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Träfflista för sökning "AMNE:(MEDICAL AND HEALTH SCIENCES Basic Medicine) ;pers:(Svanborg Catharina)"

Sökning: AMNE:(MEDICAL AND HEALTH SCIENCES Basic Medicine) > Svanborg Catharina

  • Resultat 1-10 av 112
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1.
  • Dobrindt, Ulrich, et al. (författare)
  • Preface
  • 2013
  • Ingår i: Between Pathogenecity and Commensalism. - Berlin, Heidelberg : Springer Berlin Heidelberg. - 0070-217X. - 9783642365607 ; 358
  • Bokkapitel (refereegranskat)
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2.
  • Adlerberth, Ingegerd, 1959, et al. (författare)
  • Intestinal colonization with Enterobacteriaceae in Pakistani and Swedish hospital-delivered infants.
  • 1991
  • Ingår i: Acta paediatrica Scandinavica. - 0001-656X. ; 80:6-7, s. 602-10
  • Tidskriftsartikel (refereegranskat)abstract
    • Rectal cultures from Swedish and Pakistani hospital-delivered newborn infants were analysed regarding the early acquisition of enterobacteria. Swedish infants were delivered vaginally, Pakistani infants were delivered either vaginally or by caesarean section. The Swedish infants were all breast-fed, whereas breastfeeding was incomplete and often started late among the Pakistani infants. Both groups of Pakistani infants were more rapidly colonized with enterobacteria than were the Swedish infants. Cultures from Swedish infants seldom yielded more than one kind of enterobacteria; E. coli and Klebsiella were most frequently isolated. E. coli dominated in both Pakistani groups, but especially caesarean section delivered infants were in addition often colonized with Proteus, Klebsiella, Enterobacter or Citrobacter species. Breastfeeding from the first day of life reduced colonization with Klebsiella/Enterobacter/Citrobacter. The results suggest that environmental exposure, delivery mode and early feeding habits all influence the early intestinal colonization with enterobacteria.
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3.
  • Ragnarsdottir, Bryndis, et al. (författare)
  • TLR- and CXCR1-dependent innate immunity: insights into the genetics of urinary tract infections.
  • 2008
  • Ingår i: European Journal of Clinical Investigation. - : Wiley. - 0014-2972 .- 1365-2362. ; 38 Suppl 2, s. 12-20
  • Forskningsöversikt (refereegranskat)abstract
    • The susceptibility to urinary tract infection (UTI) is controlled by the innate immune response and Toll like receptors (TLRs) are the sentinels of this response. If productive, TLR4 signalling may initiate the symptomatic disease process. In the absence of TLR4 signalling the infected host instead develops an asymptomatic carrier state. The activation of mucosal TLR4 is also influenced by the properties of the infecting strain, and pathogens use their virulence factors to trigger 'pathogen-specific' TLR4 responses in the urinary tract but do not respond to the asymptomatic carrier strains in patients with asymptomatic bacteriuria (ABU). The TLR4 dependence has been demonstrated in mice and the relevance of low TLR4 function for protection for human disease was recently confirmed in children with asymptomatic bacteriuria, who expressed less TLR4 than age matched controls. Functional chemokines and functional chemokine receptors are crucial for neutrophil recruitment, and for the neutrophil dependent bacterial clearance. Interleukin (IL)-8 receptor deficient mice develop acute septic infections and chronic tissue damage, due to aberrant neutrophil function. This mechanism is relevant for human UTI as pyelonephritis prone children express low levels of the human CXCL8 (Il-8) receptor, CXC chemokine receptor 1 (CXCR1) and often have heterozygous CXCR1 polymorphisms. This review illustrates how intimately the innate response and the susceptibility to UTI are linked and sophisticated recognition mechanisms that rely on microbial virulence and on host TLR4 and CXCR1 signalling.
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5.
  • Mossberg, Ann-Kristin, et al. (författare)
  • HAMLET Interacts with Lipid Membranes and Perturbs Their Structure and Integrity.
  • 2010
  • Ingår i: PloS one. - : Public Library of Science (PLoS). - 1932-6203. ; 5:2
  • Tidskriftsartikel (refereegranskat)abstract
    • BACKGROUND: Cell membrane interactions rely on lipid bilayer constituents and molecules inserted within the membrane, including specific receptors. HAMLET (human alpha-lactalbumin made lethal to tumor cells) is a tumoricidal complex of partially unfolded alpha-lactalbumin (HLA) and oleic acid that is internalized by tumor cells, suggesting that interactions with the phospholipid bilayer and/or specific receptors may be essential for the tumoricidal effect. This study examined whether HAMLET interacts with artificial membranes and alters membrane structure. METHODOLOGY/PRINCIPAL FINDINGS: We show by surface plasmon resonance that HAMLET binds with high affinity to surface adherent, unilamellar vesicles of lipids with varying acyl chain composition and net charge. Fluorescence imaging revealed that HAMLET accumulates in membranes of vesicles and perturbs their structure, resulting in increased membrane fluidity. Furthermore, HAMLET disrupted membrane integrity at neutral pH and physiological conditions, as shown by fluorophore leakage experiments. These effects did not occur with either native HLA or a constitutively unfolded Cys-Ala HLA mutant (rHLA(all-Ala)). HAMLET also bound to plasma membrane vesicles formed from intact tumor cells, with accumulation in certain membrane areas, but the complex was not internalized by these vesicles or by the synthetic membrane vesicles. CONCLUSIONS/SIGNIFICANCE: The results illustrate the difference in membrane affinity between the fatty acid bound and fatty acid free forms of partially unfolded HLA and suggest that HAMLET engages membranes by a mechanism requiring both the protein and the fatty acid. Furthermore, HAMLET binding alters the morphology of the membrane and compromises its integrity, suggesting that membrane perturbation could be an initial step in inducing cell death.
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9.
  • Düringer, Caroline, et al. (författare)
  • HAMLET; a novel tool to identify apoptotic pathways in tumor cells.
  • 2005
  • Ingår i: Application of apoptosis to cancer treatment.. - Berlin/Heidelberg : Springer-Verlag. - 9781402033032 ; , s. 223-245
  • Bokkapitel (övrigt vetenskapligt/konstnärligt)abstract
    • Tumor cells often carry mutations in genes that control cell survival, and become resistant to signals that trigger cell death. Yet, some cell death pathways remain intact in tumor cells. If identified, these pathways might be exploited to selectively remove tumor cells. HAMLET (human α-lactalbumin made lethal to tumor cells) is a protein-lipid complex derived from human milk that activates cell death programs in tumor cells but not in healthy differentiated cells. We use HAMLET as a tool to identify apoptosis and apoptosis-like cell death mechanisms in tumor cells and to understand if these mechanisms differ between tumor and healthy cells. HAMLET interacts with the cell surface, translocates into the cytoplasm and accumulates in cell nuclei, where it disrupts the chromatin. Recent in vivo studies have shown that HAMLET maintains the tumoricidal activity in glioblastoma, papilloma and bladder cancer models, with no significant side effects. The results suggest that HAMLET should be explored as a new therapeutic agent with selectivity for the tumor and with little toxicity for adjacent healthy tissue. Such therapies are a much-needed complement to conventional treatments, to reduce the side effects and improve the selectivity.
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10.
  • Adlerberth, Ingegerd, 1959, et al. (författare)
  • Adhesins of Escherichia coli associated with extra-intestinal pathogenicity confer binding to colonic epithelial cells.
  • 1995
  • Ingår i: Microbial pathogenesis. - 0882-4010. ; 18:6, s. 373-85
  • Tidskriftsartikel (refereegranskat)abstract
    • Escherichia coli adhesins are virulence factors in intestinal and extra-intestinal infections, but their role in normal intestinal colonization has not been defined. We investigated the intestinal adherence of E. coli with Dr hemagglutinin, S fimbriae, CFA/I or CFA/II, using freshly isolated ileal or colonic enterocytes and cells from the human colonic cell line HT-29. E. coli with S-fimbrial adhesins (Sfa I or Sfa II), P or type 1 fimbriae, adhered in a non-polarized manner, and in similar numbers to colonic and ileal enterocytes. S fimbriae of the variety Sfa II (originating from a meningitis isolate), mediated a stronger binding than Sfa I (of uropathogenic origin). Strains expressing Dr hemagglutinin adhered preferentially to the brush borders, slightly better to colonic than ileal enterocytes. Strains expressing CFA/I or II adhered to colonic and ileal enterocytes, although brush border adherence was predominantly observed with ileal cells. Binding to HT-29 cells paralleled binding to colonic enterocytes for all adhesin specificities except CFA/I. The results suggest that Dr hemagglutinin, P-, type 1- and S-fimbrial adhesins mediate binding to both colonic and ileal enterocytes. These specificities may contribute to the establishment of E. coli in the intestinal microflora, which precedes their spread to extra-intestinal sites.
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