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1.
Braz. j. med. biol. res ; 39(12): 1581-1586, Dec. 2006. ilus
Article in English | LILACS | ID: lil-439688

ABSTRACT

Most contacts with food protein and microbiota antigens occur at the level of the gut mucosa. In animal models where this natural stimulation is absent, such as germ-free and antigen-free mice, the gut-associated lymphoid tissue (GALT) and systemic immunological activities are underdeveloped. We have shown that food proteins play a critical role in the full development of the immune system. C57BL/6 mice weaned to a diet in which intact proteins are replaced by equivalent amounts of amino acids (Aa diet) have a poorly developed GALT as well as low levels of serum immunoglobulins (total Ig, IgG, and IgA, but not IgM). In the present study, we evaluated whether the introduction of a protein-containing diet in 10 adult Aa-fed C57BL/6 mice could restore their immunoglobulin levels and whether this recovery was dependent on the amount of dietary protein. After the introduction of a casein-containing diet, Aa-fed mice presented a fast recovery (after 7 days) of secretory IgA (from 0.33 to 0.75 mg/mL, while in casein-fed mice this value was 0.81 mg/mL) and serum immunoglobulin levels (from 5.39 to 10.25 mg/mL of total Ig). Five percent dietary casein was enough to promote the restoration of secretory IgA and serum immunoglobulin levels to a normal range after 30 days feeding casein diet (as in casein-fed mice - 15 percent by weight of diet). These data suggest that the defect detected in the immunoglobulin levels was a reversible result of the absence of food proteins as an antigenic stimulus. They also indicate that the deleterious consequences of malnutrition at an early age for some immune functions may be restored by therapeutic intervention later in life.


Subject(s)
Animals , Female , Mice , Dietary Supplements , Dietary Proteins/immunology , Immunoglobulin Isotypes/biosynthesis , Caseins/administration & dosage , Diet, Protein-Restricted , Enzyme-Linked Immunosorbent Assay , Immunoglobulin Isotypes/blood , Time Factors
2.
Braz. j. med. biol. res ; 36(9): 1227-1232, Sept. 2003. ilus, graf
Article in English | LILACS | ID: lil-342862

ABSTRACT

The gut mucosa is a major site of contact with antigens from food and microbiota. Usually, these daily contacts with natural antigens do not result in inflammatory reactions; instead they result in a state of systemic hyporesponsiveness named oral tolerance. Inflammatory bowel diseases (IBD) are associated with the breakdown of the immunoregulatory mechanisms that maintain oral tolerance. Several animal models of IBD/colitis are available. In mice, these include targeted disruptions of the genes encoding cytokines, T cell subsets or signaling proteins. Colitis can also be induced by intrarectal administration of chemical substances such as 2,4,6-trinitrobenzene sulfonic acid in 50 percent ethanol. We report here a novel model of colitis induced by intrarectal administration of 50 percent ethanol alone. Ethanol-treated mice develop an inflammatory reaction in the colon characterized by an intense inflammatory infiltrate in the mucosa and submucosa of the large intestine. They also present up-regulation of both interferon gamma (IFN-gamma) and interleukin-4 (IL-4) production by cecal lymph node and splenic cells. These results suggest a mixed type of inflammation as the substrate of the colitis. Interestingly, cells from mesenteric lymph nodes of ethanol-treated mice present an increase in IFN-gamma production and a decrease in IL-4 production indicating that the cytokine balance is altered throughout the gut mucosa. Moreover, induction of oral tolerance to ovalbumin is abolished in these animals, strongly suggesting that ethanol-induced colitis interferes with immunoregulatory mechanisms in the intestinal mucosa. This novel model of colitis resembles human IBD. It is easy to reproduce and may help us to understand the mechanisms involved in IBD pathogenesis


Subject(s)
Animals , Humans , Mice , Colitis , Disease Models, Animal , Ethanol , Interferon-gamma , Interleukin-4 , Ovalbumin , Administration, Rectal , Colitis , Enzyme-Linked Immunosorbent Assay , Ethanol , Immune Tolerance , Intestinal Mucosa , Lymph Nodes , Mesentery , Mice, Inbred BALB C
3.
Braz. j. med. biol. res ; 36(1): 13-22, Jan. 2003.
Article in English | LILACS | ID: lil-326312

ABSTRACT

Current immunological opinion disdains the necessity to define global interconnections between lymphocytes and regards natural autoantibodies and autoreactive T cells as intrinsically pathogenic. Immunological theories address the recognition of foreignness by independent clones of lymphocytes, not the relations among lymphocytes or between lymphocytes and the organism. However, although extremely variable in cellular/molecular composition, the immune system preserves as invariant a set of essential relations among its components and constantly enacts contacts with the organism of which it is a component. These invariant relations are reflected, for example, in the life-long stability of profiles of reactivity of immunoglobulins formed by normal organisms (natural antibodies). Oral contacts with dietary proteins and the intestinal microbiota also result in steady states that lack the progressive quality of secondary-type reactivity. Autoreactivity (natural autoantibody and autoreactive T cell formation) is also stable and lacks the progressive quality of clonal expansion. Specific immune responses, currently regarded as the fundament of the operation of the immune system, may actually result from transient interruptions in this stable connectivity among lymphocytes. More permanent deficits in interconnectivity result in oligoclonal expansions of T lymphocytes, as seen in Omenn's syndrome and in the experimental transplantation of a suboptimal diversity of syngeneic T cells to immunodeficient hosts, which also have pathogenic consequences. Contrary to theories that forbid autoreactivity as potentially pathogenic, the physiology of the immune system is conservative and autoreactive. Pathology derives from failures of these conservative mechanisms


Subject(s)
Animals , Humans , Immune System , Antigen-Antibody Reactions , Autoantibodies , Autoantigens , Immune System , Models, Immunological , T-Lymphocytes
4.
Braz. j. med. biol. res ; 34(2): 211-219, Feb. 2001.
Article in English | LILACS | ID: lil-281598

ABSTRACT

Initial contacts with a T-dependent antigen by mucosal routes may result in oral tolerance, defined as the inhibition of specific antibody formation after subsequent parenteral immunizations with the same antigen. We describe here an additional and permanent consequence of these initial contacts, namely, the blockade of secondary-type responsiveness to subsequent parenteral contacts with the antigen. When repeatedly boosted ip with small doses (3 æg) of ovalbumin (OVA) (or lysozyme), primed B6D2F1 mice showed progressively higher antibody responses. In contrast, mice primed after a single oral exposure to the antigen, although repeatedly boosted, maintained their secondary antibody titers on a level which was inversely proportional to the dose of antigen in the oral pretreatment. This phenomenon also occurred in situations in which oral tolerance was not induced. For example, senile 70-week-old B6D2F1 mice pretreated with a single gavage of 20 mg OVA did not become tolerant, i.e., they formed the same secondary levels of anti-OVA antibodies as non-pretreated mice. However, after 4 weekly challenges with 3 æg OVA ip, orally pretreated mice maintained the same anti-OVA serum levels, whereas the levels of control mice increased sequentially. This "stabilizing" effect of mucosal exposure was dose dependent, occurred with different proteins and was triggered by single or multiple oral or nasal exposures to the antigen


Subject(s)
Animals , Mice , Antibody Formation/immunology , Immune Tolerance/immunology , Immunity, Mucosal/immunology , Ovalbumin/administration & dosage , Administration, Intranasal , Analysis of Variance , Case-Control Studies , Enzyme-Linked Immunosorbent Assay , Immunization, Secondary , Infusions, Parenteral , Mice, Inbred C57BL , Mice, Inbred DBA , Ovalbumin/immunology
5.
Braz. j. med. biol. res ; 31(3): 377-80, Mar. 1998. graf
Article in English | LILACS | ID: lil-212273

ABSTRACT

Interest in oral tolerance has been renewed in the last few years as a possibility of intervention in human autoimmume diseases. An obstacle in this direction in that, although easily induced in animals virgin of contact with the antigen, oral tolerance becomes hard to induce in previously immunized animals. The present results show that there is an early period after primary immunization in which prolonged oral exposure to the antigen may arrest ongoing immune responses. Beyond this period, oral exposures to the antigen become ineffective and may actually boost immune responses. The end of the susceptible period coincides with the emergence of free specific antibodies in serum. However, the previous administration of purified anti-ovalbumin antibodies (40 mug) was unable to block the induction of oral tolerance to ovalbumin in normal mice.


Subject(s)
Animals , Female , Antibody Formation/immunology , Antigens , Autoimmune Diseases/immunology , Desensitization, Immunologic , Administration, Oral , Antibody Formation/immunology , Antigens/immunology , Immune Tolerance/immunology , Mice , Ovalbumin , Ovalbumin/immunology , Time Factors
6.
Braz. j. med. biol. res ; 31(3): 381-6, Mar. 1998. graf
Article in English | LILACS | ID: lil-212284

ABSTRACT

As a T cell-dependent phenomenon, oral tolerance is not expected to depend necessarily on native configuration of antigens. We investigated the induction of oral tolerance with modified ovalbumin (Ova). Oral administration of heat-denatured (HD-Ova) and cyanogen bromide-degraded ovalbumin was less effective than native Ova in inducing oral tolerance in B6D2F1 mice. HD-Ova was effective in suppressing delayed-type hypersensitivity (DTH) reactions but did not suppress specific antibody formation. Injection of Ova directly into the stomach, but not into the ileum or cecum, suppressed subsequent immunization to DTH reactions. Gavage with protease inhibitors (aprotinin or ovomucoid) before gavage with Ova was ineffective in blocking tolerance induction. Treatment with hydroxyurea to destroy cycling cells 24 h before gavage with Ova blocked oral tolerance induction and also the possibility to passively transfer tolerance to naive recipients with tehe serum of mice gavaged with Ova 1 h before. The implications of these findings about oral tolerance induction are discussed.


Subject(s)
Animals , Female , Immune Tolerance/physiology , Ovalbumin/immunology , Serine Proteinase Inhibitors/immunology , Administration, Oral , Antibody Formation , Enzyme-Linked Immunosorbent Assay , Mice , Ovalbumin
7.
Braz. j. med. biol. res ; 31(1): 35-48, Jan. 1998. tab, graf
Article in English | LILACS | ID: lil-212539

ABSTRACT

In the present review we address oral tolerance as an important biological phenomenon and discuss how it is affected by aging. Other factors such as frequency of feeding and previous digestion of the antigen also seem to influence the establishment of oral tolerance. We also analyze immunoglobulin isotypes of specific antibodies formed by tolerant and immunized animals of different ages submitted to different conditions of oral antigen administration. Isotypic patterns were studied as a parameter for assessing the pathways of B and T cell interactions leading to antibody production.


Subject(s)
Mice , Animals , Aging/immunology , Diet , Immune Tolerance/immunology , Immunoglobulin Isotypes/analysis , Aging/physiology , Enzyme-Linked Immunosorbent Assay , Immune Tolerance/physiology , Mucous Membrane
8.
Braz. j. med. biol. res ; 21(4): 825-36, 1988. ilus, tab
Article in English | LILACS | ID: lil-60800

ABSTRACT

We show that mouse strains differ widely in susceptibility to tolerance induction and/or immunization (priming) following contact of protein antigens (ovalbumin, human or bovine gamma globulins) with different mucosal surfaces. 2. When compared to a control group pretreated with saline, mice pretreated by the oral (intragastric) route with antigen became significantly less responsive to subsequent parenteral immunization (i.e., tolerant). This was observed in most, but not all, antigen/strain combinations. 3.Similar, although less prominent changes were induced by pretreatments with antigen by the ocular (conjunctival) route. 4. No significant effects were following pretreatments by the nasal, vaginal, or rectal routes. 5. Genes present in strains selected for multispecific "high" or "low" responsivencess are included among those involved in tolerance induction following mucosal contacts with protein antigens


Subject(s)
Mice , Animals , Male , Female , BCG Vaccine/administration & dosage , Mice, Inbred Strains/immunology , Chorionic Gonadotropin/administration & dosage , Immune Tolerance , Immunization , Ovalbumin/administration & dosage
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