likely represents S protein or C5b-9 complexes trapped from the circulation. Glomerular immune deposits and arteriolar hyalin deposits which contained C5b-9 neoantigens also contained S protein antigen in the same location. In a few specimens from patients with membranous nephritis stage I and IgA nephropathy, immune deposits contained neither detectable C5b-9 neoantigens nor S protein. The observed strong co-staining of immune deposits for S-protein and C5b-9 caution against the generalization that C5b-9 within glomerular immune deposits represent membrane-bound cytolytic complement complexes.

Adult↗

Human liver Kupffer cells express CR1, CR3, and CR4 complement receptor antigens. An immunohistochemical study.

The expression of complement receptor antigens by human Kupffer cells (KC) was investigated by immunohistochemical techniques in seven normal human liver biopsies. Polyclonal and monoclonal antibodies were revealed by double labeling of cells using indirect immunofluorescence and immunoenzymatic techniques or by using double immunoenzymatic techniques. In most experiments, one antigen was revealed by streptavidin-biotin-peroxidase complexes whose reaction product was examined by light microscopy and the second antigen stained using the alkaline phosphatase antialkaline phosphatase method visualized by fluorescence microscopy using fluorescein isothiocyanate or tetramethylrhodamine isothiocyanate filters. KC were identified using monoclonal antibody EBM11 that recognizes 100% of KC in hepatic lobules and was paired with each antibody directed against complement receptors. CR1 and CR3 (alpha- and beta-chains) were found to be the predominant receptor antigens expressed by human KC. CR4 (p150,95) was expressed on all KC, but staining with anti-CR4 monoclonal antibodies was consistently weaker than that observed with anti-CR3 antibodies. No staining of KC was observed with anti-CR2 (CD 21) antibodies. Expression of CR1, CR3, and CR4 complement receptors on KC provides the cells with an optimal capacity to bind and phagocytize particles or immune complexes coated with any type of ligands for C3 receptors.

Antibodies, Monoclonal↗

Autoreactive T cells in mercury-induced autoimmunity. Ability to induce the autoimmune disease.

It has been previously shown that autoreactive T cells appear during mercury-induced autoimmunity in Brown-Norway (BN) rats. In the present work, it is shown that: 1) T cells and T helper cells from HgCl2-injected BN rats are able to actively transfer autoimmunity in normal BN rats; the disease transferred is exacerbated when recipients are treated with the antisuppressor/cytotoxic T cell monoclonal antibody (OX8); 2) normal T cells preincubated with HgCl2 are also able to transfer the disease in OX8-treated but not in T cell-depleted rats; and 3) T cells from HgCl2-injected BN rats also transferred the disease in both normal and T cell depleted rats. It is concluded that: 1) autoreactive T cells, and presumably anti-Ia T cells are involved in the pathogenesis of mercury-induced autoimmunity; 2) these autoreactive T cells induce suppressor/cytotoxic T cells to proliferate in normal syngeneic recipients; the fact that this T cell subset did not proliferate in HgCl2-injected BN rats suggests that HgCl2 also affects T suppressor cells; and 3) mercury-induced autoimmunity could result from the additive effect of the emergence of autoreactive T cells and of a defect at the T suppressor level.

Animals↗

HgC12 induces T and B cells to proliferate and differentiate in BN rats.

Mercuric chloride induces in Brown-Norway (BN) rats an autoimmune disease characterized by the production of various autoantibodies and by a marked increase in the IgE serum concentration. This agent is responsible for a T dependent polyclonal activation of B cells, which is probably due to the emergence of autoreactive T cells. The aim of this study was to evaluate the effect of HgCl2 injections on lymphoid organs and on the serum concentration of the various Ig isotypes. HgCl2 induced (1) a lymphoproliferation in spleen and lymph nodes involving B and T helper cells while the number of T suppressor/cytotoxic cells was not modified, (2) an increase in the number of Ig containing cells resulting in a rise in all serum Ig isotypes, and (3) an early thymic atrophy probably immunologically mediated, which was not involved in the induction phase of the disease since adult thymectomy had no effect. These findings demonstrate that the polyclonal effect of HgCl2 is not isotype-restricted although the IgE response is predominantly affected and they support evidence for a major role for an excess of T help in the HgCl2-induced polyclonal activation of B cells. It was also observed that B cell areas are present in normal BN rat thymuses, the potential role of which in the induction of autoimmunity remains to be investigated.

Animals↗