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P Michetti

Publications and source records attributed to P Michetti.

At least 55 records · Page 3Linked to original sources

[Detection of Helicobacter pylori in 201 stomach biopsies using the polymerase chain reaction, histological staining (H&E/Giemsa) and immunohistochemistry].

Helicobacter Pylori is believed to be an essential etiologic agent of type B chronic gastritis and peptic ulcer disease in humans. Recent reports have also suggested a role for these organisms in the development of gastric carcinoma and MALT-Lymphoma. A variety of diagnostic procedures are used for the identification of Helicobacter Pylori in clinical samples. 201 gastric biopsy (164 antral and 37 body biopsy specimens) were obtained from 164 patients with endoscopic abnormalities. These samples were studied for the detection of the presence of Helicobacter Pylori by histological staining (EE/Giemsa), immunohistochemistry and PCR by using a primer pair derived from the nucleotide sequence of the Urease A gene of Helicobacter Pylori. Specific amplification of a 411 base pair DNA fragment from all strain of Helicobacter Pylori tested was achieved. Of the 201 gastric biopsy analyzed, 63 (31%) were infected with Helicobacter Pylori on the basis of both histological and immunohistochemical staining, and 81 (41%) were positive with PCR (P < 0.001). Our results support a role for PCR in the rapid and highly sensitive and specific identification of Helicobacter Pylori in gastric biopsy specimens.

Azure Stains↗

Adhesion of Helicobacter pylori to polarized T84 human intestinal cell monolayers is pH dependent.

Epithelial cells, which form tight polarized monolayers on porous substrates, constitute ideal model systems to study bacterial adhesion and invasion. The binding of Helicobacter pylori to the apical membrane of T84 cells, an epithelial cell line derived from a human colon carcinoma, was assessed biochemically and morphologically. Attachment was rapid, and binding remained constant over time, with a significant (P < 0.01, Mann-Whitney U test) ca. fourfold increase at pH 5.4 (76% +/- 22%) compared with pH 7.4 (18% +/- 7%). In contrast, adhesion of enteropathogenic Escherichia coli was not enhanced at pH 5.4. The transepithelial electrical resistance of the T84 cell monolayers was not affected by pH or by H. pylori. Following binding, H. pylori induced a reorganization of the brush border as reflected by actin condensation, facilitating the intimate association of the bacteria with the apical plasma membrane. H.pylori was not internalized, as shown by confocal microscopy. Some bacteria, found in deep invaginations of the apical membrane, were probably inaccessible to gentamicin, thus accounting for the observed tolerance to the antibiotic. These data provide the first evidence that an acidic environment favors Helicobacter adhesion and that binding is followed by survival of the survival of the bacteria in pockets of the apical membrane.

Bacterial Adhesion↗

Carbon-14-urea breath test as a noninvasive method to monitor Helicobacter felis colonization in mice.

We have developed a 14C-urea breath test to follow the course of Helicobacter felis infection in mice. Peak 14CO2 production occurred approximately 8 min after substrate administration. The test values were compared to those from a rapid urease test and correlated with the presence of pathogens by histology. The sensitivity was 99%, specificity 91%, positive predictive value 95% and negative predictive value 99% when the assay was conducted in fasted mice. We conclude that in mice the breath test analysis is a useful noninvasive method for detecting the presence of H. felis or for evaluating therapeutic agents affecting growth or survival of the organism.

Animals↗

Prevalence of Helicobacter pylori infection and chronic dyspeptic symptoms among immigrants from developing countries and people born in industrialized countries.

The relationship between Helicobacter pylori infection and chronic dyspepsia is controversial. To determine the effect of H. pylori infection on dyspeptic symptoms, we compared the prevalence of H. pylori infection in immigrants from developing countries and people born in industrialized countries. Upper abdominal symptoms were assessed by a questionnaire and H. pylori infection was determined with a 13C-urea breath test and serology. H. pylori infection was found in 63% of subjects from developing countries and 11% of subjects from industrialized countries. There was no difference in the prevalence of dyspeptic symptoms between the 2 groups. The lack of difference in chronic dyspeptic symptoms between the groups, despite a major difference in the H. pylori prevalence, suggests that H. pylori infection is not a major contributor to chronic dyspepsia.

Adolescent↗

Monoclonal immunoglobulin A antibody directed against serotype-specific epitope of Shigella flexneri lipopolysaccharide protects against murine experimental shigellosis.

To determine the role of humoral mucosal immune response in protection against shigellosis, we have obtained a monoclonal dimeric immunoglobulin A (IgA) antibody specific for Shigella flexneri serotype 5a lipopolysaccharide (mIgA) and used a murine pulmonary infection model that mimics the lesions occurring in natural intestinal infection. Adult BALB/c mice challenged with 10(7) S. flexneri organisms developed a rapid inflammatory response characterized by polymorphonuclear cell infiltration around and within the bronchi and strong systemic interleukin 6 response. Implantation of hybridoma cells in the back of mice, resulting in the development of a myeloma tumor producing mIgA in the serum and subsequently secretory mIgA in local secretions, or direct intranasal administration of these antibodies, protected the animals against subsequent intranasal challenge with S. flexneri serotype 5a. Absence of histopathological lesion and significant decrease in bacterial load of the lungs and of systemic interleukin 6 response were the three major criteria of protection. This protection was shown to be serotype-specific and dependent on local concentration of mIgA. These data demonstrate that mucosal antibodies directed against a single polysaccharidic surface epitope of Shigella can protect against the disease.

Administration, Intranasal↗

Oral immunization with Helicobacter pylori urease B subunit as a treatment against Helicobacter infection in mice.

BACKGROUND & AIMS: Eradication of Helicobacter pylori infections in humans results in the healing of gastritis and gastric ulcers. This study used a mouse model to test whether oral vaccination can cure Helicobacter infection and gastritis. METHODS: Mice were infected with Helicobacter felis. Three weeks after infection, the mice were orally immunized with H. pylori urease B subunit. Control mice were simultaneously infected but sham immunized. RESULTS: Three to 8 weeks after oral immunization of H. felis-infected mice with recombinant H. pylori urease B subunit, the infection cleared and there was no evidence of gastritis. Vaccinated mice remained protected against two consecutive H. felis challenges. CONCLUSIONS: These results show that the lack of natural immunity against Helicobacter can be overcome by oral immunization and that vaccination offers a novel therapeutic approach to Helicobacter-induced gastritis.

Administration, Oral↗

Acetylation (O-factor 5) affects the structural and immunological properties of Salmonella typhimurium lipopolysaccharide O antigen.

The lipopolysaccharide (LPS) of gram-negative bacteria serves as a barrier between the cell and its environment. The LPS O antigen is the immunodominant portion of the molecule and thus has a significant effect on the interaction between a bacterial pathogen and the host organism. Antibodies directed against O antigen are vital to the immune response to infection. In this study, we have characterized the interaction between a series of monoclonal immunoglobulin A antibodies and the LPS of Salmonella typhimurium. Using one of these antibodies, we have previously shown that monoclonal immunoglobulin A is sufficient to protect against S. typhimurium infection, both in vivo and in vitro. Here, we show that recognition of LPS by the monoclonal antibodies is affected by acetylation of the O antigen on the abequose moiety, the determinant of the O5 epitope. Although recognition of LPS by several of the monoclonal antibodies is completely dependent on acetylation, the antibodies recognize clearly separable epitopes. This suggests that acetylation of O antigen affects the three-dimensional structure of the molecule and thus creates and destroys a series of conformational antigenic determinants. We have shown that a change in the acetylation state of LPS has no effect on virulence. However, acetylation has important consequences for the mucosal immune response and thus could potentially have profound implications for the ability of an immune host to respond to a subsequent infection.

Acetylation↗

Monoclonal immunoglobulin A prevents adherence and invasion of polarized epithelial cell monolayers by Salmonella typhimurium.

BACKGROUND/AIMS: Invasion of the intestinal epithelium is considered a critical step in Salmonella pathogenesis. Infection by Salmonella of cultured monolayers of polarized Madin-Darby canine kidney (MDCK) cells has been established as a simple in vitro system that mimics the invasion of intestinal enterocytes in vivo. This study analyzes the protective role of secretory immunoglobulin (Ig) A antibodies against epithelial invasion. METHODS: Salmonella typhimurium was applied to MDCK cell monolayers in the presence or absence of a monoclonal, polymeric IgA antibody (Sal4) directed against an antigenic determinant exposed on the surface of wild-type S. typhimurium. RESULTS: In the presence of Sal4 IgA, confluent monolayers of MDCK cells were protected against apical invasion by wild-type S. typhimurium but not against a mutant strain that lacks the Sal4 epitope. Protection was Sal4-specific, dependent on the concentration of Sal4 in the apical medium, and occurred at IgA concentrations at which agglutination of IgA-bacterial complexes was observed. When MDCK cell monolayers were formaldehyde-fixed before incubation with Salmonella to prevent bacterial invasion, adhesion of Salmonella occurred in the absence of IgA and in the presence of control IgA but not in the presence of Sal4 IgA. CONCLUSIONS: IgA alone can prevent bacterial adherence and invasion of epithelial cells in the absence of other immune or nonimmune protective mechanisms.

Agglutination↗

Immunization of BALB/c mice against Helicobacter felis infection with Helicobacter pylori urease.

BACKGROUND/AIMS: Because Helicobacter pylori is a potentially dangerous human pathogen, the protective potential of oral immunization with H. pylori urease and its subunits was evaluated in an animal model. METHODS: Mice were orally immunized with H. pylori sonicate, urease, or recombinant enzymatically inactive urease subunits and then challenged with Helicobacter felis. Control mice were sham-immunized. RESULTS: H. felis colonization was present 5 days after challenge in 9 of 10 sham-immunized, 6 of 9 sonicate-immunized, and 3 of 10 urease-immunized animals (P = 0.031 vs. sham-immunized). Twelve days after challenge, urease B-immunized mice had a weaker colonization than sham-immunized controls, whereas urease A had no effect. After 70 days, most urease A- and urease B-immunized mice had cleared the colonization (10/17: P = 0.0019; 16/20: P = 0.00002 vs. sham-immunized). In urease B-immunized animals, protection was often associated with corpus gastritis. CONCLUSIONS: Oral immunization with H. pylori urease protects mice against H. felis infection. Enzymatically inactive urease A and B subunits contain protective epitopes. It is unclear whether protection depends on the development of a mononuclear inflammatory response in the gastric corpus. Our observations should encourage the development of a human vaccine.

Administration, Oral↗

Transcytosis of the polymeric Ig receptor requires phosphorylation of serine 664 in the absence but not the presence of dimeric IgA.

MDCK cells expressing the polymeric immunoglobulin (poly-Ig) receptor, cocultured with IgA-producing hybridoma cells, transported dimeric IgA (dIgA) from the basolateral into the lumenal compartment, where it was recovered as secretory component-dIgA complexes. The tail of the receptor was phosphorylated on serines 664 and 726. Each serine was mutated to alanine. Appearance of A726 receptor at the basolateral surface was reduced approximately 5-fold. This was accompanied by a approximately 5-fold reduction in dIgA transcytosis. Basolateral delivery of receptor was not affected by mutation A664, and in the absence of dIgA, the receptor accumulated in recycling basolateral endosomes. In coculture, however, dIgA transcytosis by A664 receptor was normal. Thus, entry of receptor into the transcytotic pathway requires Ser-664 phosphorylation only in the absence of dIgA.

Amino Acid Sequence↗

Analysis of the roles of antilipopolysaccharide and anti-cholera toxin immunoglobulin A (IgA) antibodies in protection against Vibrio cholerae and cholera toxin by use of monoclonal IgA antibodies in vivo.

Secretory immunoglobulin A (IgA) antibodies (sIgA) directed against cholera toxin (CT) and surface components of Vibrio cholerae are associated with protection against cholera, but the relative importance of specific sIgAs in protection is unknown. A monoclonal IgA directed against the V. cholerae lipopolysaccharide (LPS), secreted into the intestines of neonatal mice bearing hybridoma tumors, was previously shown to provide protection against a lethal oral dose of 10(7) V. cholerae cells. We show here that a single oral dose of 5 to 50 micrograms of the monoclonal anti-LPS IgA, given within 2 h before V. cholerae challenge, protected neonatal mice against challenge. In contrast, an oral dose of 80 micrograms of monoclonal IgA directed against CT B subunit (CTB) failed to protect against V. cholerae challenge. A total of 80 micrograms of monoclonal anti-CTB IgA given orally protected neonatal mice from a lethal (5-micrograms) oral dose of CT. Secretion of the same anti-CTB IgA antibodies into the intestines of mice bearing IgA hybridoma backpack tumors, however, failed to protect against lethal oral doses of either CT (5 micrograms) or V. cholerae (10(7) cells). Furthermore, monoclonal anti-CTB IgA, either delivered orally or secreted onto mucosal surfaces in mice bearing hybridoma tumors, did not significantly enhance protection over that provided by oral anti-LPS IgA alone. These results demonstrate that anti-LPS sIgA is much more effective than anti-CT IgA in prevention of V. cholerae-induced diarrheal disease.

Administration, Oral↗