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Luminal lymphoid cells in the rabbit intestine.

In normal rabbits, lymphocytes have been identified in large numbers on the luminal epithelial aspects of both Peyer's patches and the appendix by scanning and transmission electron microscopy. Luminal cells shared an intimate relationship with intestinal microorganisms. Irrigation of the appendiceal lumen has proved a useful technique for collecting 8.5 x 10(6) (mean) viable lymphocytes (73%) and macrophages (22%). Functional characteristics (mitogen responsiveness, T-cell numbers and cells with positive cytoplasmic immunoglobulin A fluorescence) were similar to isolated intestinal mucosal cell preparations. In vivo cytokinetic studies indicated that 50% of luminal appendiceal lymphocytes were recently divided (within 5 h). The passage of lymphoid cells into the the appendix lumen was antigen responsive, as was the size of the appendiceal lymphoid mass. This evidence suggests that migration of lymphoid cells into the lumen of the intestine in healthy animals occurs normally probably from the gut-associated lymphoid tissue--a phenomenon similar to that observed in the bronchial tract. Both mucosal surfaces may, therefore, be important sites of lymphocyte and macrophage traffic.

Animals↗

Factors affecting endogenous oxalate synthesis and its excretion in feces and urine in rats.

It has been observed that the feces as well as urine of rats fed diets supplemented with 3% glycine and 5.2% hydroxyproline contain unexpectedly high amounts of endogenously formed oxalate. That intestinal microorganisms do not synthesize significant amounts of oxalate was indicated by the findings that oral tetracycline had no effect on oxalate excretion and that germ-free rats excreted more oxalate than conventional rats. Since little intraperitoneally injected [14C] oxalate appeared in the feces, and rat intestinal mucosa homogenates were found to produce oxalate from a variety of precursors of which glyoxylic acid was far the most important, it is probable that the intestinal mucosa may be an important source of fecal oxalate observed in these studies. Ninety percent of weanling rats fed complete diets supplemented with glycine and hydroxyproline developed urinary stones in 38 days. It has been concluded that in the treatment of patients with histories of calcium oxalate urolithiasis, more concern than is commonly shown should be directed towards the feeding of diets high in precursors of endogenous oxalate synthesis.

Animals↗

Mechanism of biosynthesis of trimethylamine oxide from choline in the teleost tilapia, Oreochromis niloticus, under freshwater conditions.

The mechanism of biosynthesis of trimethylamine oxide (TMAO) from dietary precursors in the teleost tilapia (Oreochromis niloticus) was investigated. Diets supplemented with quaternary ammonium choline, glycine betaine, carnitine or phosphatidylcholine were administered and significant increases in TMAO levels in the muscle were only observed with choline. [Methyl-14C] and [1,2-14C] cholines were given through dietary and intraperitoneal injection routes, but 14C-TMAO was detected only in fish with dietary administration of [methyl-14C] choline. Dietary treatment with [15N] choline resulted in the formation of [15N] TMAO in the muscle. The incorporation of radioactivity into TMAO was also observed both following dietary administration and intraperitoneal injection of [14C] trimethylamine (TMA). When choline was introduced into the isolated intestine, marked increases in TMA levels occurred. These increases were significantly suppressed in the presence of penicillin. [14C]-TMA derived from [methyl-14C] choline was detected in the cavity of the isolated intestine. The introduction of [15N] choline into the intestinal cavity resulted in the formation of [15N] TMA. TMA mono-oxygenase activities were detected in the liver and kidney. We conclude that tilapia possess the ability to produce TMAO from choline, which is related to intestinal microorganisms and tissue mono-oxygenase under freshwater conditions.

Animals↗

[The state of humoral immunity to enterobacterial antigens in juvenile rheumatoid arthritis and reactive arthritis in children].

Investigation findings are generalized based on quantitation of antibodies against the antigens of intestinal microorganisms of Enterobacteriaceae family conducted in 66 children with various joint disease using the enzyme-linked immunoassay (ELISA) methodology. High antibody titres were revealed in 77.1% juvenile rheumatoid arthritis cases and in 80% cases with chronic juvenile arthritis which was not defined nosologically. All the patients with reactive arthritis associated with intestinal infection showed high tension of immunity to all tested enterobacteriaceae antigens with cross reactions to them. Patients with reactive arthritis associated with oral infection, with Reiter's disease and other disorders exhibited high antibody titres at the same rate as in the control.

Antibody Formation↗

Promicromonospora pachnodae sp. nov., a member of the (hemi)cellulolytic hindgut flora of larvae of the scarab beetle Pachnoda marginata.

Intestinal microorganisms play an important role in plant fiber degradation by larvae of the rose chafer Pachnoda marginata. In the hindgut of the larvae 2.5 to 7.4 x 10(8) bacteria per ml of gut content with xylanase or endoglucanase activity were found. Bacteria in the midgut were not (hemi)cellulolytic, but the alkaline environment in this part of the intestinal tract functions as a precellulolytic phase, solubilizing part of the lignocellulosic material. Accordingly, the degradation of lignocellulose-rich material in Pachnoda marginata larvae appeared to be a combination of a physico-chemical and microbiological process. A number of different facultative anaerobic and strictly anaerobic bacteria with (hemi)cellulolytic activity were isolated from the hindgut. A dominant (hemi)cellulolytic species was a Gram positive, irregular shaped, facultative aerobic bacterium. Further physiological identification placed the isolate in the genus Promicromonospora. Comparative 16S rDNA analysis and phenotypic features revealed that the isolate represented a new species for which the name Promicromonospora pachnodae is proposed. P. pachnodae produced xylanases and endoglucanases on several plant derived polymers, both under aerobic and anaerobic conditions.

Actinomycetales↗

Serum cholesterol levels in axenic mice colonized with Enterococcus faecium and Lactobacillus acidophilus.

Hypocholesterolemic effect was shown in axenic, mono, bicolonized and conventional mice: the effect was different depending on probiotic properties of intestinal microorganisms. Contamination by Enterococcus faecium CX determined the highest effect: haematic cholesterol level decrease was 16.9% in females and 7.8% in males. In mice contaminated by Lactobacillus acidophilus N5 the decrease of haematic cholesterol levels was less and not relevant in mice contaminated by conventional microflora. Enterococcus faecium CX and Lactobacillus acidophilus N5 strains were able to grow in presence of bile salts, to colonize intestinal tract, to survive at gastric conditions and to assimilate cholesterol (E. faecium more than L. acidophilus). The authors consider the possibility to associate probiotic strains with these characteristics for the health of consumers.

Animal Feed↗

Efficacy of different microbial preparations for controlling Salmonella colonisation in chicks and turkey poults by competitive exclusion.

1. Control by competitive exclusion of intestinal colonisation by Salmonella infantis was studied in domestic chicks and turkey poults given a commercial product developed for use with chickens, compared with two similar preparations containing intestinal microorganisms from turkeys. 2. Each type of material protected both avian species when given orally before challenge; the degree of protection depended at least as much on the type of preparation as its host origin.

Animals↗

Human enteric defensins. Gene structure and developmental expression.

Paneth cells, secretory epithelial cells of the small intestinal crypts, are proposed to contribute to local host defense. Both mouse and human Paneth cells express a collection of antimicrobial proteins, including members of a family of antimicrobial peptides named defensins. In this study, data from an anchored polymerase chain reaction (PCR) strategy suggest that only two defensin mRNA isoforms are expressed in the human small intestine, far fewer than the number expressed in the mouse. The two isoforms detected by this PCR approach were human defensin family members, HD-5 and HD-6. The gene encoding HD-6 was cloned and characterized. HD-6 has a genomic organization similar to HD-5, and the two genes have a striking pattern of sequence similarity localized chiefly in their proximal 5'-flanking regions. Analysis of human fetal RNA by reverse transcriptase-PCR detected enteric defensin HD-5 mRNA at 13.5 weeks of gestation in the small intestine and the colon, but by 17 weeks HD-5 was restricted to the small intestine. HD-6 mRNA was detectable at 13.5-17 weeks of gestation in the small intestine but not in the colon. This pattern of expression coincides with the previously described appearance of Paneth cells as determined by ultrastructural approaches. Northern analysis of total RNA from small intestine revealed quantifiable enteric defensin mRNA in five samples from 19 24 weeks of gestation at levels approximately 40-250-fold less than those observed in the adult, with HD-5 mRNA levels greater than those of HD-6 in all samples. In situ hybridization analysis localized expression of enteric defensin mRNA to Paneth cells at 24 weeks of gestation, as is seen in the newborn term infant and the adult. Consistent with earlier morphological studies, the ratio of Paneth cell number per crypt was reduced in samples at 24 weeks of gestation compared with the adult, and this lower cell number partially accounts for the lower defensin mRNA levels as determined by Northern analysis. Low levels of enteric defensin expression in the fetus may be characteristic of an immaturity of local defense, which is thought to predispose infants born prematurely to infection from intestinal microorganisms.

Amino Acid Sequence↗

Food and immunological development.

The infant's host defence is deficient in IgA for mucosal protection and also in IgG2 for protection against encapsulated bacteria. The baby is provided with about one gram a day of milk secretory IgA antibodies against most intestinal microorganisms and also food proteins. These milk antibodies together with a number of other defence factors in the milk protect the baby against gastrointestinal and respiratory infections. Maternal undernutrition does not necessarily diminish the milk IgA concentration or 24 hour output. The infant seems to be low in secretory IgA antibodies for several months as studied in saliva. It is of great importance to protect mucosal membranes especially the intestinal mucosa, so that its nutrient uptake is not disturbed. Infections in infancy especially in the gastrointestinal tract is an important cause of undernutrition. The human milk antibodies against cow's milk and soy protein may decrease the exposure to these food proteins during weaning and possibly decrease the risk of developing allergy. Soy oil can contain soy protein, which may explain some food intolerance reactions.

Animals↗

Competitive exclusion in the young bird: challenge models, administration and reciprocal protection.

The competitive exclusion (CE) concept has been tested against both non-invasive and invasive salmonella serotypes. Studies with different challenge models indicate that CE treatment is likely to protect the young bird against all serotypes that are capable of intestinal colonization. Spray or 'droplet' application of the CE-treatment material was compared with administration in the first drinking water. Both methods gave a similar degree of protection against Salmonella infantis. A study was made to compare protection of newly hatched chicks and turkey poults by the one commercial CE product Broilact, and two similar preparations involving intestinal microorganisms from an adult turkey. Each preparation protected both avian species when administered orally prior to challenge, but the degree of protection obtained varied with the type of preparation and its host origin.

Animals↗

[The inorganic sorbent Evirkhip for water decontamination].

Inorganic synthetic sorbent "Evirhip" is recommended for eliminating of contaminants from water with varying degree of pollution. Comparative evaluation was carried out of the activities of the synthetic sorbent, natural dispersive minerals and activated charcoals with their surfaces being variously modified, using a model of typical representatives of intestinal microorganisms (Shigella sonnei, poliomyelitis type II, Sabin strain, viruses). Under stationary conditions of interaction of 1% sorbent "Evirhip" with Shigella sonnei sterilizing effect begins to reveal itself within 60 minutes. Decrease in infectivity of poliovirus occurs by one logarithm of the original level during 30 minutes contact. The paper discusses changes of cationic composition of water as a result of treating it by the sorbent, and feasibility of practical application of the sorbent in processes removing etiological agents of the intestinal infections from drinking, natural and waste water.

Antiviral Agents↗

Metabolism of azo dyes derived from benzidine, 3,3'-dimethyl-benzidine and 3,3'-dimethoxybenzidine to potentially carcinogenic aromatic amines by intestinal bacteria.

The metabolism of a benzidine-based dye, Direct Black 38, a 3,3'-dimethylbenzidine-based dye, Direct Red 2 and a 3,3'-dimethoxybenzidine-based dye, Direct Blue 15 has been studied both in pure cultures of anaerobic bacteria and in bacterial suspensions derived from the intestinal contents of the rat. All of the pure cultures and the rat intestinal bacteria were able to reduce the azo linkages of Direct Black 38, Direct Red 2 and Direct Blue 15 with the subsequent formation of benzidine, 3,3'-dimethylbenzidine and 3,3'-dimethoxybenzidine, respectively. The metabolites of Direct Black 38, Direct Red 2 and Direct Blue 15 were isolated and identified by gas chromatography/mass spectrometry and had similar chromatographic and mass spectral properties with those of authentic standards. Results from this study indicate that in vitro anaerobic incubations of rat intestinal microorganisms were able to reduce and cleave the azo bonds of dyes derived from benzidine, 3,3'-dimethylbenzidine and 3,3'-dimethoxybenzidine to form potentially carcinogenic aromatic amines.

Anaerobiosis↗

[Lactose--a potential dietary fiber. The regulation of its microecologic effect in the intestinal tract. 3. Dietary fiber actions of lactose due to microbial activity].

The activity of the mucosal beta-galactosidase of caecum and colon is low in both germfree and conventional rats. beta-Galactosidase activity occurs also in the chymus of germfree rats. It increases after monoassociation and is higher in conventional than in germfree animals. Lactose entering caecum and colon acts like dietary fibre and is hydrolysed mainly by the intestinal flora. Aerobe lactobacilli and bacteroides predominate in the microflora of rat caecum and colon. A lactose-containing diet increases the total number of germs and stimulates the growth of bifidobacteria. After special diets, rich in lactose and low in protein and phosphate (e.g. human milk and similar formulae), the number of bacteroides and other putrefactive germs decreases. Moreover, a lactose-containing diet alters the metabolic activity of intestinal microorganisms (activity of microbial beta-galactosidase, acidification and lowering of ph in the chymus, production of hydrogen, proteolytic activity.) Lactose as dietary fibre decreases the nitrogen excretion in the urine and increases the N-excretion in the faeces of conventional rats.

Animals↗

Utilization and excretion of a new sweetener, fructooligosaccharide (Neosugar), in rats.

In order to study the digestibility of the fructooligosaccharide "Neosugar," [U-14C]Neosugar or [U-14C]sucrose was orally administered to germfree, conventional and antibiotic-treated rats and the radioactivities of expired 14CO2, urine and feces were determined 24 h later. More than 50% of the Neosugar was expired as CO2 in conventional rats. This was the same as for sucrose, but the time course was delayed by about 2 h. In germfree rats, no 14CO2 was released for the first 8 h, and 14CO2 released after 8 h probably reflected bacterial colonization of the gut. The radioactivity of the urine was about 3-4% in all groups, but that of the feces from germfree rats was about eight times higher than the level in conventional rats. When [U-14C]Neosugar was anaerobically incubated with the cecal contents of conventional rats, more than 10% of the added Neosugar was metabolized to CO2, about 66% to volatile fatty acids and about 7% to microbes. More than 58% of 1-14C-volatile fatty acids such as acetic acid, propionic acid or butyric acid injected directly into the cecum of conventional rats was excreted as CO2 within 24 h. These results indicate that Neosugar given orally to rats is metabolized mainly to volatile fatty acids and CO2 by intestinal microorganisms, and the volatile fatty acids produced are absorbed and further converted to CO2 in the body. Thus, the data indicate that Neosugar is partially utilized as an energy source.

Acetates↗

Metabolism of azo dyes: implication for detoxication and activation.

Azo dyes are consumed and otherwise utilized in varying quantities in many parts of the world. Such widely used chemicals are of great concern with regard to their potential toxicity and carcinogenic properties. Their metabolism has been studied extensively and is significant for detoxication and metabolic activation. Both oxidative and reductive pathways are involved in these processes. The majority of azo dyes undergo reduction catalyzed by enzymes of the intestinal microorganisms and/or hepatic enzymes including microsomal and soluble enzymes. The selectivity of substrate and enzyme may to a large extent be determined by the oxygen sensitivity of reduction since a normal liver is mainly aerobic in all areas, whereas the microorganisms of the lower bowel exist in an anaerobic environment. However, it should be pointed out that the pO2 of centrilobular cells within the liver is only a fraction that of air, where pO2 = 150 torr. Therefore, an azo dye reduction experiment performed aerobically may not be an accurate predictor of reductive metabolism in all areas of the liver. Many of the azo dyes in common use today have highly charged substituents such as sulfonate. These resist enzymic attack and for the most part are poorly absorbed from the intestinal tract, providing poor access to the liver, the major site of the mixed-function oxidase system. Lipophilic dyes, such as DAB, which are often carcinogenic, readily access oxidative enzymes and are activated by both mixed-function oxidase and conjugating systems. Reduction of the carcinogenic dyes usually leads to loss of carcinogenic activity. By contrast, most of the highly charged water-soluble dyes become mutagenic only after reduction. Even then, most of the fully reduced amines required oxidative metabolic activation. An outstanding example is the potent human bladder carcinogen benzidine, which derives from the reduction of several azo dyes. Many problems regarding mutagenic and carcinogenic activation remain to be solved. At the present time, it is apparent that both oxidative and reductive pathways yield toxic products. Toxicologic assessment of azo dyes must consider all pathways and particularly the oxygen sensitivity of azoreduction. This is critical in the treatment of waste from chemical plants where there is a great need for soil bacteria which catalyze reduction aerobically. Consideration of secondary pathways are also of great concern. For example, azoreduction of carcinogenic dyes such as DAB removes carcinogenic activity although oxidative metabolism of the primary amines yield mutagenic products. Such apparent dilemmas must be dealt with when considering metabolism/toxicity relationships for azo dyes.

Animals↗

Antimutagenic effects of 2(3)-tert-butyl-4-hydroxyanisole and of antimicrobial agents.

Administration of the antioxidants 2(3)-tert-butyl-4-hydroxyanisole (BHA) and ethoxyquin (1,2-dihydro-6-ethoxy-2,2,4-trimethylquinoline) with the diet resulted in a marked decrease in the levels of mutagens present in mice treated with benzo(a)pyrene. This was reflected in the results of the host-mediated assay and determinations of the mutagenic activities of the urine, with the use of the sensitive tester strains TA100 and TA98 of Salmonella typhimurium his- developed by Ames and coworkers. Treatment with BHA was effective also in reducing the mutagenic activities in vivo of hycanthone, three other antischistosomal compounds, metronidazole, diazepam, and mebendazole. These effects were accompanied by increases in the thiol levels of some tissues. The production of mutagenic metabolites of two other antischistosomal drugs, 4-isothiocyano-4'-nitrodiphenylamine and oxamniquine, was not reduced by BHA treatment. However, such reductions in mutagenicity could be achieved by the administration of enteric antibacterial agents, implicating the role of intestinal microorganisms in the mutagenic activation of certain chemical agents. Combined treatment of mice with BHA and enteric antimicrobial agents reduced the levels of mutagens derived from metronidazole by more than 90%, and the combined treatments were more effective than was either treatment alone.

Animals↗

Nucleic acid isolation from ecological samples--vertebrate gut flora.

The utility of DNA molecules in identifying and characterizing intestinal microorganisms depends on methods that facilitate access to DNA of sufficient purity, quantity, and integrity. An efficient and unbiased extraction of DNA is thus critical to the validity of the subsequent analysis of the prevalence and diversity of the DNA sources in the sample. The highly heterogeneous composition of the diet of vertebrates makes DNA isolation challenging for this environment. Here, we consider the key steps involved in DNA isolation from vertebrate gut microflora including sample homogenization, lysis of bacterial cells, and extraction and precipitation of DNA. A detailed protocol for DNA isolation of the microbial contents of intestine and feces is also provided. In addition, we refer to commercially available methods for DNA extraction from the vertebrate gut flora.

Animals↗

Bile acid transformation by the intestinal flora and cholesterol saturation in bile. Effects of Streptococcus faecium administration.

In 8 normal subjects the daily administration for 30 days of at least 750 X 10(6) Streptococcus faecium, a bacteria producing substances acting against Clostridia and other intestinal microorganisms reduced the cholesterol saturation and the molar percentage of deoxycholic acid (DCA) in bile. The percentage of cholic acid (CA) and chenodeoxycholic acid (DCA) increased significantly in feces, whereas lithocholic acid (LCA) decreased from 49.2 to 40.5%. In vitro fecal samples of subjects taking S. faecium transformed more slowly CA to DCA and CDCA to LCA. Moreover, 7-ketolithocholic seems an intermediate step in the biotransformation of CDCA to LCA. During SF administration, the anaerobic bacteria count of feces decreases, whereas aerobic bacteria increase; the changes of fecal flora may reduce the degradation of primary bile acids influencing the bile acid composition in both the bile and the intestine.

Adult↗