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F Richter

Publications and source records attributed to F Richter.

97 records · Page 6Linked to original sources

Effect of short-chain fatty acids on the human colonic mucosa in vitro.

Fermentable dietary fiber components are known to stimulate colonic crypt proliferation. As these compounds are rapidly degraded to short-chain fatty acids (SCFAs) by the anaerobic microflora, the hypothesis was tested that this trophic effect of fiber may be mediated by SCFAs. Biopsies were taken from normal cecal mucosa of 45 individuals during routine colonoscopy. They were incubated for 3 hours with sodium salts of SCFAs at physiological concentrations (three SCFAs = acetate 60 mmol/L + propionate 25 mmol/L + butyrate 10 mmol/L; acetate 60 mmol/L; propionate 25 mmol/L; butyrate 10 mmol/L) or equimolar NaCl (control). Cell proliferation was measured autoradiographically by subsequent pulse labeling with [3H]thymidine (1 hour). The labeling index (number of labeled cells divided by the total number of cells) was computed for the crypt as a whole and for five equal crypt compartments (compartment 1 = crypt base, compartment 5 = crypt surface). Cecal crypt proliferation was raised significantly in all incubation experiments with SCFAs. Butyrate (10 mmol/L, increase + 89%) and propionate (25 mmol/L, + 70%) were as effective in stimulating proliferation as the combination of three SCFAs (+103%), although the effect of acetate (+31%) was minor. Increasing the butyrate concentration to 25 mmol/L or 60 mmol/L did not result in a further increase of cell labeling. SCFAs stimulated proliferation in the basal three crypt compartments only. An expansion of the proliferative zone to compartments 4 and 5 was not observed. SCFAs, especially butyrate and propionate, are luminal trophic factors for the cecal epithelium.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetates↗

Effects of deoxycholic acid and butyrate on mucosal prostaglandin E2 release and cell proliferation in the human sigmoid colon.

BACKGROUND: A high-fat, low-fiber diet resulting in increased excretion of fecal secondary bile acids is regarded as a major risk factor for colon cancer. Incubation of human colonic biopsies with the secondary bile acid deoxycholic acid (DCA) leads to hyperproliferation with expansion of the proliferative zone, ie, a biomarker of increased cancer risk. Antiproliferative effects on various colon cancer cell lines, however, were reported for butyrate (BUT), a fermentation product of dietary fiber. METHODS: In the following in vitro study we incubated biopsies from the normal sigmoid colon of 12 patients (age 55.8 +/- 3.6 years) with 5 microM DCA or a combination of 5 microM DCA plus 10 mM BUT (DCA/BUT) and determined epithelial proliferation by bromodeoxyuridine immunohistochemistry. As a possible mediator for the DCA effects on colonic cell proliferation, mucosal prostaglandin E2 (PGE2) release into the incubation medium was measured by 125I-PGE2 radioimmunoassay. RESULTS: Incubation with DCA alone revealed a significantly higher labeling index for the whole crypt (.17 vs .11, p < .01) and for the upper 40% of the crypt (.05 vs .01, p < .01) compared with DCA/BUT. Mucosal PGE2 release during DCA/BUT incubation showed a trend toward lower values compared with DCA incubation (357.07 vs 434.29 pg/mg per hour; p = .07). CONCLUSION: The results indicate a normalization of DCA-induced hyperproliferation of colonic epithelium by butyrate that is not clearly mediated by PGE2. Considering that nutrition affects the luminal concentrations of DCA and butyrate, our findings may have implications for colonic carcinogenesis.

Bromodeoxyuridine↗

Activation-induced changes in evoked and slow brain potentials: effects of cocaine in awake rabbit.

To study the interrelations between event-related potentials and brain activation, evoked responses to visual stimulation registered from occipital cortex and hippocampal CA1 region were investigated in awake animals administered cocaine (2 mg/kg, SC) or saline. Administration of COCA resulted in longterm significant changes in heart and breathing rates and spontaneous EEG (desynchronization in the occipital cortex and slow rhythmic theta activity in the hippocampus), inhibition of animal responses to noxious electroshock stimuli and modification in different amplitudes of evoked responses (mainly in the cortex, the enhancement of negativity and bidirectional changes in late slow phase). Principally identical but more or less changes were observed in response to administration of saline. Obtained results are discussed in respect to their interrelations with the general activation organism's response and the modification of brain metabolism induced by cocaine in restrained rabbits.

Animals↗

Cell proliferation in rat colon measured with bromodeoxyuridine, proliferating cell nuclear antigen, and [3H]thymidine.

Epithelial cell proliferation was studied in the normal colonic mucosa of 5-week-old Sprague-Dawley rats, comparing [3H]thymidine incorporation (group 1) with two newer proliferation markers, bromodeoxyuridine (group 2) and proliferating cell nuclear antigen (group 3). Microautoradiography (group 1) or immunoperoxidase assays (groups 2 and 3) were carried out. Cells were counted for positive reaction and position along 50 colonic crypt columns/animal. No significant differences were found in number or distribution of labeled epithelial cells in proliferative compartments in crypt columns of normal colonic mucosa; labeled cells were mainly in the lower 60% of colonic crypts. Thus, in this model, bromodeoxyuridine and proliferating cell nuclear antigens were comparable to [3H]thymidine as reliable markers of proliferating epithelial cells in rat colon.

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