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Biomedical subjects

E Borda

Publications and source records attributed to E Borda.

At least 55 records · Page 3Linked to original sources

Erythropoietin modified the cardiac action of ouabain in chronically anaemic-uraemic rats.

The results of the studies reported here demonstrate the cardiac non-haematopoietic effect of erythropoietin, providing a new physiological function of the hormone. We demonstrate that myocardium from rat with chronic renal failure (CRF) showed an abnormal response to ouabain associated with an inhibition of cardiac Na+/K+/ATPase activity and with a decrease in the high affinity 3H-ouabain binding sites. The extent to which both actions were improved with the recombinant human erythropoietin (rHuEpo) treatment suggests that the lack of the hormone is responsible for this phenomenon. The fact is that neither contractile nor enzymatic action of rHuEpo was accompanied with the improvement of the functional renal and haematologic parameters, indicating a primary effect on myocardial contractile function of rHuEpo, independent of the anaemic and uraemic state of the animal. The reason why erythropoietin is able to modulate directly the cardiac Na+/K+ pump makes it possible to conclude that the lack of erythropoietin in CRF may be at least in part responsible for the inhibition of cardiac enzymes, altering the contractile behaviour of the heart.

4-Nitrophenylphosphatase↗

Alterations in cardiac muscarinic acetylcholine receptors in mice with autoimmune myocarditis and association with circulating muscarinic receptor-related autoantibodies.

Hearts from mice hyperimmunized with cardiac tissue were studied to evaluate the expression and biological activity of muscarinic cholinergic receptors and immunoglobulin G deposits along the immunization period. Mice were sacrificed at 10 day intervals from the first injection up to day 100. Simultaneously, the activity of autoantibodies against muscarinic receptors on normal hearts was also examined in sera. Hearts with autoimmune myocarditis showed a muscarinic receptor-related dysfunction, with an impaired response to exogenous muscarinic agonists and a significant reduction in muscarinic binding sites, both effects being maximum at 40-50 days post-immunization. In addition, serum or immunoglobulin G from mice with myocarditis were able to interact with muscarinic acetylcholine receptors displaying a partial agonist effect. Autoimmune sera and immunoglobulin G reduced heart contractility while inhibited 3H-QNB binding to cardiac acetylcholine receptors in a concentration dependent manner showing the highest effects at days 40-50 and decreased progressively thereafter. The development of muscarinic receptor-related cardiac dysfunction may be associated with the presence of circulating antibodies having muscarinic receptor activity. These studies are of relevance to clinical conditions such as Chagas' disease, where immunological processes involving the cholinergic system are considered to cause cardiomyopathy.

Animals↗

Identification of antibodies with muscarinic cholinergic activity in human Chagas' disease: pathological implications.

We examined the possible role of altered humoral immunity in dysautonomic syndrome in Chagas' disease by analyzing the effect of sera and IgG on the binding of radioligand to heart muscarinic cholinergic receptors and on the contractility of myocardium. Human Chagasic IgG inhibited in a non-competitive manner the binding of [3H]quinuclidinyl benzilate to the cardiac cell membrane. Moreover, human Chagasic IgG behaved as a partial muscarinic cholinergic agonist, reducing heartcontractility and inhibiting the action of pilocarpine. The prevalence of the cholinergic antibody activity was higher in sera from T. cruzi-infected asymptomatic individuals with dysautonomic syndrome than in those without autonomic nervous system alterations. The presence of these antibodies could explain the progressive receptor blockade in the parasympathetic branch of the autonomic nervous system, leading to dysautonomia.

Animals↗

Effect of histamine in autoimmune myocarditis mice.

The contractile effect of histamine, as well as the H1 receptor population and H2 receptor-mediated cAMP production, were measured in cardiac tissue from control normal and autoimmune myocarditis mice. Histamine triggered positive chronotropy and negative inotropy at high concentrations in both control and autoimmune auricles, H2 receptors being the most important mediator of these responses. In contrast, in atria from autoimmune myocarditis mice, histamine at lower concentrations caused positive inotropy and negative chronotropy. These effects, not verified in the normal control atria, are mediated by H1 receptors. The expression of H2 and H1 receptors mediating the cardiac response to histamine was evaluated through histamine-stimulated cAMP level and binding of [3H] mephyramine, respectively. Both control and autoimmune myocardium were able to increase cAMP levels, an effect that was inhibited by H2 antagonist drug. The amount of cAMP was significantly higher in control myocardium than in those from autoimmune ones. Saturable binding of [3H] mephyramine occurs in autoimmune myocardium, with distinct high and low affinity binding sites. In control myocardium non-saturable binding was detected. These results suggest that H1 and H2 receptors coexist in heart from autoimmune myocarditis mice, whereas only H2 receptors are present in myocardium from control mice. The presence of H1 receptors in autoimmune myocardium could be an important factor in the regulation of its physiological behaviour.

Animals↗

Participation of cytoskeleton in the effect of antilaminin IgG on cardiac cholinoceptors.

1. We have previously demonstrated a molecular relationship between laminin and cardiac cholinoceptors. 2. We have now explored the participation of cytoskeletal proteins in the interaction between an antilaminin IgG with cardiac cholinoceptors. 3. Antilaminin IgG, whilst it specifically reacts with laminin molecules was able to induce cardiac cholinoceptor activation; acting like an agonist, decreasing cyclic AMP concentrations, reducing heart contractility and increasing phosphoinositide turnover. 4. Antilaminin IgG also interfered with the binding of a radiolabelled muscarinic antagonist, [3H]-quinuclidinyl benzilate. Colchicine and cytochalasin B, drugs that are able to prevent microfilament and microtubule polimerization, impaired the binding of antilaminin IgG to muscarinic cholinoceptors. 5. Cytochalasin B but not colchicine modified the muscarinic cholinoceptor effects mediated by regulatory G proteins (cyclic AMP and contractility) induced by antilaminin IgG. 6. It was demonstrated, by immunofluorescence, that none of these disrupting drugs altered the specific recognition of the antibody by its antigen. 7. These data indirectly suggest the participation of the cytoskeleton in the laminin and cholinergic receptor association.

Animals↗

Myocardial mitogenic effect of erythropoietin through the activation of Na(+)-K(+)-ATPase activity.

Erythropoietin is considered unique among the hematopoietic growth factor with a specific action on the differentiation and proliferation of erythroid progenitor cells. We have observed a dose-dependent modulatory action of human recombinant erythropoietin (rHuEpo) stimulated the rate of cell growth but at higher ones (3-10 U/ml) inhibited it. The mitogenic action of the hormone is correlated with cardiac membrane Na(+)-K(+)-ATPase activity since concentrations of rHuEpo that increased cell growth stimulated paranitrophenilphosphatase (pNPPase) activity, while those concentrations that inhibit the enzyme markedly bloqued its mitogenic action. Moreover, ouabain (10(-5) M), concentration that inhibits Na(+)-K(+)-ATPase activity, blunted the stimulatory action of rHuEpo on cell proliferation. We also demonstrated that rHuEpo while activated the cardiac membrane Na(+)-K(+)-ATPase was able to alter the contractile action of ouabain on isolated neonatal rat atria. Indeed rHuEpo (1 U/ml) enhanced the non toxic action of the cardiac glycoside attenuating and delaying the onset of the toxic effect of the drug. These results show that rHuEpo has a non hematopoietic cardiac effect, associated with the cardiac Na(+)-K(+)-ATPase activity, that regulates the myocytes growth and the biological action of cardiac glycosides on isolated rat myocardium.

Animals↗

Expression of histamine H1 receptors in autoimmune myocarditis mice.

Two populations of histaminergic H1 receptors with distinct high and low affinity binding sites were characterized by the specific H1 receptor antagonist [3H]mepyramine in autoimmune myocardium. No saturable binding of the radiolabelled H1 antagonist was observed in normal myocardium. Reaction of autoimmune myocardium with specific H1 agonist (2-thiazolylethylamine (ThEA)) triggered positive inotropy and negative chronotropy, which were inhibited by mepyramine. Inhibitors of phospholipase C and protein kinase C attenuated both the inotropic and chronotropic effects of ThEA, suggesting the participation of phosphoinositide hydrolysis in this phenomenon. The latter was verified by measurement of polyphosphoinositide hydrolysis in autoimmune myocardium following the reaction of ThEA with histaminergic H1 receptors. We conclude that functional H1 histaminergic receptors could involve a distinctive mechanism operating in autoimmune myocardium as a result of cardiac antigen immunization.

Animals↗

Autoantibodies in HIV-infected patients that modulate the cholinergic activity of heart and gut tissue.

In human immune deficiency virus (HIV) disease, direct infection of heart tissue with HIV and repeated intestinal infections with opportunistic pathogens are thought to be the main cause of cardiac disease and diarrhoea respectively. A role for autoimmune phenomena may also be involved in the pathogeny of HIV disease. In this study, we demonstrate that immunoglobulins from the A and G classes from HIV positive patients are able to interfere with the function of the muscarinic cholinergic receptors from heart and gut. Both IgA and IgG HIV+ preparations decreased the tension of isolated atria and increased the tension of isolated ileum. The mechanical effect of carbachol was inhibited in both atria and ileum preparations, when they were preincubated with either IgA or IgG HIV+ fractions. An inhibitor of muscarinic cholinergic receptors (atropine) impaired the negative inotropic action of HIV+ immunoglobulins (Ig) on the heart and prevented the positive inotropic effect of HIV+ Igs on ileum. HIV+ IgA fraction was approximately ten fold more potent to interfere with the cholinergic function as compared to the IgG fraction. These results suggest that antibodies present in HIV+ serum may also modulate muscle's cholinergic activity in the heart and ileum from HIV+patients.

Animals↗

Allopregnant IgG binds and modulates the activity of uterine beta adrenoceptors.

Female Balb/c mice were mated to C3H male mice, to obtain an allopregnant IgG. This allopregnant IgG con activate beta-adrenoceptors of C3H uterus. Here we show that allopregnant IgG interacts with beta-adrenoceptors in uterus of C3H mice and produces a decrease of the spontaneous motility and an increase of the intracellular cAMP concentration. Both effects are blocked by propranolol, a beta-adrenergic antagonist. Allopregnant IgG interferes with the binding of a specific beta adrenergic radioligand 3H-dihydroalprenolol behaving as a non competitive inhibitor. All these data indicate that allopregnant IgG could modulate the activity of uterine beta-adrenoceptors.

Animals↗

Modification of G regulatory protein mediated actions by the interaction of histocompatibility antigens with cardiac muscarinic cholinergic receptors.

In this work we characterized the interaction of class I histocompatibility (HC) antigens (Ag) with cardiac cholinergic receptors by means of specific radioligand binding and by production of cholinergic-mediated cellular transmembrane signals. Alloimmune as well as anti-class I but not anti-class II antibodies were able to inhibit in an allosteric manner the binding of [3H]quinuclidinyl benzilate to cardiac membrane. Moreover, alloantibody could modify all of the muscarinic cholinergic effects mediated by a G regulatory protein, i.e. decrement of atria contractility, inhibition of cAMP stimulation, and activation of the turnover of phosphoinositides via phospholipase C. The cGMP production was not altered by the alloantibody. The data indirectly indicated that HC-Ag-muscarinic cholinergic interactions trigger all the cholinergic functions related to G proteins. The induction of intracellular second messengers by class I antigens and hormone-receptor interactions is discussed.

Animals↗

T lymphocytes from T. cruzi-infected mice alter heart contractility: participation of arachidonic acid metabolites.

T lymphocytes from T. cruzi infected mice susceptible to the development of myocarditis altered the contractility of normal mouse atria in vitro. While lymphocytes obtained from normal mice had no effect, lymphocytes from T. cruzi-infected mice cultured with normal atria induced negative or positive inotropic effects depending upon the post-infection period; negative inotropism was induced by lymphocytes obtained from animals at 1 to 4 weeks post-infection, and positive inotropism was induced by lymphocytes taken at 7 to 14 weeks post-infection. These effects were mediated by soluble factors as evidenced by the ability of lymphocyte culture supernatants to alter contractility. Cell enrichment experiments indicated that T lymphocytes rather than B lymphocytes were responsible for these inotropic effects. Lyt(2+)-enriched T lymphocytes were found to be responsible for triggering the negative inotropic effect at 3 weeks post-infection when myocarditis was less intense, whereas Lyt1(+)-enriched T lymphocytes induced the positive inotropic effect at 8 weeks after T. cruzi infection when myocarditis was severe. Furthermore, inhibitors of the cyclooxygenase pathway of arachidonic acid metabolism blunted the negative inotropic effect while inhibitors of lipoxygenase pathway inhibited the positive inotropic effect. PGE2 was found to be spontaneously released by Lyt(2+)-enriched T cells obtained at 3 weeks post-infection while LTC4 was released by atria cultured in the presence of Lyt 1+ T cells obtained at 8 weeks post-infection. In conclusion, these findings suggest that infiltrating T lymphocytes may contribute to myocardial dysfunction during T. cruzi infection by releasing or inducing the release of harmful arachidonic acid metabolites such as PGE2 and LTC4 which alter normal cardiac function.

Animals↗

Prostanoids synthesis in lymphocyte subpopulations by adrenergic and cholinergic receptor stimulation.

The release of eicosanoids (PGE2 and TXB2) as a consequence of specific neurotransmitter receptor agonist stimulation is described herein. The differential expression of beta adrenergic and muscarinic cholinergic receptors on sets and subsets of lymphocytes was first identified. Saturation assays with a specific radioligand for beta adrenergic receptors (3H-DHA) showed that B-, T-, T-helper (Th) and T-suppressor/cytotoxic (Ts/c) lymphocyte enriched populations all displayed beta adrenergic receptors. In contrast, when a specific radioligand for muscarinic cholinergic receptors (3H-QNB) was used, B-lymphocytes showed a lack of high-affinity muscarinic cholinergic receptors, while T-lymphocytes expressed them. Ts/c murine lymphocytes had more muscarinic cholinergic receptors than did Th cells. Specific receptor stimulation by the agonist caused a release of different eicosanoids depending on the cell type. Isoproterenol, triggered the release of TXB2 by B and Th-cells, but had no effect on Ts/c-cells. On the other hand, the muscarinic cholinergic agonist, carbachol only induced the release of PGE2 by Ts/c-cells. These results suggest differences in the expression and function of neurotransmitter receptors in sets and subsets of murine lymphocytes regarding the release of eicosanoids.

Animals↗

Chagasic IgG stimulates phosphoinositide hydrolysis via neurotransmitter receptor activation: role of calcium.

Induction of polyphosphoinositide hydrolysis in cardiac tissue by IgG from chagasic mice was assayed. BALB/c mice auricles were labelled with myo-[3H]inositol precursor and inositol phosphate production in the presence or absence of chagasic IgG and the corresponding F(ab')2 was measured. Both chagasic IgG and F(ab')2 but not the normal forms specifically increased phosphoinositide turnover. This increment was blocked by muscarinic cholinergic antagonists and to an even greater extent by the phospholipase C inhibitor NCDC. Moreover, calcium channel blocking agents such as diltiazem, verapamil and D-600 also exerted an inhibitory action. A muscarinic cholinergic agonist, carbachol, and the ionophore A-23187, mimicked the action of the chagasic IgG upon phosphoinositide turnover. It is concluded that murine chagasic IgG and its F(ab')2 fragments result in stimulation of phospholipase C-mediated phosphoinositide hydrolysis through the interaction with muscarinic cholinergic receptors requiring the cytosolic calcium concentration to be raised.

Animals↗

Cholinergic response of isolated rat atria to recombinant rat interferon-gamma.

Addition of recombinant rat interferon-gamma (IFN-gamma) to beating rat atria decreased the contractile strength in a dose-dependent manner. The effect was specific of IFN-gamma since it was abrogated by monoclonal anti-rat IFN-gamma. It required the activation of the cholinergic system of the heart as inhibition of both nicotinic (10(-7) M hexametonium) and muscarinic cholinoceptors (10(-7) M atropine) prevented the reaction. Hemicholinium (2 x 10(-5) M) and tetrodotoxin (5 x 10(-7) M) also reduced the response. Likewise, IFN-gamma potentiated the action of the muscarinic agonist carbachol. IFN-gamma simulated the biological effect of cholinergic agonists because: (a) it increased cGMP formation; (b) it decreased cAMP formation; and (c) it reduced heart contractility at doses that can be considered physiologic. IFN-gamma also modified the muscarinic receptor by interfering with the binding of the radiolabelled antagonist quinuclidinyl benzilate [( 3H]QNB). It is suggested that IFN-gamma binding to IFN-gamma receptors in the heart may lead to a cholinergic response by interaction of both receptor systems on the surface of atrial cells.

Animals↗

Distribution of antibodies against beta-adrenoceptors in the course of human Trypanosoma cruzi infection.

We examined the possible role of altered humoral immunity in Chagas' disease by analyzing the effect of sera on the binding of radioligand to beta-adrenoceptors during the course of human Trypanosoma cruzi infection. We described two circulating IgG which bind with myocardial beta 1- and spleen cell beta 2-adrenoceptor. Both chagasic IgG against beta 1- and beta 2-adrenoceptors increased intracellular levels of cAMP, which could be blocked by specific beta 1- and beta 2-adrenoceptor antagonists. The IgG against the beta 1-adrenoceptor inhibited the action of norepinephrine on the contractility of atria. We also found differences in the distribution of beta 1- and beta 2-adrenoceptor antibodies in the course of infection. The anti-beta 2-adrenoceptor IgG appears during the acute stage, peaks on the group with less than 10 years of infection, and then decreases. The prevalence of anti-beta 1-adrenergic antibody is low in the acute stage, but it increases over time since infection, being higher in the group with more than 15 years of infection. The probable pathogenic role of both beta 1- and beta 2-adrenergic chagasic antibodies is discussed.

Acute Disease↗

Major histocompatibility complex modulation of beta-adrenoceptor function.

Reciprocal interaction between beta-adrenoceptor specific ligand occupancy and alloantibody binding to specific antigens of cardiac and smooth muscle tissues was observed. Interference of alloimmune antibody fixation to both cardiac and oviductal tract preparations by beta 1 or beta 2 selective blockers, respectively, was obtained by means of indirect immunofluorescence assays. Reciprocally, alloimmune IgG and monoclonal antibodies directed to class I H-2 antigens, behaving as beta-adrenoceptor agonists, modified the contractility of both tissues, increasing intracellular levels of cyclic AMP (cAMP). Additionally, alloantibodies were also capable of inhibiting specific beta-adrenoceptor radioligand binding to purified cardiac and smooth muscle membranes. These data suggested a modulation of beta-adrenoceptor function by antibodies directed against H-2 class I histocompatibility molecules, probably through molecular interactions between both structures.

Animals↗

Production of thromboxanes by transformed lymphocytes--effect on heart contractility.

We studied the effect of transformed lymphocytes from patients with chronic lymphocytic leukaemia (CLL) and the Raji cell (Raji) on the response of rat isolated atria to sodium arachidonate (AA). In contrast to normal lymphocytes, CLL cells and Raji cells decrease the contractile tension of rat isolated atria. Addition of exogenous AA (1.98 X 10(-6) M) to Raji, further reduced the isometric developed tension. Time of culture of Raji was important, as the negative inotropic effect was greater at 72 h than at 24 h of culture. Living cells were required and cell-free supernatants were inactive. Preincubation of CLL cells or Raji with cyclooxygenase inhibitors (acetyl salycilic acid, indomethacin) or inhibitors of thromboxane (TX) synthesis (imidazole, L-8027) abolished the negative inotropic response suggesting the contribution of TXs. L-8027 also reduced the growth rate of Raji cells, indicating that TXs may play a role in the regulation of cell division. The production of TXs by CLL and Raji cells from both endogenous and exogenous sources provided additional support to this hypothesis and suggested that activation of this metabolic pathway may be related to cell transformation.

Animals↗

Antilaminin IgG releases TXB2 through activation of the cholinergic system.

Antilaminin IgG was bound to cholinergic muscarinic receptors of normal mice heart and released TXB2, simulating the biological effect of a cholinergic agonist. Antilaminin IgG interfered with the binding of the radiolabelled muscarinis antagonist (-)3H-QNB in a noncompetitive fashion. Following the interaction of the antibody with the cholinergic receptor, an increased production of TXB2 occurred. This effect required the activation of the muscarinic cholinergic system, because it was blunted by atropine and mimicked by acetylcholine.

Animals↗