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21.
The development of modern diagnostic technics (ultrasound and CT) has facilitated diagnosis of pancreatic pseudocysts. The subsequent demonstration of spontaneous resolution (in 25-50%) has however produced new controversies on the optimal therapeutic strategy. In spite of the progress in the area of diagnosis important questions regarding the evaluation of the percutaneous fine needle puncture, the indication for surgical treatment in relationship to the size of the pseudocysts and the optimal timing of surgical measures are still be open to discussion. To clarify these problems a prospective controlled study should be begun. According to most reports operative intervention is indicated if after a period of 6 weeks no spontaneous resolution has been observed. The optimal surgical treatment is thought to be internal drainage, for instance a cystojejunostomy.  相似文献   
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The present study was designed to examine the role of electrode position during retrograde pacing in dogs with short bowel syndrome and unsevered intact duodenum. In nine beagle dogs a subtotal resection of the small bowel and jejunoileostomy was performed. In five of these dogs, an isolated blind loop (jejunum) with preserved mesenteric connections was left in situ as an additional place for a stimulation electrode. Small intestinal motility and plasma levels of insulin, glucagon, gastrin, somatostatin, and glucose were examined during pacing of the residual jejunum or the isolated loop, respectively, compared with control experiments in the same dogs without pacing. During pacing of the loop a significant (P less than 0.05-0.01) decrease in the postprandial small intestinal motility index was observed combined with a significant (P less than 0.05) increase in plasma insulin levels, whereas the postprandial increase in glucagon, somatostatin, gastrin, and glucose levels was not different from that in controls. In contrast, pacing of the jejunum increased postprandial small intestinal motility index (less than or equal to 68%), whereas the levels of the four hormones and plasma glucose were not different from those in controls. The data suggest that in dogs with intact duodenum, pacing on an excluded loop is required to obtain the desired effect of reduced intestinal motility and improved anabolic pancreatic hormone secretion.  相似文献   
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Information about the elimination and the adequate dosing of levofloxacin during renal replacement therapy is scarce. The aim of this study was to characterize in vitro the elimination of levofloxacin during continuous venovenous hemodialysis (CVVHD) and to investigate whether the CVVHD clearances of creatinine and urea are correlated with the levofloxacin clearance in order to facilitate dosage adjustments. An in vitro model of CVVHD was established using five dialyzer membranes at varying dialysate flow rates applied in the clinical setting (8, 16, 25, 33 and 41 ml/min). Plasma and dialysate samples were drawn for determination of levofloxacin, creatinine and urea concentrations to evaluate clearances by CVVHD. During CVVHD, the clearance of levofloxacin varied between 9.02 and 33.30 ml/min, depending on the chosen setup. Positive correlations (p<0.001) were received for: dialysate flow rate (QD) and creatinine/ urea clearances (R(2)>0.93); QD and levofloxacin clearance (R(2) 0.59-0.71); levofloxacin and creatinine clearance (R(2) 0.69-0.75); and levofloxacin and urea clearance (R(2) 0.56-0.75) as well. When dosing critically ill patients, therefore, extracorporeal as well as total clearance of levofloxacin should be considered.  相似文献   
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Mechanosensitive ion channels are sensors probing membrane tension in all species; despite their importance and vital role in many cell functions, their gating mechanism remains to be elucidated. Here, we determined the conditions for releasing intact mechanosensitive channel of large conductance (MscL) proteins from their detergents in the gas phase using native ion mobility–mass spectrometry (IM-MS). By using IM-MS, we could detect the native mass of MscL from Escherichia coli, determine various global structural changes during its gating by measuring the rotationally averaged collision cross-sections, and show that it can function in the absence of a lipid bilayer. We could detect global conformational changes during MscL gating as small as 3%. Our findings will allow studying native structure of many other membrane proteins.One of the best candidates to explore the gating of mechanosensitive channels is the mechanosensitive channel of large conductance (MscL) from Escherichia coli. The crystal structure of MscL in its closed/nearly closed state from Mycobacterium tuberculosis revealed this channel as a homopentamer (1). Each subunit has a cytoplasmic N- and C-terminal domain as well as two α-helical transmembrane (TM) domains, TM1 and TM2, which are connected by a periplasmic loop. The five TM1 helices form the pore and the more peripheral TM2 helices interact with the lipid bilayer.MscL detects changes in membrane tension invoked by a hypoosmotic shock and couples the tension sensing directly to large conformational changes (1, 2). On the basis of a large body of structural and theoretical data, numerous gating models of MscL have been proposed (39). These models agree upon (i) the hydrophobic pore constriction of the channel and (ii) the channel opens by an iris-like rotation—i.e., a tilting and outward movement of transmembrane helices that make the channel wider and shorter (5). This mechanism is supported by patch-clamp (10), disulfide cross-linking (11), FRET spectroscopy (12), and site-directed spin labeling EPR experiments (6, 7), as well as computational studies (1315). So far, direct experimental results have only been observed for short-range local structural changes, and no measure of the overall global structural changes during channel gating have been reported. Because there is no crystal structure available for the open MscL channel, elucidating overall global structural changes from the onset of channel activation is of utmost importance for our understanding of the gating mechanism of mechanosensitive channels. Here, we provide direct experimental evidence for the key areal changes occurring during channel gating by combining our ability to activate MscL in a controlled manner to different subopen states (16) with a native ion mobility-mass spectrometry (IM-MS) approach.  相似文献   
27.
We examined 30 gastric-cancer patients with a varying degree of family history of stomach cancer and/or synchronous gastric tumors for microsatellite instability. We observed microsatellite instability at at least 1 of 8 loci tested in tumors of 14/30 patients; of these 14, 8 had single locus alterations and 6 had alterations at at least half of the 8 loci. Among the patients with microsatellite instability at >=4 loci, 3 patients showed a strong familial clustering of gastric cancer. Mutation analysis of the DNA mismatch repair gene hMLH1 on paired non-tumorous and tumor DNA from 10 patients 6 with microsatellite instability at 24 loci and 4 with an alteration at one locus, revealed a novel missense mutation, present in the normal and tumor DNA of one patient with microsatellite instability at multiple loci in his tumor. His family history of cancer included one second-degree relative affected with gastric cancer. These data suggest that germline mutations in the hMLH1 gene occur in some gastric-cancer patients and that in the majority of cases microsatellite instability in gastric tumors may be due to defects in other genes responsible for DNA replication fidelity than the hMLH1. © 1996 Wiley-Liss, Inc.  相似文献   
28.
Surgical management of esophagogastric junction tumors   总被引:3,自引:0,他引:3  
INTRODUCTION Different tumor entities arise in the vicinity of the esophagogastric junction. The appropriate classification of these entities is essential for choosing the appropriatesurgical approach and making results from different instutions comparabl…  相似文献   
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Induction of organ-selective CD4+ regulatory T cell homing   总被引:2,自引:0,他引:2  
Compelling evidence suggests that Foxp3+CD25+CD4+ Treg play a fundamental role in immunoregulation. We have previously demonstrated that Treg have to enter peripheral tissues to suppress ongoing inflammation. However, relatively little is known about how Treg acquire the expression of homing receptors required for tissue‐ or inflammation‐specific migration. Migratory properties of conventional naïve T cells are shaped by the tissue microenvironment and organ‐specific dendritic cells during priming. Here, we show that this basic concept also holds true for CD25+CD4+ Treg: Priming of Treg within peripheral LN led to the expression of selectin ligands, which facilitate migration into inflamed skin, whereas activation within mesenteric LN led to induction of the integrin α4β7, which is required for migration into mucosal tissues. Furthermore, we could establish in vitro culture systems containing either dendritic cells from mesenteric and peripheral LN, or retinoic acid and IL‐12 as polarizing compounds to induce mucosa‐ and skin‐seeking Treg, respectively. Together, our results demonstrate that Treg, similarly to conventional T cells, can be configured with organ‐selective homing properties allowing efficient targeting into distinct tissues.  相似文献   
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