[Disseminated gonococcal infection (author's transl)].
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Biomedical subjects
Publications and source records attributed to A Bretholz.
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Occurrence of fever in a patient with liver cirrhosis should suggest the following: 1. Endotoxemia. Endotoxins are normally present in portal blood; in hepatic cirrhosis they are insufficiently cleared by the liver and their presence can be demonstrated in the systemic circulation by the "limulus test". Fever is one of the many consequences ascribed to the presence of endotoxins in the blood. 2. Infections. Cirrhosis and alcoholism (which often accompanies it) impair host defenses against bacteria and other organisms. Thus, infections are actually more frequent in hepatic cirrhosis as is shown by the example of bacterial endocarditis. Spontaneous bacterial peritonitis must be searched for carefully when ascites is present. 3. Alcoholic hepatitis. This diagnosis is established histologically. The usual symptoms, occurring with variable incidence, include anorexia, nausea and vomiting, abdominal pain, fever and jaundice in the presence of hepatomegaly, leukocytosis and an elevated SGOT. Differential diagnosis from obstructive jaundice and a severe prognosis without alcohol abstinence make early diagnosis mandatory. Its evolution in cirrhosis can be astonishingly rapid. In the absence of hepatic encephalopathy, corticosteroids do not appear to be recommended. 4. Hepatoma.
42 cases of pancreatic cyst in acute (22 cases) pr chronic (20 cases) pancreatitis were seen between 1962 and 1976. Analysis of the case data revealed the following: (1) exact assignment of the cyst to acute or chronic pancreatitis is often possible only by long-term observation; (2) the cysts of chronic pancreatitis are not a uniform group: some (8 cases) apparently occurred in acute pancreatitis through necrotic episodes (pseudocysts), others (12 cases) by a retention mechanism; these "retention cysts" develop later in the course of chronic pancreatitis than the pseudocysts and produce a different clinical picture with better prognosis; (3) barium meal and retrograde cholangiopancreatography proved of diagnostic value' (4) if the cysts persist for more than six weeks operation is indicated because of the high incidence of complications.
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Report on 3 cases of spontaneous perforation of a pancreatic pseudocyst into the stomach; presenting symptom was in each case an acute upper GI-bleeding. The pseudocyst was endoscopically seen as a well delineated, hemorrhagic protrusion into the stomach. After full perforation the spontaneous ostium had the appearance of a surgical anastomosis. High amylase concentration in the aspirate ave further diagnostic evidence. All 3 patients survived, 2 of them without surgery.
Plasma immunoreactive secretin has been compared before and after stimulation by intraduodenal infusion of HCl in 3 dogs who had received 2 g-kg-1-day-1 alcohol for 3 years and 4 non-alcoholic control dogs. After HCl infusion, blood secretin was lower in chronic alcoholic animals than in controls. This decreased post-stimulation concentration of secretin in chronic alcoholic dogs was in contrast to the increased release of gastrin after a meal which has been previously described.
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In five dogs with chronic gastric fistulas (Thomas cannula) and a new type of chronic pancreatic fistula which permits collection of pure nonactivated pancreatic juice after ingestion of a test meal, the following series of experiments were performed: In the first series, a test meal (400 gm. canned dog meat) was given with 200 ml. saline simultaneously infused through the gastric cannula. In response to this stimulus, the 20-minute peak pancreatic flow rate and bicarbonate output were respectively 33% and 34%, of the maximal secretion of the pancreatic gland obtained with secretin in six control dogs provided with gastric and the classical Thomas duodenal fistula. The 20-minute peak protein output represented 84% of the maximal secretory capacity attained with dose-response curves to CCK in the same group of control animals. In the second series either 1.5 or 2.0 gm./kg. ethanol were given instead of saline. Intragastric ethanol induced a dissociation of pancreatic secretion: a significant inhibition of flow rate, of bicarbonate concentration and output and a significant rise of protein concentration; protein output remaining unchanged. It is postulated that ethanol, acting on the stomach and duodenojejunum, evokes, independently of its gastrin-releasing capacity, and unknown humoral or nervous mechanism that counteracts the ethanol-elicited cholinergic-mediated inhibition of pancreatic protein secretion which has been previously described.
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As it has been previously shown, the pancreatic secretory response to an intraduodenal infusion of oleic acid is increased in animals accustomed to daily ethanol consumption compared to matched controls. This action has been verified in dogs provided with a Thomas cannula and consuming 2 g kg-1 ethanol or not, daily since 3 years. An intravenous infusion of 0.75 mg kg-1 h-1 of atropine suppresses the difference between alcoholic and non-alcoholic animals. Therefore, the increased release of CCK-PZ in response to meal, which is characteristic of chronic alcoholic animals, is under cholinergic control.
In dogs provided with chronic gastric and pancreatic fistulas (Thomas cannula), an 80-minute intraduodenal CaCl2 (0.6 mM/kg.) infusion against a background of secretin perfusion (GIH, 1.0 CU/kg./hr.) elicits a complex "pancreon" response consisting of both excitatory and inhibitory effects on the protein and alkaline components, respectively, of pancreatic secretion. It is postulated that these pancreatic secretion changes are the result of the interplay of released CCK and calcitonin. The lack of pancreatic secretion modifications when ethanol (0.7 mg./kg.) was added to the intraduodenal CaCl2 infusion suggests that the former counteracts the effects of the latter on the nerves and/or the endocrine cells of the gut. Ca++ concentration and output in pancreatic secretion did not change significantly either with the intraduodenal CaCl2 alone or associated with ethanol. Fasting blood Ca++ levels were not modified either by the secretin perfusion or by the intraduodenal CaCl2 infusion, either given alone or associated with ethanol.
In 14 duodenal Thomas fistula dogs, four of them alcohol-fed for two years, lidocaine, applied topically to the duodenal pancreatic papilla, inhibited secretin-induced pancreatic secretion probably by interrupting duodenopancreatic reflexes that contribute to the "pancreon's" cholinergic tone. Opposite effects were observed with lidocaine administered against a CCK plus secretin background stimulation of the pancreas. The significant rising of volume and protein output above plateau levels were enhanced by chronic alcohol feeding. Lidocaine infused intravenously did not change secretin-induced pancreatic secretion but raised CCK and secretin evoked plateau secretion levels. Chronic alcoholism enhanced these latter effects. Atropine perfusion superimposed on CCK and secretin stimulation did not prevent but raised the intravenous lidocaine-induced pancreatic secretion changes. It is postulated that the modifications elicited by lidocaine sprayed topically and infused intravenously on CCK plus secretin evoked pancreatic secretion plateau levels are due to depression of an anti-CCK factor secreted by the small intestine mucosa.
In five dogs, provided with chronic pancreatic and gastric fistulas (Thomas' cannula), the effects on exocrine pancreatic secretion of an intravenous continuous perfusion of gastrin (Eurorga, hog gastrin I-II, 6 mug./kg./hr.) and secretin (GIH, 0.5 C.U./kg.hr.) was studied before and after 48 hours of reserpine treatment (0.1 mg./kg./24 hr.). When compared with the pretreated plateau levels, reserpine induced a significant pancreatic secretion dissociation, a depressive of the alkaline and a rising of the protein component. The former phenomenon suggests a participation of a catecholamines in the secretin-elicited pancreatic electrolyte secretion. The latter, an enhanced sensitivity of intranpancreatic and/or acinar cells of the "pancreon" to gastrin stimulation.