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Breast feeding increases concentrations of IgA in infants' urine.

To investigate the influence of breast feeding on mucosal immunity the concentrations and daily outputs of IgA and lactoferrin in urine were measured in 10 breast fed and 12 infants fed on formula milk at 6 and 12 weeks of age. The concentrations and outputs of secretory IgA in urine were significantly higher in the breast fed group by a factor of three. The secretion of IgA in urine by the breast fed infants was characteristic of the baby and was not related to the intake of IgA from breast milk. Lactoferrin concentrations were similar in the two groups at both ages. In addition to secretory IgA, two thirds of all samples contained proteins with alpha chain but no secretory component antigenic determinants. Breast feeding seems to increase the local production of secretory IgA into the urinary tract during early childhood, thus providing enhanced protection from infection.

Breast Feeding↗

The specificity of the human neutrophil IgA receptor (Fc alpha R) determined by measurement of chemiluminescence induced by serum or secretory IgA1 or IgA2.

Heat or chemically aggregated IgA or IgG stimulated degranulation of neutrophils with comparable efficiency. The same aggregates induced a neutrophil respiratory burst which could be measured by lucigenin-enhanced chemiluminescence. Serum IgA1 or IgA2 coated onto microtitre plates were both capable of inducing a respiratory burst in neutrophils, as was secretory IgA1 or secretory IgA2. All bursts were of similar size for a given concentration of IgA and were greater than the burst elicited by an equivalent concentration of IgG. For each subclass of IgA the respiratory bursts were dependent on their density on the opsonized surface. Since monomeric and dimeric forms present in secretory IgA preparations both elicit a respiratory burst in neutrophils, secretory component and J chain cannot block the receptor binding site on the Fc region. The potential of secretory IgA to act as an opsonin might have important consequences on mucosal surfaces where the availability of complement components is limited.

Antigens, CD↗

A comparison of secretory proteinases from different strains of Candida albicans.

Randomly selected strains of Candida albicans were grown with bovine serum albumin (BSA) as a single nitrogen source. From all strains tested, culture supernatant contained carboxyl proteinase (E.C.3.4.23) as has been shown that with hemoglobin as a substrate and by specific inhibition with pepstatin-A. According to the separation pattern of BSA fragments, secretory proteinases from C. albicans belong to at least three groups. We have purified the partially proteolytic enzyme of strain 113 and have compared its properties with those of the totally proteolytic enzyme of strain CBS 2730. Both enzymes have virtually identical molecular weight (ca. 44,000) and cross-react immunologically; they differ in pH optimum, isoelectric point, substrate specificity, and resistance against alkali. IgG1, which is the prevalent immunoglobulin of human serum, was not cleaved by enzyme 113. Immunoglobulins A1, A2 and secretory component were cleaved by both enzymes, which points to a role of the secretory proteinases in the persistence of yeasts on mucous membranes. Differences in the course of alkaline denaturation indicate that only a fraction of strain-specific proteinases is capable to convey long-range effects in the host.

Antibodies, Fungal↗

Changes in rat parotid salivary proteins induced by chronic isoproterenol administration.

Changes in the rat parotid gland and its secretion, brought about by chronic isoproterenol administration, were studied. In addition to the expected enlargement, morphological and biochemical analyses of the glands showed evidence of changes in the secretory components. Chromatographic and electrophoretic experiments revealed both qualitative and quantitative changes in the secretory proteins.

Amino Acids↗

Neutralizing antibodies against Escherichia coli and Vibrio cholerae enterotoxins in human milk from a developing country.

By means of the adrenal cell assay and the rabbit small-bowel loop technique enterotoxin-neutralizing antibodies were demonstrated in all investigated milk samples from severely undernourished Pakistani women but, with a single exception, not in milk from Swedish mothers. The antibodies belonged to the IgA and IgG classes as observed in an enzyme-linked immunosorbent assay, which also revealed secretory component on specific enterotoxin antibodies, showing that the IgA antibodies were primarily of the secretory type. The epidemiological stituation and experimental data strongly indicate that Escherichia coli enterotoxin rather than immunologically cross-reactive Vibrio cholerae toxin in most cases constituted the antigenic stimulus for the milk antibodies. The presence in the milk of the Pakistani mothers of secretory IgA antibodies against an important diarrheogenic agent may have practical importance for protection of the breast-fed baby and probably also illustrates the frequent intestinal exposure of these women to enterotoxinogenic bacteria. Since enterotoxin antigen is presumed not to enter deeper tissues, the demonstration of secretory antibodies in milk agrees with a proposed homing of intestinally triggered lymphocytes to the mammary gland.

Antibodies, Bacterial↗

Human secretory immunoglobulin M. An immunochemical and immunohistochemical study.

IgM was purified from normal human colostrum and salivary secretions devoid of IgA. The isolated immunoglobulin was found to contain J chain, and showed a slight affinity for free secretory component (SC). In the secretions IgM was saturated with SC, but only 60--70 per cent of the molecules had retained the component after purification. Moreover, the I determinant of SC was much more exposed in secretory IgM than in secretory IgA, indicating a relatively 'loose' quaternary structure of the former immunoglobulin. Paired immunofluorescence staining demonstrated that secretory epithelial cells of colonic glands contained IgM in exactly the same distribution as IgA. IgM appearing in exocrine secretions is therefore a true secretory immunoglobulin in contrast to IgG. However, the quaternary structure of secretory IgM is less covalently stabilized than that of secretory IgA.

Antigens↗

Tachykinins and tachykinin receptors in the gut, with special reference to NK2 receptors in human.

Tachykinins (TKs), substance P (SP), neurokinin A (NKA) and B (NKB) are important peptide modulators of intestinal motility in animal species studied so far, including humans. Modulation of motility by TKs can occur at various levels, since these peptides are expressed in cholinergic excitatory motor neurons projecting to both circular and longitudinal muscle, interneurons, and intramural and extramural sensory neurons. The effects of SP, NKA and NKB are preferentially mediated through the stimulation of NK1, NK2 and NK3 receptors, respectively; however, the selectivity of natural TKs for their preferred receptors is relative. In addition, SP and NKA are expressed in similar quantities in the human intestine and adequate stimuli can release similar amount of these TKs from enteric nerves. Furthermore, a single anatomical substrate can express more than one TK receptor type, so that the blockade of a single receptor type may not reveal functional effects in integrated models of motility. In isolated human small intestine and colon circular muscle strips, both NK1 and NK2 receptors mediate contractile effects. Indeed, in the human small intestine, smooth muscle electrical and motor events induced by electrical field stimulation (EFS) can involve either or both NK1 and NK2 receptors or these latter receptors predominantly, depending on the experimental conditions. In contrast, in the human colonic smooth muscle, only the NK2 receptor-mediated component of the response to EFS is prominent and some evidence would suggest that this component is the main excitatory motor mechanism at this level. Furthermore, a NK2 receptor-mediated secretory component in the human colonic mucosa has been recently demonstrated. Thus, it could be speculated that the blockade of both NK1 and NK2 receptors will be necessary to antagonise motor effects induced by exogenous administration or endogenous release of TKs in the small intestine, whereas the blockade of the NK2 receptors would be sufficient to disrupt physiological motor and, possibly, secretory activity at the colonic level. Available evidence indicates that, in healthy volunteers, the infusion of NKA (25 pmol/kg/min i.v.) stimulated small intestine motility and precipitated a series of intestinal and non-intestinal adverse events. Nepadutant (8 mg i.v.), a selective NK2 receptor antagonist, antagonised small intestine motility induced by NKA and prevented associated intestinal adverse events. In another study, the same dose of nepadutant increased colo-rectal compliance during isobaric balloon distension in healthy volunteers pretreated with a glycerol enema, disclosing a NK2 receptor-mediated component in the regulation of colonic smooth muscle tone. However, the prolonged blockade of NK2 receptors by nepadutant (16 mg i.v. b.i.d. for 8 days) did not affect bowel habits, neither in term of movements nor of stool consistency. Altogether, these results indicate that, even when there is a significant redundance in the effects of TKs and in the role of their receptors, the selective blockade of tachykinin NK2 receptors can have functional consequences on human intestinal motility and perception, but this can occur without the disruption of the physiological functions.

Animals↗

Adenosquamous carcinoma of the stomach presenting "giant gastric folds".

We report a case of adenosquamous carcinoma of the stomach. Grossly, the tumor showed "giant gastric folds" involving the fornix and body, and histologically was composed of adenocarcinoma and squamous cell carcinoma components. Both components diffusely proliferated and infiltrated in the gastric wall, mainly in the mucosa and submucosa, where prominent inflammatory changes such as desmoplasia and edema were observed. There were many intermingled foci of both components, and direct transitions between them were frequently observed. Immunohistochemically, adenocarcinoma cells were positive for secretory component and carcinoembryonic antigen and negative for involucrin, while the squamous cell carcinoma component was positive for involucrin and negative for carcinoembryonic antigen. It was suggested in this case that squamous metaplasia might have arisen multifocally in a preexisting adenocarcinoma and that diffuse proliferation and infiltration of carcinoma cells with prominent inflammatory changes in the submucosa might be responsible for the formation of "giant gastric folds".

Adenocarcinoma↗

Ultrastructural events in the translocation of polymeric IgA by rat hepatocytes.

It has been proposed that polymeric IgA is translocated from plasma to bile across hepatocytes of the rat liver by a secretory component-mediated, vesicular transport. To define the ultrastructural details of the proposed transport mechanism, we employed peroxidase-labeled antibody immunocytochemistry to localize secretory component in the rat liver and monitor the hepatic translocation of homologous myeloma polymeric IgA infused i.v. Secretory component was found associated with the endoplasmic reticulum, Golgi complexes, cytoplasmic vesicles, and plasma membranes of the sinusoidal and canalicular surfaces of hepatocytes; secretory component at the sinusoidal surface was most prominent in micropinocytic invaginations or pits. Livers were examined for the sites of polymeric IgA 5, 15, and 30 min after infusion. Evidence was obtained that polymeric IgA is translocated across hepatocytes by a series of events: 1) polymeric IgA binds selectively to secretory component on the external surface of the sinusoidal plasma membrane; 2) secretory component-IgA complexes are internalized in endocytic vesicles; 3) the vesicles migrate through the cytoplasm without association with lysosomes or Golgi complexes; 4) the vesicles fuse with the cytoplasmic surface of the bile canalicular membrane, where secretory component-IgA complexes are released into bile by exocytosis.

Animals↗

Jacalin, a jackfruit lectin, precipitates IgA1 but not IgA2 subclass on gel diffusion reaction.

Precipitation reaction in agarose gel between jacalin, a lectin from jackfruit seeds, and purified immunoglobulins of various classes and their components was studied. Single precipitation arcs were observed with monomeric and dimeric IgA1 subclass as well as secretory IgA1, but not with IgA2 of both allotypes, IgG, IgM, IgD, IgE, free secretory component or with the J chain. Thus, jacalin can be used for differentiating IgA1 from IgA2 subclass by a simple agarose gel diffusion.

Chemical Precipitation↗

Prolonged incubation time in immunohistochemistry: effects on fluorescence staining of immunoglobulins and epithelial components in ethanol- and formaldehyde-fixed paraffin-embedded tissues.

By prolonging the incubation time from 30 min to 20 hr at room temperature, fluorochrome conjugates may be applied at about ten times higher dilution and yet produce specific immunofluorescence staining of enhanced intensity. This modification of the direct method is important for reagent economy and, in addition, affords improved staining features for all antigens tested in formaldehyde-fixed tissues. It is particularly valuable when paired staining is used to characterize lymphoproliferative B-cell processes in pathological routine material; a clear-cut distinction between polyclonal and monoclonal expression of cytoplasmic immunoglobulin (Ig) is obtained, and cells giving rise to a false staining pattern are easily pinpointed. It is likewise advantageous to use prolonged incubation with conjugate for the localization of Ig-producing and Ig-bearing B cells in saline-extracted ethanol-fixed tissues, and the same holds true for Ig and C3 in immune-complex deposits. Also IgE on the surface of mast cells in tissues from atopic subjects is visualized distinctly with this modification. However, the localization or epithelial components is not consistently improved in ethanol-fixed tissues when the incubation time is prolonged; secretory products such as lactoferrin, lysozyme, amylase, and secretory component (SC) are not always immobilized sufficiently by ethanol fixation to avoid diffusion artifacts and a substantial loss from the cytoplasm. Differences in intracellular storage probably contribute to the variable antigen stability.

Epithelium↗

Immunoglobulins of the Australian brush-tailed opossum, Trichosurus vulpecula.

Using standard methods IgG, IgM and (s) IgA were isolated from the serum or intestinal fluid of the Australian brush-tailed opossum, Trichosurus vulpecula. The molecular weights of the intact immunoglobulin molecules and their heavy and light chains were established. Two forms of IgG were seen which differed in their abilities to bind to insoluble matrices and also in their molecular weights. No antigenic differences were seen between them on analysis by agar diffusion. The molecular weights of opossum IgM and the two forms of IgG were similar to those of the corresponding immunoglobulins of man and other marsupials. However, the molecular weight of the IgA seen in intestinal fluid and results from its analysis by agar diffusion suggest that the molecule may lack secretory component.

Animals↗

Temperature and PMA affect different phases of exocytosis in bovine chromaffin cells.

Amperometry was used to study secretory kinetics of single bovine chromaffin cells stimulated by transient depolarizations at different temperatures. The initial rate of release was moderately enhanced when the temperature was raised from 18 to 22 and 37 degrees C. Secretion increased drastically at a later period, 5-10 s after the initiation of stimulus. Interestingly, incubation of the cells with phorbol 12-myristate 13-acetate (PMA) clearly enhanced fast secretory components. In addition, the rate of secretion of the slower component recruited by prolonged depolarizations (t > 30 s) was unaffected at the range of temperatures normally used in secretory experiments (22-37 degrees C). A 'counting events' analysis of secretion, which avoids the influence of event charge changes, showed specific increases in a population of vesicles fusing between 7 and 12 s over the same range of temperatures, and a marked increase in vesicles fusing during the initial phase (1-5 s), of PMA-treated cell secretion. An analysis of temperature influence on transient components released by high sucrose, the secretion elicited by cell permeabilization with digitonin, and studies of the individual characteristics of amperometric events, allow us to conclude that an increase in the size of a secondary-released vesicle population is the main factor contributing to temperature-dependent enhancement of secretion, in clear contrast to the enhancement of fast releasable pools caused by phorbol esters.

Animals↗

A simple procedure for the isolation of human secretory IgA of IgA1 and IgA2 subclass by a jackfruit lectin, jacalin, affinity chromatography.

Jackfruit lectin, jacalin, prepared from two batches of jackfruit seeds showed a different specificity in precipitating reaction in Agarose gel with various purified immunoglobulins and secretory components. Jacalin-P, extracted from jackfruit seeds from the Philippines, reacts only with serum IgA and secretory IgA of IgA1 subclass. Jacalin-O, extracted from jackfruit seeds from Okinawa prefecture in Japan, makes a strong precipitin are with IgA1 subclass and a weak precipitin arc with IgA2 subclass of IgA2m(2) allotype, IgM, IgD and IgE. Human secretory IgA of IgA1 subclass was isolated from human milk by a single jacalin-P affinity chromatography using D-galactose as a dissociating agent. From conventionally purified human secretory IgA preparation, secretory IgA of IgA1 subclass and of IgA2 subclass were separated from each other. The former was separated as jacalin-P adsorbed fraction and the latter as jacalin-P non-adsorbed fraction by the affinity chromatography. Subclass composition of secretory IgA in human milk was determined by the affinity column and was calculated to be 70% for IgA1 and 30% for IgA2 subclass. Jacalin affinity chromatography has several advantages compared with antibody coupled affinity chromatography, notably, high capacity, inexpensiveness, and very mild extraction of IgA1 subclass.

Chromatography, Affinity↗

Mucosal immunology--with special reference to specific immune defence of the upper respiratory tract.

The mucosa of the upper respiratory tract is protected by a secretory immune system which is under complex immunoregulatory control. B cells with a potential for J-chain expression are initially stimulated in mucosa-associated lymphoid tissue (probably including the tonsils) and thereafter migrate through lymph and blood to glandular sites where they differentiate to immunoglobulin-producing immunocytes. Most locally produced immunoglobulin normally consists of dimeric IgA which is selectively transported through serous glandular cells by means of an epithelial receptor protein called the secretory component (SC). IgM is also subjected to SC-mediated transport. In patients with selective IgA deficiency, secretory IgA is lacking, but it may be satisfactorily replaced by protective secretory IgM. In other IgA-deficient patients, however, immunoregulatory compensation gives rise to a large number of IgD-producing cells in respiratory mucosae. IgD cannot act as a secretory antibody and these patients are prone to have recurrent infections. There are thus large individual variations in the secretory immune system, which in the future hopefully may be subjected to regulatory manipulation.

B-Lymphocytes↗

Immunobarriers of the mucosa of the upper respiratory and digestive pathways.

The mucosa that lines the upper respiratory and digestive pathways is protected by a secretory immune system which is under complex and only partly understood immunoregulatory control. B cells of relatively immature memory clones with a potential for J-chain expression, are initially stimulated in mucosa-associated lymphoid tissue (probably including the tonsils) and migrate thereafter through lymph and blood to glandular sites where they are subjected to terminal differentiation and become immunoglobulin (Ig)-producing immunocytes. Most locally produced Ig is normally dimeric IgA which is selectively transported through the serous type of glandular cells by means of an epithelial receptor protein called the secretory component (SC). IgM is also subjected to SC-mediated transport. In patients with selective IgA deficiency, secretory IgA is lacking, but may be satisfactorily replaced by protective secretory IgM. In other IgA-deficient patients, however, immunoregulatory compensation gives rise to a large number of IgD-producing cells in respiratory mucosa. IgD cannot act as a secretory antibody and these patients are prone to have recurrent infections. These observations show that there are large individual variations in the secretory immune system.

Antibody-Producing Cells↗

[Immune barriers of the mucous membrane of the upper respiratory and digestive tracts].

The mucosa that lines the upper respiratory and digestive pathways is protected by a secretory immune system which is under complex and only partly understood immunoregulatory control. B cells of relatively immature memory clones with a potential for J-chain expression, are initially stimulated in mucosa-associated lymphoid tissue (probably including the tonsils) and migrate thereafter through lymph and blood to glandular sites where they are subjected to terminal differentiation and become immunoglobulin (Ig)-producing immunocytes. Most locally produced Ig is normally dimeric IgA which is selectively transported through the serous type of glandular cells by means of an epithelial receptor protein called the secretory component (SC). IgM is also subjected to SC-mediated transport. In patients with selective IgA deficiency, secretory IgA is lacking but it may be satisfactorily replaced by protective secretory IgM. In other IgA-deficient patients, however, immunoregulatory compensation gives rise to a large number of IgD-producing cells in respiratory mucosa. IgD cannot act as a secretory antibody and these patients are prone to have recurrent infections. These observations show that there are large individual variations in the secretory immune system.

Antibody Formation↗

Production and characterization of recombinant IgA.

Existence of secretory immunity at the mucosal surfaces was first postulated in 1919. Since then experimental and clinical studies have indicated that it is immunoglobulin A (IgA) that provides the first line of immune defense at the mucosal surfaces. While a number of expression systems--including viral, plant and mammalian cells--have been used to produce recombinant IgA, we used the mammalian expression system to produce IgA1 and the three allotypes of IgA2. By introducing the gene coding for human secretory component (SC) into transfectants producing IgA1, we have generated a single mammalian cell system that produces covalently assembled secretory IgA (sIgA). Using pulse-chase analysis, we determined the covalent assembly pathways of IgA1, IgA2 and sIgA and identified some of the structural differences leading to the different assembly patterns. Using affinity purified proteins, we have shown that neither IgA1 nor any of the allotypes of IgA2 activate either the classical or the alternative complement pathways, but modulate the complement activity of IgG or IgM. The two N-linked glycosylation sites in IgA1 are not required for its binding to the polymeric Ig receptor (pIgR). Finally, we have shown that sIgA1 was more stable than dIgA1 in the gastrointestinal tract of mice, suggesting that SC provides resistance to IgA in the gastrointestinal tract.

Animals↗