Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Intestinal colonization”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 793 records · Page 44Linked to original sources

Tissue distribution of ACE2 protein, the functional receptor for SARS coronavirus. A first step in understanding SARS pathogenesis.

Severe acute respiratory syndrome (SARS) is an acute infectious disease that spreads mainly via the respiratory route. A distinct coronavirus (SARS-CoV) has been identified as the aetiological agent of SARS. Recently, a metallopeptidase named angiotensin-converting enzyme 2 (ACE2) has been identified as the functional receptor for SARS-CoV. Although ACE2 mRNA is known to be present in virtually all organs, its protein expression is largely unknown. Since identifying the possible route of infection has major implications for understanding the pathogenesis and future treatment strategies for SARS, the present study investigated the localization of ACE2 protein in various human organs (oral and nasal mucosa, nasopharynx, lung, stomach, small intestine, colon, skin, lymph nodes, thymus, bone marrow, spleen, liver, kidney, and brain). The most remarkable finding was the surface expression of ACE2 protein on lung alveolar epithelial cells and enterocytes of the small intestine. Furthermore, ACE2 was present in arterial and venous endothelial cells and arterial smooth muscle cells in all organs studied. In conclusion, ACE2 is abundantly present in humans in the epithelia of the lung and small intestine, which might provide possible routes of entry for the SARS-CoV. This epithelial expression, together with the presence of ACE2 in vascular endothelium, also provides a first step in understanding the pathogenesis of the main SARS disease manifestations.

Arteries↗

Influence of age on faecal carriage of P-fimbriated Escherichia coli and other gram-negative bacteria in hospitalized neonates.

The aerobic faecal flora of 953 infants aged over 5 days was studied on discharge from 22 neonatal wards in Swedish hospitals. Klebsiella/enterobacter was isolated from 74% of infants and dominated the aerobic gram-negative flora in 19 wards. Escherichia coli was carried by 42% and showed a slight dominance in two wards. Initially klebsiella/enterobacter dominated the flora but became increasingly mixed with and taken over by E. coli, carriage increasing from 21% in infants discharged after 5-7 days to 57% after 3 weeks or later. Among infants with E. coli, P-fimbriated strains were demonstrated in 23% (range 0-67) and were independent of age. Occasional clustering of such strains was observed in 3/22 wards during the study period. It is postulated that the general and local colonization patterns observed reflect differences between individual strains of E. coli and klebsiella in both their capacity for transmission and their persistence in the newborn gut. The role of P-fimbriae in intestinal colonization of neonates by E. coli was, however, not supported.

Age Factors↗

Indomethacin-induced colonic ulceration and bleeding.

OBJECTIVE: To report a case of nonsteroidal antiinflammatory drug (NSAID)-induced lower gastrointestinal (GI) bleeding. CASE SUMMARY: A patient in whom short-term ingestion of indomethacin was associated with colonic ulceration and significant gastrointestinal bleeding is described. DISCUSSION: The bleeding ulceration of the ascending colon, associated in our patient with short-term indomethacin intake, confirms previous reports of the drug's deleterious effect on the lower GI tract. The incidence of NSAID injury of the small intestinal colon may be higher than that previously reported. CONCLUSIONS: A prospective study of NSAID users could assess the magnitude of lower GI lesions, concomitant with upper GI evaluation, and help determine limitations in the use of this drug class.

Aged↗

Antibody response in the intestinal secretions of volunteers immunized with various cholera vaccines.

The efficacy of various cholera vaccines in eliciting an intestinal antibody response was assessed in human volunteers who received oral live, oral killed, or parenteral cholera vaccines, or placebo. The intestinal immune response in terms of antibacterial and antitoxin antibodies was determined 2 and 4 weeks after immunization. By means of the mouse peritoneum opsonization assay and the infant mouse protection test, antibacterial activity could be detected in the intestinal secretions of volunteers who had been immunized either orally or by the parenteral route. Significant protective activity and duration of immunity were observed with the oral killed vaccine. The bacteriological data indicated the absence of significant intestinal colonization of the live attenuated strain after oral administration, and probably explains the observed lack of effectiveness of the oral vaccine compared with that of the killed vaccine. The predominant immunoglobulin class of intestinal antibody was found to be IgA. None of the vaccines used in the study elicited significant antitoxin activity in the intestinal secretions, as determined by the skin permeability neutralization test.

Adult↗

IL-2-deficient mice raised under germfree conditions develop delayed mild focal intestinal inflammation.

Interleukin-2 (IL-2) amplifies immune stimuli and influences B cell differentiation. IL-2-deficient mice spontaneously develop intestinal inflammation if raised under specific pathogen-free (SPF) conditions. We quantitatively determined the aggressiveness and kinetics of gastrointestinal and hepatic inflammation in the presence or absence of viable bacteria in IL-2-deficient mice. Breeding colonies were maintained under SPF and germfree (GF) conditions. Intestinal tissues, serum, and mesenteric lymph nodes were obtained from mice at different ages for blind histological scoring, immunoglobulin measurements, mucosal T cell infiltration, and cytokine secretion. GF IL-2 -/- mice developed mild, focal, and nonlethal intestinal inflammation with delayed onset, whereas the more aggressive inflammation in SPF IL-2 -/- mice led to their death between 28 and 32 wk. Periportal hepatic inflammation was equal in the presence or absence of bacterial colonization. Intestinal immunoglobulin secretion decreased significantly by 13 wk of age in IL-2 -/- mice in both GF and SPF environments. In contrast to other genetically engineered rodents, IL-2 -/- mice develop mild focal gastrointestinal and active portal tract inflammation in the absence of viable bacteria.

Animals↗

The effect of an H2-receptor antagonist on small-bowel colonization and bacterial translocation in newborn rats.

Bacterial translocation (BT) is defined as the passage of enteric bacteria from the gastrointestinal tract to extraintestinal tissues. Bacterial overgrowth is one of the main promoting factors of BT, which is thought to play an important role in the pathogenesis of sepsis and necrotizing enterocolitis. It is believed that small-bowel colonization is established by bacterial spread through the rectum. Gastric acid is also involved in this process. An experimental study was designed for investigating the effect of gastric acid inhibition with the use of an H2-receptor antagonist on intestinal colonization and BT in newborn rats. Animals were divided into two groups: the ranitidine group (n = 20) received ranitidine 10 mg/kg per day intramuscularly for 5 days; the control group (n = 30) received saline solution. Mesenteric lymph node, spleen, liver, stomach, small bowel/cecum, and large bowel specimens were obtained from each rat 5 days later and gram-negative and -positive aerobic bacteria identified by the use of chocolate and Endo agar. It is concluded that: (1) there was a strong correlation between gastric and small-bowel bacterial colonization in the ranitidine group; (2) no correlation between large-and small-bowel colonization could be demonstrated; and (3) BT occurred only in the ranitidine group.

Animals↗

Efficacy and food safety considerations of poultry competitive exclusion products.

Competitive exclusion (CE) products are anaerobic cultures of bacteria that are applied to poultry hatchlings to establish a protective enteric microbiota that excludes intestinal colonization by human food-borne pathogens. For safety of the poultry flock and human consumers, the identities of bacteria in CE products need to be known. A CE product is a culture of intestinal contents from adult chickens. It may be microbiologically defined by analysis of bacteria isolated from the culture, but many bacteria are hard to reliably isolate, identify, and characterize with conventional techniques. Sequence analysis of 16S ribosomal RNA (rRNA) genes may be more reliable than conventional techniques to identify CE bacteria. Bacteria in CE products may contain antimicrobial drug resistance and virulence mechanisms that could be transferred to the enteric bacteria of the food animal and to the human consumer. Detection methods for specific antimicrobial drug resistance and virulence genes and the integrase genes of conjugative transposons, mostly utilizing PCR technology, are being developed that can be applied to assess these risks in CE bacteria. With improvements in efficacy, bacterial identification, and detection and control of the possible risks of gene transfer, CE product technology can be made a more effective food safety tool.

Animals↗

Molecular cloning, cDNA structure, and chromosomal localization of the human type II cGMP-dependent protein kinase.

The type II cGMP-dependent protein kinase is an enzyme originally isolated from the small intestine, and is thought to be involved in the regulation of intestinal ion transport and fluid secretion. A complementary DNA clone encoding a part of the human type II cGMP-dependent protein kinase was isolated from a cerebellum library. Based on sequence information from this complementary DNA, the 5'-end of the type II cGMP-dependent protein kinase was amplified from human brain messenger RNA using polymerase chain reaction. The composite complementary DNA encoded a 762 amino acid protein with a calculated molecular mass of 87.4 kDa. Messenger RNAs encoding the type II cGMP-dependent protein kinase were detected in small intestine, colon and prostate. By using polymerase chain reaction and Southern blotting on somatic cell hybrids, the gene encoding, the type II cGMP-dependent protein kinase was mapped to human chromosome 4q13.1-q21.1.

Amino Acid Sequence↗

Chronic intestinal pseudo-obstruction due to dialysis-related amyloid deposition in the propria muscularis in a hemodialysis patient.

Dialysis-related amyloidosis (DRA) is one of the most serious complications interfering with rehabilitation in dialysis patients. Here, we report a case of beta2-microglobulin (beta2M)-related amyloidosis, in which the patient developed a severe intestinal pseudo-obstruction. The patient was a 42-year-old male who had been undergoing hemodialysis for 13 years, and who had no history of osteoarticular involvement of DRA. The first symptoms of the disease were severe abdominal fullness and nausea after meals. The whole intestinal wall biopsy revealed massive amyloid deposition in the propria muscularis. The patient became malnourished and died of acute subendocardial infarction 3 years after the onset. An autopsical examination revealed a massive deposition of amyloid, which was positively stained with anti-beta2M antibody but not AA amyloid, predominantly in the gastrointestinal muscular layer, including the tongue, esophagus, stomach, small intestines, colon, and rectum. These results suggest that the gastrointestinal involvement of beta2M-related amyloidosis might occur during the course of hemodialysis treatment, and that this possibility should be considered if patients suffer from intestinal pseudo-obstruction without osteoarticular symptoms.

Adult↗

Effect of culture conditions on Escherichia coli O157:H7-mediated attaching-effacing lesions in a bovine large intestinal mucosal explant model.

The effects of culture conditions on the extent of Escherichia coli O157:H7 attaching-effacing (A/E) adherence in an adult bovine large intestinal mucosal explant model were assessed by three different morphometric methods. Measurement of the percent of tissue sections with A/E adherence and the number of foci of A/E adherence mm(-1) of surface epithelium was more sensitive than measurement of the percent of surface epithelium with A/E adherent bacteria for detection of treatment effects. Culture of bacterial inoculum in tryptic soy broth, incubation of explants in 5% CO(2), and rocking of explants on a platform rocker at 18 cycles min(-1) provided optimal conditions for A/E adherence. In future studies, the model may be used for preliminary testing of intervention strategies aimed at reduction of E. coli O157:H7 intestinal colonization of cattle.

Animals↗

The effect of vagotomy and drainage on the small bowel flora.

The incidence of small intestinal colonization in unoperated duodenal ulcer patients was low and similar to that in the normal population. The majority of patients seven to 10 days following truncal vagotomy and drainage were colonized whereas none of a control group of patients following simple closure of a perforated duodenal ulcer was colonized. In patients with pyloroplasty, this high incidence fell to control levels on average 18 months postoperatively, but in patients with a gastro-jejunostomy, the incidence remained raised probably due to the presence of the afferent loop. Only two patients developed episodic diarrhoea and there was no obvious association with small bowel colonization.

Adult↗

Oral administration of polymeric immunoglobulin A prevents colonization with Vibrio cholerae in neonatal mice.

A simple animal model was used to demonstrate passive protection by immunoglobulin A (IgA) against a mucosal pathogen, Vibrio cholerae. Oral administration of a monoclonal IgA directed against a lipopolysaccharide component of the vibrio protected neonatal mice against oral challenge, as measured by reduced intestinal colonization. A single dose of 0.1 microgram of polymeric monoclonal IgA given 1 h prior to challenge reduced the number of recoverable vibrios by at least 100-fold. An additional dose 3 h before challenge or 1 h after challenge did not enhance protection. A 10-fold-higher concentration of monomeric IgA was required to achieve the same level of protection as that conferred by polymeric IgA. Polymeric IgA digested with trypsin or human duodenal aspirates to lower-molecular-weight fragments retained most of its ability to protect mice against challenge.

Administration, Oral↗

Role of volatile fatty acids in colonization resistance to Clostridium difficile in gnotobiotic mice.

Clostridium difficile is an agent involved in the development of antibiotic-associated pseudomembranous colitis. The purpose of this work was to investigate the role of volatile fatty acids (VFAs) in resistance to colonization by C. difficile by using a gnotobiotic animal model. Accordingly, germfree mice were associated with different hamster flora, and the VFAs in their cecal contents were measured by gas chromatography. The results showed that VFAs were produced mainly by the intestinal flora, especially by the strictly anaerobic bacteria. In these associated mice, the concentrations of acetic, propionic, and butyric acids were higher than those of other acids, but at pH 6.8 the MICs of these three acids in vitro for C. difficile were more than 200 mu eq/ml. In gnotobiotic mice monoassociated with C. difficile and in the isolated ceca of these mice, VFAs did not inhibit the growth of C. difficile. In gnotobiotic mice which were diassociated with C. difficile and C. butyricum and given drinking water with a lactose concentration of 20%, the cecal contents included about the same amount of butyric acid as did those of the monoassociated mice, although the population of C. difficile remained the same. Therefore, it is suggested that VFAs alone cannot inhibit intestinal colonization by C. difficile and that, consequently, other inhibitory mechanisms are also present.

Animals↗

[Compression anastomoses and their creation by SCD devices in experiment and clinical practice].

New suture compression device (SCD) is developed and used in 119 patients for formation of esophageal-intestinal (10), esophageal-gastric (4), gastro-intestinal (10), intestinal-intestinal (19), intestinal-colon (18) and colon-colon (58) anastomosis. Insufficiency of sutures was seen in 2 (1.68%) patients after left-sided hemicolectomy (1) and resection of the sygmoid colon. One patient died, lethality was 0.84%.

Anastomosis, Surgical↗

Epidemiologic features of intestinal parasitic infections in Italian mental institutions.

To determine the prevalence of intestinal parasitic infections in the residents of four Italian psychiatric institutions, we examined the stool specimens collected in triplicate from 238 residents, enrolled between May 1995 and May 1996. Besides, physician and staff nurses provided data about each resident by standardized questionnaires. Parasites were detected in the fecal samples from 128 patients (53.8%). However, in the stool specimens from 106 residents only non-pathogenic protozoa were found (82.8%). Trichuris trichiura ova, Giardia lamblia cysts and trophozoites, Cryptosporidium parvum oocysts, and Balantidium coli cysts were found in the fecal samples from 22 residents (9.2%). B. hominis was the most prevalent parasite. It was detected in the fecal specimens from 97 residents (40.8%). The so-called nonpathogenic amebae were detected in the fecal specimens from 65 residents, though, at the same time, there was no evidence of Entamoeba histolytica infection. Twelve residents (5.0%) showed intestinal colonization by nonpathogenic flagellates. All the subjects with T. trichiura infection were housed in the facility of Ancona. Parasites were found in fecal samples from all the 11 residents with behavioural aberrations, but only three of those suffering from intestinal pathogen infection associated to diarrhea. Statistical analyses revealed that the presence of pathogenic parasites in fecal specimens was significantly associated with diarrhea, nausea, vomiting, abdominal pain, fever, behavioural aberrations and nonpathogenic protozoa (p < 0.01), but did not demonstrate any other significant associations between these parasites and the other variables, such as pruritus, mucus or blood in the stools and presence of fecal leukocytes. On the other hand, the presence of nonpathogenic protozoa was significantly related to aberrations such as pica, geophagia, phytophagy, coprophagy, coprophilia and pathogenic parasites (p < 0.01). Data analyses revealed that both pathogenic and nonpathogenic parasites were significantly more common in institutionalized patients than in controls. The rare presence of clinical signs and symptoms in colonized patients represents an important public health problem, since the presence of asymptomatic carriers among residents with low hygienic conditions, raises concern of transmission of parasitic infections to professional staff and other residents. Since the eradication of parasitic colonization in residential facilities is hard to reach, an effective prevention is the only measure to deal with this public health problem.

Adult↗

Vibrio cholerae tolC is required for bile resistance and colonization.

TolC and its homologues are outer membrane proteins that are essential for the transport of many molecules across the cell envelope. In this study we characterized the gene encoding Vibrio cholerae TolC. V. cholerae tolC mutants failed to secrete the RTX cytotoxin, were hypersensitive to antimicrobial agents, and were deficient in intestinal colonization.

Animals↗

Type III secretion machines and the pathogenesis of enteric infections caused by Yersinia and Salmonella spp.

Salmonella and Yersinia spp. infect the intestinal tract of humans. Although these organisms cause fundamentally different diseases, each pathogen relies on type III secretion machines to either inject virulence factors into the cytosol of eukaryotic cells or release toxins into the extracellular milieu. Type III secretion machines are composed of many different subunits and export several polypeptides with unique substrate requirements. During Salmonella pathogenesis, the type III machine encoded by the Salmonella pathogenicity island (SPI)-1 genetic element functions to cause invasion of the intestinal epithelium, whereas another type III machine (SPI-2) is required for survival in macrophages. Yersinia enterocolitica and Yersinia pseudotuberculosis employ type III machines to resist macrophage phagocytosis and to manipulate the host's immune response, thereby colonizing intestinal lymphoid tissues. We describe what is known about the pathogenic functions of virulence factors secreted by type III machines. Furthermore, type III secretion machines may be exploited for the injection of recombinant proteins, a strategy that has already been successfully employed to elicit a cell-mediated immune response.

Animals↗

Effect of drinking water chlorination on Campylobacter spp. colonization of broilers.

The main source for Campylobacter spp. transmission from the environment to broiler chickens is still unclear. One implicated reservoir for the organism has been untreated broiler drinking water. This study was conducted with broilers first using experimental conditions (isolation units) and second under commercial conditions. We compared the rate of intestinal colonization in chickens provided 2 to 5 parts per million (ppm) chlorinated drinking water in relation to the frequency of colonization in chickens given unsupplemented drinking water. No significant difference (P > 0.05) was detected in isolation frequency or level of Campylobacter spp. colonization in birds provided chlorinated drinking water and control birds provided water without supplemental chlorine. In the isolation unit experiments, 86.3% (69/80) of the control and 85.0% (68/80) of the treated birds were colonized at levels corresponding to an average of 10(5.2) and 10(5.1) log colony-forming units (cfu) Campylobacter spp./g of cecal contents, respectively. Additionally, two sets of paired 20,000 bird broiler houses, with and without chlorination (2-5 ppm chlorine), were monitored in a commercial field trial. Effectiveness of chlorination was judged by prevalence of Campylobacter spp. in fecal droppings (960 samples) taken from the flocks in treated and control houses. Birds from the control houses were 35.5% (175/493) Campylobacter spp. positive, while 45.8% (214/467) of the samples from the houses having chlorinated drinking water yielded the organism. Chlorination of flock drinking water at the levels tested in this study was not effective in decreasing colonization by Campylobacter spp. under commercial production practices presently used in the United States.

Animals↗