Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0243026 (sepsis)
52,417 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Procalcitonin (PCT), a glycoprotein consisting of 116 amino acids, has been proposed as a new marker of severe infection. The site of production under this condition remains unknown. The serum PCT concentration is determined by an immunoluminometric assay of 40 microliters serum or plasma requiring approximately two hours. Elevations of PCT are for instance associated with levels of lipopolysaccharide and the cytokines TNF-alpha and IL-6. Bacterial, parasitic or fungal infections developing septic complications in contrast to local infections, often show values exceeding 2 ng/ml. The specificity of the parameter in this context increases with its concentrations. Therapeutic actions that confine the infection locally are reflected by a decrease of the PCT value. PCT may be elevated within the first days after extended surgery or polytrauma, in some malignancies, heat-stroke and during treatment of some hematologic diseases without an existing sepsis or severe infection. Previous studies indicate certain benefits of PCT compared to traditional markers of inflammation or sepsis, where the ability to indicate a generalized infection is the primary advantage.
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PMID:[Procalcitonin. A new diagnostic parameter for severe infections and sepsis]. 974 Sep 32

Thrombotic complications are observed in patients undergoing bone marrow transplantation despite thrombocytopenia and impaired coagulation due to liver function disturbances. Endothelial cell damage which is involved in the pathogenesis of major transplant related complications like graft-versus-host disease, veno-occlusive disease, sepsis or microangiopathy may be a contributing factor. Little is known about platelet function in bone marrow transplant recipients. In order to study functional alterations in circulating platelets we investigated unstimulated and ADP-stimulated platelets of 10 bone marrow transplant recipients ex vivo by flow cytometry in a pilot study using a panel of monoclonal antibodies to characterize changes in membrane glycoproteins. Samples were collected before and during conditioning and at three timepoints after engraftment. 10 healthy volunteers served as controls. Platelets of bone marrow transplant recipients showed partly a significant, higher expression of surface bound fibrinogen, activated fibrinogen receptor, and glycoprotein Ib as compared to controls. P-selectin, a marker of platelet degranulation was significantly elevated after ADP-induced stimulation at all timepoints compared to controls. Only marginal differences were found for GP IIb/IIIa surface expression. The data point to an increased platelet activation state in bone marrow transplant recipients which might contribute to the thrombotic phenomena observed in these patients.
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PMID:Changes in platelet membrane glycoproteins before bone marrow transplantation and after engraftment--a pilot study. 975 3

Streptococcus pneumoniae infection and disease have been modeled in several animal species including infant and adult mice, infant and adult rats, infant Rhesus monkeys, and adolescent and adult chinchillas. Most are models of sepsis arising from intravenous or intraperitoneal inoculation of bacteria, and a few were designed to study disease arising from intranasal infection. Chinchillas provide the only animal model of middle ear pneumococcal infection in which the disease can be produced by very small inocula injected into the middle ear (ME) or intranasally, and in which the disease remains localized to the ME in most cases. This model, developed at the University of Minnesota in 1975, has been used to study pneumococcal pathogenesis at a mucosal site, immunogenicity and efficacy of pneumococcal capsular polysaccharide (PS) vaccine antigens, and the kinetics and efficacy of antimicrobial drugs. Pathogenesis experiments in the chinchilla model have revealed variation in ME virulence among different pneumococcal serotypes, enhancement of ME infection during concurrent intranasal influenza A virus infections, and natural resolution of pneumococcal otitis media (OM) without intervention. Research has explored the relative contribution of pneumococcal and host products to ME inflammation. Pneumococcal cell wall components and pneumolysin have been studied in the model. Host inflammatory responses studied in the chinchilla ME include polymorphonuclear leukocyte oxidative products, hydrolytic enzymes, cytokine and eicosanoid metabolites, and ME epithelial cell adhesion and mucous glycoprotein production. Both clinical (tympanic membrane appearance) and histopathology (ME, Eustachian tube, inner ear) endpoints can be quantified. Immunologic and inflammatory studies have been facilitated by the production of affinity-purified antichinchilla immunoglobulin G (IgG), IgM, and secretory IgA polyclonal antibody reagents, and the identification of cross-reactivity between human and chinchilla cytokines, and between guinea pig and chinchilla C3. Alteration of ME mucosa by pneumococcal neuraminidase and alteration of ME epithelial cell (MEEC) surface carbohydrates during intranasal pneumococcal infection have been demonstrated. Pathogenesis studies have been aided by cultured chinchilla MEEC systems, in which the ability of platelet activating factor and interleukin (IL)-1 beta to stimulate epithelial mucous glycoprotein synthesis has recently been demonstrated. Because chronic OM with effusion is characterized by presence of large amounts of mucous glycoprotein in the ME, pneumococcus may have an important role in both acute and chronic ME disease. Both unconjugated PS and PS-protein-conjugated vaccines are immunogenic after intramuscular administration without adjuvant in chinchillas. Passive protection studies with human hyperimmune immunoglobulin demonstrated that anti-PS IgG alone is capable of protecting the chinchilla ME from direct ME challenge with pneumococci. Active PS immunization studies demonstrated protection following direct ME and intranasal pneumococcal challenge with and without concurrent influenza A virus infection. An attenuated influenza A virus vaccine also showed protection for pneumococcal OM. Antimicrobial treatment of acute OM has been based almost exclusively on empirical drug use and clinical trials without a foundation of ME pharmacokinetics. Studies in the chinchilla model have started to bring a rational basis to drug selection and dosing. Microassays have been developed using high-pressure liquid chromatography for many relevant drugs. Studies have explored the in vivo ME response in pneumococcal OM to antimicrobial drugs at supra- and sub-minimum inhibitory concentration (MIC), the effect of concurrent influenza A virus infection on ME drug penetration, and the effect of treatment on sensorineural hearing loss produced by pneumococcal OM.
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PMID:Otitis media: the chinchilla model. 1033 23

Heparin Cofactor II (HCII) is a glycoprotein in human plasma which inactivates thrombin rapidly in the presence of dermatan sulfate. Inhibition occurs by formation of a stable equimolar complex between HCII and thrombin. HCII association with thrombotic events has not always been observed, thus decreased HCII does not appear to be a strong risk factor for thromboembolic events. Reduced HCII levels have been detected in different clinical conditions, such as hepatic failure, disseminated intravascular coagulation, thalasemina, sickle cell anemia. Increased physiological levels have been found in pregnant women and oral contraception. In our laboratory, we measured HCII plasmatic levels in the normal Buenos Aires city population and in patients under different clinical conditions, such as sepsis, diabetis, burns, oral anticoagulation and in patients treated with heparin, hyperhomcysteinemia in whom septic and diabetic patients showed decreased values. HCII thrombin inhibition possibly takes place in extravascular sites where dermatan sulfate is present. HCII activity would be important in the regulation of wound healing, inflammation, or neuronal development.
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PMID:[Heparin cofactor II, a thrombin inhibitor with a still not clarified physiologic role]. 1034 31

Although the intestinal mucosa forms a crucial barrier between the host and the environment, bacterial translocation (BT) occurs frequently in neonates and may be a source of sepsis. The intestinal mucous gel layer is thought to be a vital component of the gut barrier and is composed, in part, of a family of glycoproteins known as mucins. Our aim was to study the effects of mucin on BT in an enterocyte cell-culture model using a fetal (I-407) and an adult (Caco-2) intestinal cell line. I-407 and Caco-2 cells were grown to confluence on porous filters in a two-chamber Transwell system. The integrity of the monolayers was confirmed by transepithelial electrical resistance (TEER) and permeability using the macromolecule dextran blue. Cells were treated with mucin (40 mg/ml) prior to inoculation of 1 x 10(6) Escherichia coli C25. The magnitude of BT was determined quantitatively by culturing the samples from the basal chamber of the wells and was expressed as log 10 [Colony Forming Units (CFU)/ml]. Statistical analysis was performed by the Mann-Whitney U test with statistical significance at P < 0.05. Mucin inhibited BT across both fetal and adult cultured enterocyte monolayers; however, the inhibitory effect was less on the fetal cells compared to the adult cells. Dextran-blue studies showed that monolayers were intact throughout the experiments. Despite 98% inhibition of BT, mucin had a statistically significant effect on post-bacterial inoculation TEER in Caco-2 cells and no effect in I-407 cells. The ability of mucin, a mucous-barrier glycoprotein, to inhibit BT across immature intestinal enterocytes, as in the neonate, may be diminished compared to mature adult enterocytes.
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PMID:The effect of mucin on bacterial translocation in I-407 fetal and Caco-2 adult enterocyte cultured cell lines. 1037 12

The GPI-anchored 55 kDa glycoprotein CD14 is expressed on monocytes/macrophages and to a lesser extent on granulocytes. Engagement of CD14 by ligands like lipopolysaccharide, intact bacteria or apoptotic cells can result in either pro- or anti-inflammatory responses. Since the CD14 molecule does not have a membrane spanning domain it cannot transmit a signal into the cell. Some as yet unidentified accessory protein is thought to be involved. It will be important to clarify the signalling systems involved since they may provide a therapeutic target for sepsis intervention strategies.
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PMID:CD14. 1039 15

Fibronectin (Fn) is a high molecular weight glycoprotein and acute phase reactant that contributes to a variety of cellular activities including proliferation and wound healing. Production of Fn is influenced by cytokines such as IL-1alpha, IL-6 and TNF -alpha, and in serum Fn levels can function as an indicator of sepsis and reticulo-endothelial function. Here we describe the production of a panel of mAb to chicken Fn and give evidence that a chicken hepatocellular carcinoma cell line, LMH, constitutively expresses Fn. A capture ELISA to measure chicken Fn was developed using an IgG1 mAb (AV62) as the capture Ab, and biotinylated AV63 (IgG2b) as the detecting Ab. This study identified a single commercially available mAb directed against human Fn that also recognised chicken Fn. By contrast, the anti-chicken Fn mAbs did not cross-react with either human or bovine Fn.
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PMID:Development and use of monoclonal antibodies to chicken fibronectin to show that the chicken hepatocellular carcinoma cell line, LMH, constitutively expresses fibronectin. 1075 32

Lipoprotein(a) [Lp(a)] is an enigmatic lipoprotein particle present in the plasma from humans, great apes and hedgehogs. Plasma levels of Lp(a) vary widely between individuals and are largely determined by specific sequences within the gene encoding apo(a), the unique highly polymorphic glycoprotein attached to apoB of low density lipoprotein (LDL) to form Lp(a). Elevated plasma concentrations of LP(a) are associated with the premature development of atherosclerosis. A major goal of our laboratory is to better understand the metabolism of Lp(a) and its function in humans. We have identified unexpected and large variations in plasma Lp(a) levels during renal disease, HIV-infection and in sepsis. Moreover, we have observed an association between Lp(a) and Alzheimer disease. Taken together, our observations suggest that Lp(a) may constitute a novel target in our fight against cardiovascular and neurodegenerative disorders.
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PMID:[Lipoprotein (a) in Alzheimer's atherosclerosis]. 1114 Mar 10

KL-6, a mucinous high-molecular weight glycoprotein expressed on type 2 pneumocytes, has been shown to be elevated in the serum and bronchoalveolar lavage fluid of patients with interstitial pneumonitis (IP). We measured the serum levels of KL-6 in patients after they had undergone allogeneic bone marrow transplantation (BMT) to determine whether KL-6 could be a clinically useful indicator for the development of IP. The serum concentrations of KL-6 were determined by a sandwich-type enzyme-linked immunosorbent assay using an anti-KL-6 monoclonal antibody. A total of 1028 samples were tested from 76 patients (78 transplantations) who received BMTs. The KL-6 values were markedly elevated in patients with pulmonary complications, but not in those with acute and chronic graft-versus-host disease, hemorrhagic cystitis, herpes encephalitis, sepsis, and veno-occlusive disease. The serum levels of KL-6 from patients with pulmonary complications were significantly higher than from those without pulmonary complications (P < .001) and those with other complications (P < .001). Of the 12 patients with pulmonary complications, 6 had idiopathic IP (IIP). The levels were not high at the onset of IIP. Four of 6 IIP patients showed marked elevations of KL-6 levels in parallel with the severity of IP and died of respiratory failure without response to treatment. Assessment of serum KL-6 levels might not be useful for the early diagnosis of IP, but may be a useful indicator for monitoring the severity of IP after BMT.
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PMID:Serum KL-6 levels in patients with pulmonary complications after allogeneic bone marrow transplantation. 1179 6

A delayed or deficient immunological protection as well as an overstimulation of the mucosal immune system may act as possible additional promoters of sepsis-induced lung injury in patients suffering from a severe septic condition. Lectin-binding patterns in pulmonary tissue samples obtained at autopsy from septic patients and control individuals were studied using 11 carbohydrate-specific lectins (Con A, UEA, GSA I, GSA II, MPA, PNA, Jac, WGA, MAA, LPA, and SNA). There were no differences in the secretory product of serous parts of bronchial glands detectable in the two study groups, whereas lectin binding patterns of alveolar epithelium and mucous parts of subepithelial seromucous glands were different in sepsis cases when compared to controls. Apart from differences in binding sites for alpha-mannose, N-acetyl-neuraminic acid and alpha-(2-6)-galactose (as detected by different expression for Con A, MAA and SNA) in the two study groups, the main finding was that no binding sites for alpha-N-acetyl-galactosamine (as investigated by MPA immunoreactivity) could be detected on alveolar epithelial cells and mucous parts of subepithelial seromucous glands in sepsis cases in contrast to the presence of such binding sites in the control cases. We hypothesize that the finding of an altered secretory product of alveolar epithelial cells and bronchial glands in sepsis may be a result of specific carbohydrate deprivation or consumption, respectively, possibly due to direct bacterial effects or pathogenetic events in response to bacterial toxins during the complex cascade of the host's systemic inflammatory response in sepsis. The altered type of mucus glycoprotein physiologically secreted by alveolar epithelium and mucous parts of subepithelial seromucous glands of the bronchi with subsequent loss of a considerable proportion of protection of the mucosal barrier in sepsis may play an important additional role in the development of sepsis-induced lung injury.
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PMID:Lectin binding patterns of alveolar epithelium and subepithelial seromucous glands of the bronchi in sepsis and controls--an approach to characterize the non-specific immunological response of the human lung to sepsis. 1196 49


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