[A proximal staple technic compared with conventional suturing for skin closure. Late cosmetic results].
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Biomedical subjects
Publications and source records attributed to O Olsen.
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1. The isolated colonic mucosa from adult hens has been studied in vitro under short-circuit conditions. Colonic mucosa was prepared from hens fed either a NaCl-poor or a NaCl-rich diet. 2. The unidirectional transmucosal fluxes of chloride, K and Na were measured. For the high NaCl colon the fluxes of lysine were also measured. The effects of galactose, glucose, leucine, lysine, amiloride (10(-4) M) and acetazolamide (5 X 10(-4) M) on the short-circuit current (Isc) were examined. 3. The Isc of the high NaCl colon was stimulated by galactose, glucose, leucine and lysine in a manner which suggests that these substances were transported by the epithelium in co-transport with Na. The Isc was in most cases insensitive to amiloride (mucosal side), but moderately stimulated by acetazolamide (serosal side). The Isc was closely matched by the sum of the net transmucosal fluxes of chloride, lysine, K and Na. The effects of galactose, leucine and lysine on the Isc were maintained only when glucose was present on the serosal side of the preparations. 4. The Isc of the low NaCl colon depended on the presence of glucose on the serosal (or mucosal) side. It was not stimulated by galactose or by lysine, but leucine did stimulate when added to the mucosal solution. Adding amiloride on the mucosal side invariably eliminated or, in most cases, led to an inversion of the Isc. Acetazolamide markedly stimulated the Isc; and, when added after amiloride, acetazolamide caused the Isc to become positive again. The data on Isc and net fluxes of chloride, lysine, K and Na are consistent with the presence of a process of bicarbonate absorption or H ion secretion. 5. There is a net secretion of K across both the high and the low Na colon, which is highest in the former although both Isc and net absorption of Na are highest in the latter. 6. The results from both types of colon suggest that the transport of chloride differs with the functional status of tissues.
1. Using the isolated mucosa from the colon of the adult hen, transport of galactose, leucine and lysine was studied through measurements of influx across the brush-border membrane, unidirectional transmucosal fluxes, and of steady-state mucosal uptake.2. In hens maintained on a NaCl rich diet influx of galactose, leucine and lysine were saturable processes with well defined values for J(max) and K(t). All three substances were actively transported across the epithelium and accumulated in the mucosal tissues to steady-state concentrations several times higher than in the incubation media.3. In hens maintained on a NaCl poor diet the K(t) of the leucine influx was markedly increased and the J(max) moderately decreased, while the epithelium maintained the capability of active transepithelial transport and of establishing a steady-state tissue/medium distribution ratio well above 1. Galactose and lysine could no longer be actively transported and in the steady state their tissue concentrations did not exceed those of the medium.4. It is proposed that in the low NaCl colon the processes of galactose and lysine co-transport with Na are abolished and that the transport of galactose proceeds via a phloretin sensitive system like that described for the enterocyte of the chicken small intestine.5. In the high NaCl colon 1 mM-leucine increases the mucosa to serosa flux of lysine by a factor 2.8 without affecting the serosa to mucosa flux or the steady-state mucosal accumulation of lysine. In the low NaCl colon 1 mM-leucine induces active transepithelial transport of lysine. Assuming that the active transport of leucine is secondary to the transport of Na, leucine-induced active transport of lysine is described as a tertiary active transport.6. In the high NaCl colon the mucosa to serosa flux and the steady-state mucosal accumulation of leucine were inhibited by galactose which had no effect on leucine influx across the brush-border membrane. Leucine did not affect any of the parameters of galactose transport.
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BACKGROUND: Gastric lipase secretion is stimulated by gastrin in plasma, but its regulation by secretin is unknown. METHODS: In 7 normal persons we investigated the effect of exogenous secretin on the output of gastric lipase stimulated by intravenous gastrin-17. The gastric content was measured using a nasogastric tube for aspiration. The quantitative lipase secretion was measured by an enzyme-linked immunosorbant assay (ELISA) and the lipolytic activity by a kinetic assay. Plasma concentrations of secretin and gastrin were measured by radioimmunoassay. RESULTS: Gastric lipase secretion (the quantity as well as the lipolytic activity) was significantly stimulated by gastrin. In response to secretin infusion, the lipolytic activity increased as acid secretion decreased. CONCLUSION: Secretin in postprandial concentrations does not influence the quantitative gastric lipase secretion stimulated by gastrin, but it increases lipolytic activity due to inhibition of acid secretion.