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Leukocyte responses to pathogens : integrins, membrane rafts and nitric oxide

Winberg Tinnerfelt, Martin, 1976- (författare)
Linköpings universitet,Medicinsk mikrobiologi,Hälsouniversitetet
Rasmusson, Birgitta, Professor (preses)
Linköpings universitet,Medicinsk mikrobiologi,Hälsouniversitetet
Lerm, Maria, Dr. (preses)
Linköpings universitet,Medicinsk mikrobiologi,Hälsouniversitetet
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Särndahl, Eva, Dr. (preses)
Linköpings universitet,Cellbiologi,Hälsouniversitetet
Tapper, Hans, Dr. (preses)
Department of Clinical Sciences, Division of Infection Medicine, BMC, B14, Lund University, SE-221 84 Lund, Sweden
Eriksson, Håkan, Docnet (opponent)
Malmö Universitet
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 (creator_code:org_t)
ISBN 9789173939218
Linköping : Linköping University Electronic Press, 2008
Engelska 63 s.
Serie: Linköping University Medical Dissertations, 0345-0082 ; 1058
  • Doktorsavhandling (övrigt vetenskapligt/konstnärligt)
Abstract Ämnesord
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  • During microbial invasion, leukocytes of the innate immunity are rapidly recruited to the site of infection where they internalize (phagocytose), kill and digest the invaders. To aid this process, leukocytes express surface receptors such as Toll-like receptors, β2-integrins and Fc-receptors. The β2-integrins are also used for attachment to the extracellular matrix and are important for migration. When pro- vs. anti-inflammatory regulation of β2-integrins was investigated, it was found that chemotactic factors modulate neutrophil adhesion through altered affinity and/or avidity of β2-integrins. A bacteria-derived chemoattractant evoked a large increase in affinity as well as in mobility and clustering, while an early, host-derived chemotactic factor induced increased clustering and surface mobility, but only a slight increase in affinity. Anti-inflammatory lipoxin affected β2-integrin avidity, but not affinity.The leukocyte membrane is composed of lipids and proteins, which are inhomogeneously distributed. Specific domains in the membrane, membrane rafts, are enriched in signaling proteins and receptors. It was found that lipophosphoglycan (LPG) a virulence factor and membrane component of the parasite Leishmania donovani, accumulated in macrophage rafts during infection, inhibited PKCα translocation to the membrane and halted phagosomal maturation. Membrane rafts were instrumental for LPG to exert its effect. We further showed that nitric oxide (NO) rescued phagosomal maturation halted by Leishmania donovani parasites, possibly through effects on actin dynamics. NO did not affect parasite virulence per se. Moreover, lipoarabinomannan (LAM), a virulence factor on Mycobacterium tuberculosis (Mtb) bacteria, also inserted itself into macrophage membrane rafts. LAM from a less virulent strain (PILAM) was less efficiently inserted. Insertion could to some extent be inhibited by phosphatidylinositol mannoside (PIM), another structural molecule from Mtb. LAM did not activate the p38 MAPK signaling pathway nor did LAM interfere with TLR 2 or 4 signaling. In neutrophil leukocytes we observed a simultaneous, calciumdependent up-regulation of membrane rafts and secretion of azurophilic granules at the site of phagocytosis. Rafts were also found in the phagosome membrane. Wild type Streptococcus pyogenes bacteria, which can survive phagocytosis, modulated raft delivery.

Ämnesord

MEDICIN OCH HÄLSOVETENSKAP  -- Medicinsk bioteknologi -- Medicinsk bioteknologi (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Medical Biotechnology -- Medical Biotechnology (hsv//eng)

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MEDICINE
MEDICIN

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