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In vivo imaging of lymphocytes in the CNS reveals different behaviour of naïve T cells in health and autoimmunity
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نویسنده
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herz j. ,paterka m. ,niesner r.a. ,brandt a.u. ,siffrin v. ,leuenberger t. ,birkenstock j. ,mossakowski a. ,glumm r. ,zipp f. ,radbruch h.
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منبع
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journal of neuroinflammation - 2011 - دوره : 8 - شماره : 0
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چکیده
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Background: two-photon laser scanning microscopy (tplsm) has become a powerful tool in the visualization of immune cell dynamics and cellular communication within the complex biological networks of the inflamed central nervous system (cns). whereas many previous studies mainly focused on the role of effector or effector memory t cells,the role of naïve t cells as possible key players in immune regulation directly in the cns is still highly debated.methods: we applied ex vivo and intravital tplsm to investigate migratory pathways of naïve t cells in the inflamed and non-inflamed cns. macs-sorted naïve cd4+ t cells were either applied on healthy cns slices or intravenously injected into rag1 -/- mice,which were affected by experimental autoimmune encephalomyelitis (eae). we further checked for the generation of second harmonic generation (shg) signals produced by extracellular matrix (ecm) structures.results: by applying tplsm on living brain slices we could show that the migratory capacity of activated cd4+ t cells is not strongly influenced by antigen specificity and is independent of regulatory or effector t cell phenotype. naïve t cells,however,cannot find sufficient migratory signals in healthy,non-inflamed cns parenchyma since they only showed stationary behaviour in this context. this is in contrast to the high motility of naïve cd4+ t cells in lymphoid organs. we observed a highly motile migration pattern for naïve t cells as compared to effector cd4+ t cells in inflamed brain tissue of living eae-affected mice. interestingly,in the inflamed cns we could detect reticular structures by their shg signal which partially co-localises with naïve cd4+ t cell tracks.conclusions: the activation status rather than antigen specificity or regulatory phenotype is the central requirement for cd4+ t cell migration within healthy cns tissue. however,under inflammatory conditions naïve cd4+ t cells can get access to cns parenchyma and partially migrate along inflammation-induced extracellular shg structures,which are similar to those seen in lymphoid organs. these shg structures apparently provide essential migratory signals for naïve cd4+ t cells within the diseased cns. © 2011 herz et al; licensee biomed central ltd.
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کلیدواژه
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Eae; Migration; Naïve; Second harmonic generation; T-cell
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آدرس
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klinik für neurologie,universitätsklinik essen,hufelandstr. 55,45122 essen,germany,max-delbrueck center for molecular medicine berlin-buch,robert-rössle str 10,13092 berlin, Germany, universiätsmedizin mainz,klinik für neurologie,langenbeckstr 1,55131 mainz,germany,max-delbrueck center for molecular medicine berlin-buch,robert-rössle str 10,13092 berlin, Germany, deutsches rheuma-forschungszentrum (drfz),berlin,charitéplatz 1,10117 berlin,germany,max-delbrueck center for molecular medicine berlin-buch,robert-rössle str 10,13092 berlin, Germany, gfnmediber gmbh,sophie charlottenstr 92-94,14059 berlin,germany,max-delbrueck center for molecular medicine berlin-buch,robert-rössle str 10,13092 berlin, Germany, universiätsmedizin mainz,klinik für neurologie,langenbeckstr 1,55131 mainz,germany,max-delbrueck center for molecular medicine berlin-buch,robert-rössle str 10,13092 berlin, Germany, universiätsmedizin mainz,klinik für neurologie,langenbeckstr 1,55131 mainz,germany,max-delbrueck center for molecular medicine berlin-buch,robert-rössle str 10,13092 berlin, Germany, universiätsmedizin mainz,klinik für neurologie,langenbeckstr 1,55131 mainz, Germany, deutsches rheuma-forschungszentrum (drfz),berlin,charitéplatz 1,10117 berlin, Germany, experimental and clinical research center,a joint cooperation between the charité medical faculty,the max-delbrück center for molecular medicine,berlin,germany,robert-rössle str 10,13092 berlin,germany,max-delbrueck center for molecular medicine berlin-buch,robert-rössle str 10,13092 berlin, Germany, universiätsmedizin mainz,klinik für neurologie,langenbeckstr 1,55131 mainz,germany,max-delbrueck center for molecular medicine berlin-buch,robert-rössle str 10,13092 berlin, Germany, labor für molekulare psychiatrie,charité and berlin-brandenburg school for regenerative therapies (bsrt),charité universitätsmedizin berlin,charitéplatz 1,10117 berlin,germany,max-delbrueck center for molecular medicine berlin-buch,robert-rössle str 10,13092 berlin, Germany
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Authors
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