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R Pujol-Borrell

Publications and source records attributed to R Pujol-Borrell.

At least 73 records · Page 4Linked to original sources

Enhancement of thyrocyte HLA class II expression by thyroid stimulating hormone.

HLA Class II molecules are expressed by human thyroid epithelial cells (thyrocytes) in thyroid autoimmunity, although these cells are normally Class II-. gamma-Interferon (gamma-IFN) is probably involved in this expression, as suggested by its ability to induce Class II in cultured normal thyrocytes. We have now found that thyroid stimulating hormone (TSH) enhances Class II expression induced in cultured thyrocytes by gamma-IFN, and effects similar to those of TSH were obtained with dibutyryl cyclic AMP. A proportion of thyrocytes also expressed Class II following treatment with TSH or dibutyryl cyclic AMP in the absence of gamma-IFN, but the optimal activity of these mediators then appeared to be dependent upon the occurrence of some pre-existing Class II expression. These findings give insights into how a variety of mediators may influence Class II expression in thyroid autoimmunity.

Autoimmune Diseases↗

HLA-D subregion expression by thyroid epithelium in autoimmune thyroid diseases and induced in vitro.

Human thyroid epithelial cells (thyrocytes) express HLA Class II molecules in autoimmune thyroid diseases (ATD). Normal thyrocytes do not express Class II, but can be induced to do so by culture with interferon-gamma (gamma-IFN). We have examined HLA-D subregion expression in sections and monolayers of thyroid by indirect immunofluorescence using appropriate monoclonal antibodies. The results indicate that, in ATD, the incidence and intensity of Class II subregion expression by thyrocytes varies between patients, and follows the pattern DR greater than DP greater than DQ. The same hierarchy is observed in cultured normal thyrocytes treated with gamma-IFN: strong induction of Class II, and of DP and DQ in particular, requires relatively high concentrations of gamma-IFN or additional factors such as thyroid stimulating hormone. These findings suggest that HLA-D subregion expression by thyrocytes in on-going ATD is determined by the levels of disease related factors in the affected tissue.

Autoimmune Diseases↗

Organ-specific autoimmunity: a 1986 overview.

The normally functioning immune system is subject to intricate networks of regulatory mechanisms: it is therefore not surprising to find that autoimmune diseases present a complex pathogenic picture in which the relative contributions of various factors probably determine the precise nature and course of disease. This is particularly evident in the effector mechanisms of organ-specific autoimmunity which are described in this chapter. These ultimately give rise to the disease symptoms, and can be directly cytotoxic, or may either stimulate or block functional activity or growth of the target cells. Their various contributions to human diseases are becoming more firmly established, as in Type I diabetes, or are only now being described, as in the case of EC-Ab in protracted diarrhea of infancy and as evidenced by the growing lists of receptor-stimulating or -blocking antibodies. The nature and precise location of relevant autoantigens is also coming under closer scrutiny. The answers to the question of why these diseases arise in the first place remain more elusive. However, it is again likely that a variety of factors can contribute. The attractive possibility of a role for idiotypic interactions is gaining ground, particularly within the context of antibodies to hormones and their receptors. Another potential mechanism which we believe may be of central importance, particularly in the development of organ-specific destructive autoimmunity, and which we have discussed here in detail, is the aberrant expression of HLA Class II molecules by target cells. Whether this is actually an initiating factor is presently not known, but its potential for promoting pathogenesis both early and late in the process is clear. Furthermore, the complex nature of the regulation of epithelial Class II expression may help to explain the heterogeneity of features and course of disease in different patients with the same underlying pathology. All these advances in our basic understanding of the disease processes should ultimately lead to more effective and specific means of therapeutic intervention.

Animals↗

HLA-D/DR expression on epithelial cells: the finger on the trigger?

The findings we have described here show a clear association between epithelial HLA-D/DR expression and autoimmunity. Furthermore, the ability of class II+ thyrocytes to present both exogenous antigens and autoantigens indicates an active role for these HLA-D/DR molecules in autoimmune pathogenesis. IFN-gamma is capable of inducing HLA-D/DR expression by thyroid epithelium, but a number of observations suggest the involvement of other inducers as well. Overall, we conclude that epithelial class II expression very probably plays a key role in the propagation and also in possibly the initiation of autoimmune attack. This is in accord with the proposal of a more general relationship between inappropriate or excessive class II expression and pathogenesis.

Antigen-Presenting Cells↗

Inappropriate major histocompatibility complex class II expression by thyroid follicular cells in thyroid autoimmune disease and by pancreatic beta cells in type I diabetes.

"Inappropriate" expression of class II major histocompatibility complex (MHC) molecules by target cells has been found in all organ-specific autoimmune diseases so far examined for the presence of this phenomenon. These glycoproteins may have a functional role as class II+ thyrocytes are able to present both small fragments of foreign antigens and autoantigens to helper T cells. Interferon gamma is a likely modulator of MHC class II expression in the thyroid but other signals like thyroid-stimulating hormone seem to influence its action. By contrast, it appears that lymphokines are not involved in inducing the inappropriate MHC class II expression observed in situ in the pancreatic beta cells of diabetics. These data suggest that regulation of MHC class II expression is different in thyroid follicular cells from pancreatic beta cells, and that similar differences may be found in other cell types involved in autoimmune disease, thus reinforcing the concept of heterogeneity in the pathogenesis of organ-specific autoimmune disorders.

Antigen-Presenting Cells↗

Differential expression and regulation of MHC products in the endocrine and exocrine cells of the human pancreas.

Inappropriate expression of HLA Class II (D/DR) molecules has been detected in the target cells of most autoimmune diseases including Type I (insulin-dependent) diabetes. The possibility that this phenomenon is due to the action of lymphocytes or some of their products has been investigated by analysing in vitro the modulation of HLA products in Beta cells. Monolayer cultures from 25 human pancreatic glands were supplemented with alpha-interferon (IFN), beta-IFN or gamma-IFN, interleukin 2 (IL-2) and supernatants from activated lymphocytes. In addition, lectins and a variety of other hormones, biological products and chemicals were tested. Major histocompatibility complex (MHC) expression was assessed by double immunofluorescence technique using monoclonal antibodies to non-polymorphic determinants of Class I and Class II molecules and the pancreatic cells were identified by antibodies to islet hormones and other cytoplasmic antigens. gamma-IFN and lectins produced a parallel enhancement of HLA-A,B,C expression in islet, exocrine/ductal cells and fibroblasts. HLA-D/DR was inducible in all pancreatic cell types, except endocrine islet cells which did not produce Class II molecules in response to any of the stimuli including supernatants from activated lymphocytes. Exocrine/ductal cells from glands of patients with chronic pancreatitis spontaneously expressed Class II products, but islet cells were devoid of any detectable D/DR. These data are consistent with recent observations which have indicated that in the 'diabetic' pancreas inappropriate Class II expression in the Beta cells occurs independently of the presence of lymphocytes infiltrating the islets, and make it necessary to postulate that other factors are responsible for the Class II induction in Beta cells in human Type I diabetes.

Cells, Cultured↗

[Autoimmune polyendocrinopathies. Pathogenic hypotheses].

In most of the cases, once a given endocrine gland is involved, the corresponding specific autoantibody may be detected; for example, anti-islet cell antibodies are produced within the first few years, after onset of symptoms in insulin-dependent diabetes (DID). Accompanying autoantibodies are quite frequently found in the patient himself. In Schmidt's syndrome (thyroid and adrenal glands are involved and associated to IDD in 30% of the cases) thyroid microsomal antibodies are found in 38% of the cases, thyroglobulin antibodies in 11% of the cases, islet-cell antibodies in 7% of the cases and steroid cell antibodies in 17% of the cases. Associations are also possible in patient family members. Aberrant expression of HLA-DR molecules at the membrane of follicular thyroid cells (as of any other endocrine gland), following a viral aggression, could well account for the endocrinopathy combinations, but alternative mechanisms should be discussed.

Antibody Specificity↗

In vitro inhibition of insulin release mediated by sera with complement-fixing islet cell antibodies belonging to normal first degree relatives of patients with type 1 diabetes.

Islet cell antibodies (ICA) are present in the sera of most patients with Type 1 diabetes at diagnosis and in some of their genetically susceptible, but otherwise normal, first degree relatives. In this study we have investigated basal and stimulated insulin release by mouse islets following preincubation with human sera (with or without the addition of guinea pig complement) belonging to: 15 normal first degree relatives of diabetic probands; 7 patients with Type 1 diabetes; 7 control subjects with no history of diabetes. All sera had been previously screened for conventional (IgG), complement fixing (CF) and surface (S) ICA. Basal insulin release was not altered by any of the sera. The response to stimulus after incubation with ICA negative and IgG-ICA positive (but CF-ICA negative) sera was similar whether complement was present or not. Stimulated insulin release was significantly inhibited by complement and sera from 2 relatives and 3 diabetic patients. These sera were CF-ICA positive, the sera of the 2 relatives being also ICSA positive. One relative developed Type 1 diabetes 14 months later. This study demonstrates for the first time that sera containing CF-ICA and belonging to individuals susceptible to Type 1 diabetes, can impair insulin release in vitro. It is therefore likely that antibody-dependent, complement-mediated mechanisms are involved in the pathogenesis of Type 1 diabetes.

Adult↗

Interferon-gamma induces HLA-DR expression by thyroid epithelium.

We recently showed that human thyroid epithelial cells, which are normally negative for HLA-DR molecules, express HLA-DR in thyroid autoimmunity. Furthermore, induction of HLA-DR on normal thyroid cells can be achieved by culture with plant lectins. We have now found that recombinant human interferon-gamma (IFN-gamma) induces expression of HLA-DR molecules on cultured human thyroid cells, whereas Namalva IFN-alpha, recombinant IFN-beta or recombinant interleukin-2 (IL-2) do not. All three IFN, but not IL-2, enhanced thyroid cell HLA-A,B,C expression. The results strongly implicate T cells (which are the source of IFN-gamma) in the aberrant induction of DR on thyroid epithelial cells which is proposed to be a central feature of the immunopathological processes leading to autoimmunity.

Cells, Cultured↗

Asialoagalactothyroglobulin binds to the surface of human thyroid cells at a site distinct from the 'microsomal' autoantigen.

Human thyroglobulin has been shown for the first time to bind to the surface of cultured human thyroid follicular cells. Binding was only observed with partially glycosylated asialoagalactothyroglobulin, not with the fully glycosylated iodoprotein. The binding site for asialoagalactothyroglobulin in the cell membrane is distinct from membrane associated microsomal/microvilli antigen. Since asialoagalactothyroglobulin bears the autoantigenic determinants of the parent molecule, its ability to bind to the thyroid cell surface suggests a possible role for this protein in the pathogenesis of human thyroiditis.

Antigens↗

In vitro and in vivo reversal of thyroid epithelial polarity: its relevance for autoimmune thyroid disease.

A method is described for culturing intact human thyroid follicles, based on the study of 40 thyroidectomy specimens from normal (n = 18) and diseased glands (n = 22). Reversal of the normal polarity of thyrocytes, whereby the microvilli move from the colloid edge to the vascular pole of the cells, occurs gradually when the amount of fetal calf serum (FCS) is changed from 0.5% to 10%. The translocation of thyroid 'microvillar' antigens, (surface expression of 'microsomal' and a separate surface antigen) from the follicular to the vascular pole of thyrocytes was assessed by indirect immunofluorescence with human sera containing microsomal antibodies, as well as by electron microscopy. In normal and diseased thyroid glands up to 80% of follicles became reversed after 5-10 days in high FCS and the microsomal/microvillar antigen persisted for about twice as long as in monolayer cultures. Spontaneous reversal of polarity was observed in six of eight glands from patients with Graves' thyrotoxicosis or toxic nodular goitre in freshly dispersed tissues or after 2 days in 0.5% FCS, unlike normal tissues where only a trace of reversal appeared after 7 days of culture under these conditions. It is postulated that polarity reversal may play a role in human thyroid autoimmunity as the normally secluded 'microvillar' antigens becomes transposed to the vascular pole of thyroid follicles where they are in direct contact with cytotoxic antibodies or sensitized immunocytes. This could initiate lesions in intact follicles. Inappropriate HLA-DR expression on thyrocytes, either stimulated by phytohaemagglutinin (PHA) or appearing spontaneously as an early marker of thyroiditis, did not correlate with reversal of polarity.

Antigens, Surface↗

Aberrant expression of HLA-DR antigen on thyrocytes in Graves' disease: relevance for autoimmunity.

To investigate the expression of class II histocompatibility antigens HLA-DR in the thyrocytes in autoimmune thyroid diseases, 47 thyroidectomy specimens were examined by immunofluorescence with monoclonal antibodies to the nonpolymorphic region of the DR molecule. Aberrant DR expression was most marked in the Hashimoto gland, with the entire section being strongly stained. DR expression was seen in discrete groups of follicles in 20/26 thyroids from patients with Graves' disease, in 2/9 non-toxic nodular goitres, and in none of 11 specimens of "normal" thyroid. The presence of lymphoid foci, "activated" T-cells, and immune complexes on the follicular basement membrane were not regularly associated with the DR-positive thyroid acini. HLA-A,B,C expression was also increased in the diseased glands. Expression of HLA-DR thus seems to be one of the earliest manifestations of autoimmune lymphocytic thyroiditis.

Adult↗