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Biomedical subjects

A Rühl

Publications and source records attributed to A Rühl.

17 recordsLinked to original sources

Glial cells in the gut.

The enteric nervous system is composed of both neurons and glia. Recent evidence indicates that enteric glia-which vastly outnumber enteric neurons-are actively involved in the control of gastrointestinal functions: they contain neurotransmitter precursors, have the machinery for uptake and degradation of neuroligands, and express neurotransmitter-receptors which makes them well suited as intermediaries in enteric neurotransmission and information processing in the ENS. Novel data further suggest that enteric glia have an important role in maintaining the integrity of the mucosal barrier of the gut. Finally, enteric glia may also serve as a link between the nervous and immune systems of the gut as indicated by their potential to synthesize cytokines, present antigen and respond to inflammatory insults. The role of enteric glia in human disease has not yet been systematically studied, but based on the available evidence it is predictable that enteric glia are involved in the etiopathogenesis of various pathological processes in the gut, particularly such with neuroinflammatory or neurodegenerative components.

Animals↗

The herbal preparation STW5 (lberogast) has potent and region-specific effects on gastric motility.

Functional dyspepsia (FD) is amongst the most common functional gastrointestinal disorders. Symptomatic treatment includes the use of herbal preparations whose effects on gastric motility are unclear. The present study aimed at investigating the effects of STW 5 (Iberogast), a fixed combination of hydroethanolic herbal extracts, on gastric motility in vitro. Muscle strips from guinea-pig gastric fundus, corpus and antrum were set up in organ baths either in circular or longitudinal orientation. Addition of ethanol-free STW 5 to the organ baths (32-512 microg mL(-1)) dose-dependently evoked a sustained and reversible relaxation of circular and longitudinal fundus and corpus muscle strips without changes in phasic activity. In contrast, antral muscle strips responded to STW 5 with a significant increase in the contractile force of phasic contractions without changes in tone. All effects were resistant to tetrodotoxin (0.5 micromol L(-1)), atropine (1 micromol L(-1)), omega-conotoxin GVIA (0.5 micromol L(-1)), capsaicin (1 micromol L(-1)) or L-NAME (100 micromol L(-1)), suggesting that neither nerves nor nitric oxide pathways were involved. These data demonstrate that STW 5 profoundly alters gastric motility in a region-specific but not layer-specific manner and thus implicates Iberogast in the treatment of FD patients suffering from motility disorders with impaired fundus accommodation and/or antral hypomotility.

Animals↗

Enteric glia.

The enteric nervous system is composed of both enteric neurones and enteric glia. Enteric glial cells were first described by Dogiel and are now known to outnumber neurones approximately 4 : 1. In the past, these cells were assumed to subserve a largely supportive role; however, recent evidence indicates that enteric glial cells may play a more active role in the control of gut function. In transgenic mouse models, where enteric glial cells are selectively ablated, the loss of glia results in intestinal inflammation and disruption of the epithelial barrier. Enteric glia are activated specifically by inflammatory insults and may contribute actively to inflammatory pathology via antigen presentation and cytokine synthesis. Enteric glia also express receptors for neurotransmitters and so may serve as intermediaries in enteric neurotransmission. Thus, enteric glia may serve as a link between the nervous and immune systems of the gut and may also have an important role in maintaining the integrity of the mucosal barrier and in other aspects of intestinal homeostasis.

Animals↗

Measurement of gastric emptying by 13C-octanoic acid breath test versus scintigraphy in diabetics.

In this prospective study, we compared the assessment of gastric emptying by the 13C-octanoic acid breath test to gastric emptying scintigraphy in diabetics. We also examined the relationship between gastric emptying parameters and gastric symptoms and cardiovascular autonomic function. The 13C-octanoic acid breath test and scintigraphy were performed simultaneously in 24 diabetics with a solid test meal (1 egg, doubly labelled with 91 mg 13C-octanoic acid and 50 MBq 99mTechnetium-Nanocoll, 60 g white bread, 5 g margarine and 150 ml water). At fifteen-minute intervals, breath samples were taken over 4 hours and examined by mass spectrometry. In parallel, scintigraphy was performed for 2 hours at one minute intervals. Using breath test data, gastric emptying half time (t (1/2) ), lag-phase (t lag ) and gastric emptying coefficient (GEC) were calculated. Subsequently, the correlation of these results with the equivalent data from scintigraphy were determined employing a regression method. To detect a cardiovascular autonomic neuropathy, a 24-h ECG recording was performed. The prevalence of gastrointestinal symptoms in our collective was assessed by a standardized questionnaire. There was a highly significant positive correlation of both 13C-octanoic acid breath test t (1/2) and scintigraphic t (1/2) (r = 0.8257; p < 0.0001) and 13C-octanoic acid breath test t lag and scintigraphic t lag (r = 0.6302; p < 0.001). The sensitivity of the 13C-octanoic acid breath test was 1 and the specificity was 0.73. In our study, there was no significant association of cardiovascular and gastrointestinal autonomic neuropathy. Furthermore, there was no significant relationship between the prevalence of gastrointestinal symptoms and gastric emptying disorders. We conclude that the 13C-octanoic acid breath test represents a suitable method to measure disordered gastric emptying in diabetics due to its highly significant positive correlation to scintigraphy and due to its validity. It is not possible to predict diabetic gastroparesis on the basis of other autonomic function disorders or because of dyspeptic symptoms.

Adult↗

Different methods for toxin analysis in the cyanobacterium Nodularia spumigena (Cyanophyceae).

The brackish water cyanobacterium Nodularia spumigena produce the hepatotoxic cyclic pentapeptide nodularin. Intoxications for both human as well as animal may arise when water reservoirs are contaminated with potentially toxic Nodularia species. Here, results of three independent methods for the determination of nodularin in different strains of N. spumigena are presented. The results obtained with a protein phosphatase assay and a HPLC/UV/MS method are compared with the results obtained with a bioluminescence assay, which is successfully introduced here for nodularin determination. Statistical evaluation of the three applied methods revealed a good comparability towards the detected toxin content. The methods were evaluated taking into consideration the parameters: handling, efficiency, sensitivity and selectivity. The detection limit in the protein phosphatase assay is highest (0.05ng nodularin) and lowest (250ng nodularin) in the bioluminescence assay- it was determined with 5ng (MS) and 25ng (UV) for the HPLC/UV/MS methods. The different selectivities and sensitivities are critically discussed and an analytical pathway for the determination of the biotoxin nodularin from Nodularia samples is proposed.

Chromatography, High Pressure Liquid↗

IL-1beta and IL-10 have dual effects on enteric glial cell proliferation.

Inflammatory bowel disease is typically accompanied by functional and structural changes of the enteric nervous system. In pathological studies, cellular loss and axonal degeneration have been described in the myenteric plexus. However, more recent studies suggest that the proliferation rate of myenteric glial cells is enhanced in animal models of intestinal inflammation. Therefore, we have investigated the effect of different cytokines on the proliferative response of enteric glial cells (EGCs), comparing transformed enteric glial cell lines, primary astrocyte cultures and transformed oligodendrocytes. Cells were incubated in serum-free chemically defined medium in the presence or absence of either interleukin (IL)-1beta or IL-10 at concentrations ranging between 0.1 and 100 ng mL(-1) for 48 h. Subsequently, [3H]thymidine was added to each culture dish for an additional 6 h, and the amount of incorporated [3H] was assessed. IL-1beta significantly and dose-dependently suppressed [3H]-uptake by EGCs. In contrast, IL-10 induced a biphasic response; IL-10 at low concentrations (0.1 ng mL(-1)) caused a significant suppression of [3H]-uptake, whereas high concentrations (5-100 ng mL(-1)) significantly enhanced [3H] uptake. These results indicate that EGC proliferation can be modulated by cytokines. The differential effects of IL-1beta and IL-10 suggest that during intestinal inflammation there may be a regulatory interplay between different classes of cytokines modulating EGC proliferation.

Animals↗

Isolation of enteric glia and establishment of transformed enteroglial cell lines from the myenteric plexus of adult rat.

Although enteroglial cells (EGCs) may play a key role in the inflammatory response of the enteric nervous system, little is known about their immunophysiological properties. To facilitate further characterization of enteric glia, we have developed a novel method to isolate and purify EGCs from the myenteric plexus. Myenteric plexus preparations were enzymatically dissociated and EGCs purified by complement-mediated cytolysis of contaminating cells and transformed by retroviral gene transfer. Primary and transformed cells were characterized immunohistochemically and by dot-blot analysis. Functionally, c-fos mRNA expression was assessed in primary and transformed enteroglial cells. All cells displayed robust glial fibrillary acidic protein, S-100 and vimentin immunoreactivities, but no Thy-1.1, desmin, smooth muscle alpha-actin or C3 complement receptor immunoreactivity. This confirmed their enteroglial lineage and excluded contamination with other cell types. Both primary and transformed EGCs displayed little constitutive c-fos mRNA expression. This, however, could be upregulated by various stimuli, including proinflammatory cytokines. In summary, we present a novel method to purify EGCs from rat myenteric plexus for tissue culture and to establish transformed EGC lines that retain their glial nature and functional properties. Such cell lines are now available for physiological studies of the functional properties of enteric glia in vitro.

Animals↗

Interleukin-6 expression and regulation in rat enteric glial cells.

As yet, little is known about the function of the glia of the enteric nervous system (ENS), particularly in an immune-stimulated environment. This prompted us to study the potential of cultured enteroglial cells for cytokine synthesis and secretion. Jejunal myenteric plexus preparations from adult rats were enzymatically dissociated, and enteroglial cells were purified by complement-mediated cytolysis and grown in tissue culture. Cultured cells were stimulated with recombinant rat interleukin (IL)-1beta, IL-6, and tumor necrosis factor (TNF)-alpha, and IL-6 mRNA expression and secretion were assessed using RT-PCR and a bioassay, respectively. Stimulation with TNF-alpha did not affect IL-6 mRNA expression, whereas IL-1beta stimulated IL-6 mRNA and protein synthesis in a time- and concentration-dependent fashion. In contrast, IL-6 significantly and dose-dependently suppressed IL-6 mRNA expression. In summary, we have presented evidence that enteric glial cells are a potential source of IL-6 in the myenteric plexus and that cytokine production by enteric glial cells can be regulated by cytokines. These findings strongly support the contention that enteric glial cells act as immunomodulatory cells in the enteric nervous system.

Animals↗

On the adequate stimulus for rectal mechanoreception and perception: a study in cat and humans.

The adequate stimulus that is specific for both rectal mechanoreceptor excitation and rectal perception is still undefined. Using a visual analogue scale, healthy male volunteer subjects rated the intensity of the non-noxious 'pressure sensation evoked by slow balloon-induced distensions of the rectum. In a parallel study, the responses of spinal afferents originating from intramural mechanoreceptors of the rectum to the same stimulus were recorded in decerebrate cats. Both receptor activity and sensation intensity were linearly related to the diameter of the rectum, which is in turn a linear function of the tangential length of the rectal wall. In contrast, both saturated when expressed as a function of intrarectal pressure or rectal wall tension. It is concluded that the perception associated with rectal dis tensions in the non-noxious range is mediated by intramural mechanoreceptors that linearly encode tangential wall length, and that the underlying information is linearly transmitted throughout the CNS.

Adult↗

Discharge patterns of intramural mechanoreceptive afferents during selective distension of the cat's rectum.

The afferent input from the rectum to the central nervous system (CNS) has yet to be thoroughly characterized. The characteristics of mechanoreceptive rectal afferents have been studied in unanaesthetized decerebrate cats. Following lumbo-sacral laminectomy, single-unit activity (occasionally multi-unit activity) was recorded from centrally cut filaments of the sacral dorsal roots (predominantly S2), while a balloon was inflated in the rectum. Starting from their background activities (mean 15.1 imp sec-1, SD 7.6 imp sec-1), afferent discharge rate increased with increasing balloon pressure (mean threshold 6.3 mmHg, SD 3.6 mmHg). The dependence of firing rate on intrarectal pressure began to flatten out at 25 mmHg (mean; SD 10 mmHg). For 22 out of 29 units (76%) complete saturation occurred at 35 mmHg (mean; SD 15 mmHg) with a maximum discharge rate of 31 imp sec-1 (mean; SD 12.6 imp sec-1). In a number of recording sessions, cyclical rectal contractions were observed. In these cases, changes in firing of the units were closely related to changes in intrarectal pressure. Pressure-related afferent activity could be enhanced by parasympathomimetic drugs which augmented rectal contractions. We conclude that sacral dorsal roots contain afferents from low-threshold mechanoreceptors located in the rectal wall, and that these afferents monitor the filling state and contraction level of the rectum.

Animals↗

Role of nitric oxide in norepinephrine release from myenteric plexus in vitro and in Trichinella spiralis-infected rats.

Nitric oxide (NO) has been implicated as modulator of neural function and inflammatory mediator. Previously, we have demonstrated suppression of norepinephrine (NE) release from myenteric nerves following Trichinella spiralis infection implicating interleukin-1 beta (IL-1 beta) as a mediator of these changes. In the present study, we have examined the role of NO in NE release from the myenteric plexus and in the suppression of NE release induced by IL-1 beta in vitro, and we have determined whether NO is involved in the suppression of NE release from the myenteric plexus observed in T. spiralis-infected rats. Electrically evoked NE release from jejunal longitudinal muscle-myenteric plexus preparations (LMMP) was measured following (a) in vitro exposure of the tissue to the NO donor 3-morpholinosydnonimine (SIN-1), L-arginine, or IL-1 beta, in the presence or absence of NOS inhibitors, and (b) in vivo treatment of control or T. spiralis-infected rats with N6-nitro-L-arginine-methyl-ester (L-NAME), NG-nitro-D-arginine-methyl-ester (D-NAME) or vehicle for 6 days. In vitro inhibition of NO synthesis had no effect on NE release from the myenteric plexus. Treatment with SIN-1 or L-arginine suppressed NE release in a manner similar to that observed with IL-1 beta. Moreover, the effect of IL-1 beta was attenuated by L-NAME. In contrast, treatment of T. spiralis-infected rats with L-NAME had no effect on the suppression of NE release. These results indicate that in the absence of inflammation, the myenteric plexus can generate sufficient NO to inhibit NE release and that NO mediates the action of IL-1 beta on NE release in vitro. However, we have no evidence for the involvement of NO in the suppression of NE release in nematode-infected rats.

Animals↗

[Public health fairs on "environment and human health"--participants, topics, attitudes].

19 meetings dealing with environment and human health, including 7 public hearings related to the planning of an incineration plant and 5 training courses for asthmatic patients, were analysed with regard to participation, persons participating in the discussions, topics covered by the remarks and also emotional involvement and standard of information. There was a total of 835 participants; 1471 "units of statements" were assessed. In the open meetings 18-33% of the participants took part in the discussion, in the closed training sessions the number was 66%. About one-third of the remarks ("units") dealt with the pollution of water, soil and air; a health risk was mentioned in about 20%. The frequency distribution of topics mentioned at the various kinds of meeting is presented. It was surprising that annoyance and anxiety were rarely expressed. The standard of information was classified rather high at the hearings concerned with the incineration of waste, and rather low at the training sessions.

Attitude to Health↗

Involvement of eicosanoids and macrophage-like cells in cytokine-mediated changes in rat myenteric nerves.

BACKGROUND & AIMS: Proinflammatory cytokines alter function in enteric nerves, but little is known about underlying mechanisms. This study was designed to investigate the roles of prostanoids and of macrophage-like cells in cytokine-induced suppression of [3H]norepinephrine release from rat myenteric plexus. METHODS: The release of 3H from jejunal longitudinal muscle-myenteric plexus preparations that had been loaded with [3H]norepinephrine was measured. Measurements of 3H release as well as concentrations of prostaglandin E2 and leukotriene were made in preparations exposed to interleukin 1 beta plus interleukin 6 and in the presence or absence of piroxicam, 5-lipoxygenase inhibitor MK886, cycloheximide, or cyclosporin A. An ultrastructural analysis was also performed to investigate the presence of macrophage-like cells in the myenteric plexus. RESULTS: Interleukin 1 beta plus interleukin 6 suppressed 3H release and caused an increase in tissue prostaglandin E2 but not leukotriene E4. Piroxicam and cycloheximide but not MK886 attenuated the cytokine-induced increase in prostaglandin E2 and the suppression of [3H]norepinephrine release. Ultrastructural analysis showed macrophage-like cells in the plexus, and the cytokine effects were inhibited by cyclosporin A. CONCLUSIONS: Prostanoids but not leukotrienes mediate the cytokine-induced suppression of norepinephrine release, and the results of this study suggest that macrophage-like cells are also involved.

Analysis of Variance↗

Effects of nutrient solutions on concentration analysis of non-absorbable dilution markers--implications for studies of gastric emptying.

Gastrointestinal luminal contents may interfere with concentration analysis of non-absorbable dyes. However, non-absorbable markers are broadly used for studies of gastric emptying rates of nutrient solutions. This prompted us to evaluate the properties of non-absorbable markers to mark such nutrient solutions. In vitro concentrations of polyethylene glycol, phenol red, dextran blue, two anthroquinone dyes and inulin were determined spectrophotometrically in the presence or absence of a formula diet, single compounds of the diet or an oligo-peptide diet, and the reproducibility and validity of the analyses were evaluated. The presence of the formula diet or the oligopeptide diet seriously impaired the analyses of marker concentrations, whereas single nutrient compounds did not uniformly interfere. The analysis of polyethylene glycol and phenol red concentrations was impaired by proteins, while the analysis of inulin concentration was impaired by carbohydrates. Dextran blue and the anthroquinones were completely eliminated by protein-precipitation procedures. In conclusion, phenol red and polyethylene glycol should only be used as marker substances for protein-free meals or nutrient solutions, while inulin should not be used with meals or nutrient solutions containing carbohydrates. Marker dilution techniques cannot be recommended for measurements of gastric emptying rates of complete meals.

Coloring Agents↗

Synergism between interleukins 1 beta and 6 on noradrenergic nerves in rat myenteric plexus.

BACKGROUND/AIMS: Because levels of interleukins 1 beta and 6 (IL-1 beta and IL-6) are elevated during intestinal Trichinella spiralis infection, they may mediate the changes in enteric neural function in that model. IL-1 beta suppresses norepinephrine release from the myenteric plexus, but the effect of IL-6 is unknown. Therefore, we investigated the effects of IL-6 alone and in combination with IL-1 beta on norepinephrine release. METHODS: Longitudinal muscle myenteric plexus or myenteric nerve varicosity preparations from jejunum of noninfected rats were loaded with [3H]norepinephrine, and 3H release was measured after a preincubation with or without human recombinant IL-6, alone or in combination with human recombinant IL-1 beta. RESULTS: 1 ng/mL of IL-6 augmented 3H release, 100 ng/mL suppressed 3H release, whereas 10 ng/mL had no effect. However, IL-6 (10 ng/mL) plus a subthreshold concentration of human recombinant IL-1 beta significantly suppressed 3H release, and this was abolished by adding anti-IL-6 antibody or an IL-1 receptor antagonist. CONCLUSIONS: Because 3H release reflects [3H]norepinephrine release, our results show that IL-6 exerts a dual effect on norepinephrine release. Furthermore, there is synergism between IL-1 beta and IL-6 resulting in suppression of norepinephrine release. Therefore, both cytokines may contribute to the suppression of norepinephrine release observed in the inflamed intestine.

Animals↗