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Interstitial cells of Cajal--their role in pacing and signal transmission in the digestive system.

Interstitial cells of Cajal (ICC) are located in most parts of the digestive system. Although they were discovered over 100 years ago, their function began to be unravelled only recently. Morphological observations have led to a number of hypotheses on the possible physiological roles of ICC: (1) these cells may be the source of slow electrical waves recorded in gastrointestinal (GI) muscles; (2) they participate in the conduction of electrical currents, and (3) mediate neural signals between enteric nerves and muscles. These hypotheses were supported by experiments in which the ICC-containing layer was removed surgically, or when ICC were ablated chemically, and as a consequence the slow waves were absent. Electrophysiological experiments on isolated cells confirmed that ICC can generate rhythmic electrical activity and can also respond to messenger molecules known to be released from enteric nerves. In mice mutants deficient in ICC, or in mice treated with antibody against the protein c-Kit, slow wave activity was impaired. These results support the role of ICC as pacemaker cells. Physiological studies have shown that ICC in certain GI regions are important for signal transmission between nerves and smooth muscle. There is evidence that pathological changes in ICC may be associated with GI motility disorders. The full interpretation of the role of ICC in disease conditions will require much further study on the physiology and pharmacology of these cells.

Animals↗

[Symptoms and pathomechanism of changes in the digestive system during the course of systemic lupus erythematosus].

In this work, authors make an attempt to review and systematize digestive system symptoms and pathomechanism of changes in the course of systemic lupus erythematosus (SLE). They also point out the increasing role of visual methods in the diagnostics of connective tissue diseases. It should be noted that though Osler described first visceral symptoms of systemic lupus erythematosus in 1895, this topic has gained little interest in literature.

Diagnosis, Differential↗

Changes in the digestive system in patients suffering from psoriasis.

Literature published in the recent years provides more evidence for psoriasis being a disease which involves the whole organism. In the course of the disease not only the skin, but also numerous cells and internal organs are affected (1, 2, 3, 6-12, 15, 17, 20). Despite long effort of many research teams, the etiopathogenesis of the disease has remained unknown. Among many suppositions about the cause of psoriasis the one put forward at the Third Psoriatic Congress in Stanford deserves special attention. It suggests that the starting point of the disease are kinetic disturbances of the digestive system (15). This system takes part in decomposition, modifications and synthesis of many organic compounds, including lipids, and disturbances of its function can be reflected in all the metabolic routes. In psoriatic patients structural and functional abnormalities of the digestive system were found in nearly all its segments (1-4, 6-8, 10, 12, 15, 17, 20). However, changes revealed in the alimentary tract by means of accessory examinations were hardly ever accompanied by any complications of the system. Long-term observations of a big group of psoriatics carried out in our clinics confirm the absence of subjective symptoms in these patients. The most common anatomopathologic abnormalities in psoriasis are prelipidophilia and palatal lipidophilia, inflammatory changes in the mucous membrane of the stomach and duodenum (gastritis chronica superficialis and duodentis chronica nature), as well as changes in the structure of the hepatic lobule and intestinal villi (1, 2, 3, 10, 12, 15, 17, 20).

Biopsy↗

[Characterization of relationships between pro- and eukaryotic cells under the conditions of intracellular symbiosis of Staphylococcus aureus in the mucosa cells of the respiratory and digestive systems organs in terms of ecology and morphology].

The ecological and morphological analysis of reorganization processes in the cell and tissue structures of the mucous membranes of the respiratory and digestive systems in rats under the conditions of their prolonged symbiotic interactions with staphylococci (in the body of rats as a whole, as well as on the model of organotypic cultures in diffusion chambers in vivo) was carried out with the use of light and electron microscopy, radioautography and morphometry. The morphological equivalents of phenotypic reactions in the cell elements of the mucous membranes of the respiratory and digestive systems (epitheliocytes, leimyocytes, endotheliocytes, macrophages and fibroblasts) under the conditions of staphylococcus persistence were revealed. Adaptive and reactive shifts in eukaryotic cells were manifested by an increased volume of nuclei and greater proportion of euchromatin and a decreased DNA-synthetic and proliferative activity. Microorganisms located inside the cells underwent ultrastructural reorganization.

Adaptation, Physiological↗

Behavior of the organs of the digestive system.

This review is concerned with interrelationships between the functions of the central organs of the digestive system. Complex interdependences determine the final result, the integral behavior of the group of organs. Thus the mechanism of the self-regulation of the function of the organ follow the natural laws for a coordinated achievement of the objective by means of the mechanism of self-regulation of the function of the group of organs. Central influences ensure correlation of the behavior of the system as a whole.

Animals↗

[Interrelation between the sexual and digestive systems of chaetognaths (Chaetognatha)].

Histological and histochemical investigations on structure of the reproductive and digestive systems have been performed in two cold-water (Sagitta elegans, Sagitta maxima) and in four tropical (Sagitta bipunctata), Flaccisagitta hexaptera, Sagitta pulchra, Ferosagitta ferox) species of Chaetognatha. There is no essential seasonal difference in structure of the intestinal epithelial cells. There is not any storage of nutritional substances. Chaetognatha seem to feed actively during their whole life cycle. Some features of alimentary oogenesis have been revealed, although, in the whole, their ova mature according to the solitary type. At initial stages of oogenesis the nuclear apparatus is inactivated (condensed chromosomes form a ball--caryosphere); cells of the micropilar apparatus perform the function of the nutritive cells. The remaining period of oogenesis (synthesis of protein and lipid yolk) is performed according to the solitary type (the nucleoplasm contains chromosomes of the "lamp brush" type). A possibility whether nutritive substances can diffuse from the digestive tract into the coelomic fluid and into the ovarian cavity towards the developing ova is discussed.

Animals↗

Distribution of adenosine triphosphatase and thamine pyrophosphatase in the digestive system of Heteropneustes fossils.

Histochemical localization of adenosine triphosphatase and thiamine pyrophosphatase in the digestive system of the teleost fish, Heteropneustes fossilis has been studied. In the stomach, ATPase activity is observed in the mucosa, gastric glands and muscularis. The activity is stronger in the muscularis. Very weak TPPase activity is localized only in the mucosa and gastric glands. In the intestinal mucosa ATPase activity is stronger especially, along the brush border. Mild activity is also found in the connective tissue network and their nuclei, muscularis and serosa. In the posterior portion of the intestine and rectum, the localization pattern is similar to that of intestine but the activity is weaker. TPPase activity in the intestine and rectum is restricted only to the goblet shaped mucus secreting cells. In the liver, strong activity of ATPase and moderate activity of TPPase are found in the cytoplasm as well as the nuclei of the hepatic cells.

Adenosine Triphosphatases↗

Uptake, flow, and digestion of casein and green fluorescent protein in the digestive system of Lygus hesperus Knight.

Selected compounds were used to study physiological processes associated with digestion in the western tarnished plant bug, Lygus hesperus Knight. Durations of passage and rates of absorption, digestion, and excretion were determined for a digestible protein (casein), a non-digestible protein (green fluorescent protein, GFP), and a non-digestible carbohydrate (dextran). Dextran was used as a control to monitor the non-absorptive flow rate of ingesta through the digestive system. Fluorescent tracking of FITC-conjugates of casein and dextran, as well as immunoblotting and immunofluorescent staining of casein and GFP, were used to monitor the degradation (in vitro) and ingestion, digestion, and distribution (in vivo) of the respective compounds. Under our experimental conditions, L. hesperus took discrete meals, feeding and excreting at 2-3 h intervals. Rate of food passage was variable. FITC-dextran was found in the fecal material of most insects by 6-8 h after treatment initiation; by 12 h, 95% of ingested FITC-dextran was recovered from all insects. FITC-casein was digested extensively in in vitro homogenates of gut, hemolymph, and salivary gland. In vivo, FITC-casein was ingested and partially absorbed as a holoprotein into the hemolymph. Ingested FITC-casein was partially degraded in the gut and hemolymph within 2 h of ingestion, and no holoprotein was found after 12 h. In contrast, there was no detectable degradation of GFP in hemolymph, gut, and salivary gland homogenates after 24 h of incubation. Ingested GFP was not degraded in gut or hemolymph up to 8 h after treatment initiation, but did transfer to the hemolymph as a holoprotein. Analysis of immunohistological images confirmed that GFP bound to gut epithelial cell brush-border membranes. However, the mechanism by which GFP and casein pass as holoproteins into the hemolymph remains unknown.

Animals↗

[The adaptational-compensatory reactions of the digestive system during the development of pancreatic atrophy].

Adaptive-compensatory processes have been revealed in the digestive system in pancreatic atrophy. These processes promote: a) the compensation of the pancreatic enzymatic insufficiency and of the cavitary digestion decrease by the alpha-amylase adsorbed at the small intestinal epithelium, b) the increasing of the intestinal pH, c) the keeping up of the postprandial levels of gastrointestinal hormones.

Adaptation, Physiological↗

Separation and expansion of tumor infiltrating lymphocytes of digestive system in vitro and their cytotoxicity.

Primary tumor tissues in the digestive system were harvested from 15 patients. By mincing, enzymatic digestion and gradient density separation, sufficient TILs (> x 10(6)) were obtained from 13 of 15 (88.7%) patients in vitro in the presence of 500 mu/ml of recombinant interleukin-2 and 5% fetal calf serum after one month culture. 92.3% (12/13) of TILs proliferated well in vitro (92.3%). TILs expanded from 10(/)-folds to 10(3)-folds after being cultured for one month. CD25+ cell of the most fresh TILs was more than that of peripheral blood lymphocytes. CD25+ cells of TILs during 4th week of the culture was significantly greater (P < 0.01) than that of fresh TILs. CD4+/CD8+ ratio was decreased during four culture weeks because of increase of CD8 cells. By using modified colorimetric MTT assay for measuring activity of TILs against various tumor cells the results showed that cytotoxicity of gastro-intestinal TILs in autologous tumor cells is greater than on the other tumor cells.

Adult↗

Digestive system.

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Digestive System↗