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109篇 您的检索式:作者名="Brandon N"
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1Th1 cytokines promote T-cell binding to antigen-presenting cells via enhanced hyaluronan production and accumulation at the immune synapse显示文摘Hyaluronan(HA)production by dendritic cells(DCs)is known to promote antigen presentation and to augment T-cell activation and proliferation.We hypothesized that pericellular HA can function as intercellular‘glue’directly mediating T cell–DC binding.Using primary human cells,we observed HA-dependent binding between T cells and DCs,which was abrogated upon pre-treatment of the DCs with 4-methylumbelliferone(4-MU),an agent which blocks HA synthesis.Furthermore,T cells regulate HA production by DCs via T cell-derived cytokines in a T helper(Th)subset-specific manner,as demonstrated by the observation that cell-culture supernatants from Th1 but not Th2 clones promote HA production.Similar effects were seen upon the addition of exogenous Th1 cytokines,IL-2,interferon c(IFN-c)and tumor necrosis factor a(TNF-a).The critical factors which determined the extent of DC–T cell binding in this system were the nature of the pre-treatment the DCs received and their capacity to synthesize HA,as T-cell clones which were pre-treated with monensin,added to block cytokine secretion,bound equivalently irrespective of their Th subset.These data support the existence of a feedforward loop wherein T-cell cytokines influence DC production of HA,which in turn affects the extent of DC–T cell binding.We also document the presence of focal deposits of HA at the immune synapse between T-cells and APC and on dendritic processes thought to be important in antigen presentation.These data point to a pivotal role for HA in DC–T cell interactions at the IS.Paul L Bollyky Stephen P Evanko Rebecca P Wu Susan Potter-Perigo S Alice Long Brian Kinsella Helena Reijonen Kelly Guebtner Brandon Teng Christina K Chan Kathy R Braun John A Gebe Gerald T Nepom Thomas N Wight 2010Cellular & Molecular Immunology2010,7,3:3
2SOFC technology development at Rolls-Royce显示文摘Gardner F J Day M J Brandon N P 2000J Power Sources2000,86,:2
3显示文摘Hart N Brandon N Day M 2002J Power Sources2002,106,:1
4The direct electro- winning of gold from dilute cyanide leach liquors 显示文摘Brandon N P Mahmood M N Page P W 1987Hydrometal- lurgy1987,18,3:1
5Modelling of cells,stacks and systems based around metal-supported planar IT-SOFC cells with CGO electrolytes operating at 500 ~ 600 ℃显示文摘LEAH R T BRANDON N P AGUIAR P 2005Power Sources2005,145,2:1
6Spinning-out a fuel cell com-pany froma UK University-2 years of progress at Ceres Power显示文摘Bance P Brandon N P Girvan B 0,,:1
7IcsA,a polarly localized autotransporter with an atypical signal peptide,uses the Sec apparatus for secretion,although the Sec apparatus is circumferentially distributed显示文摘Brandon LD Goehring N Janakiraman A 2003Mol Microbiol2003,50,:1
8Delivery of the Cre recombinase by a self-deleting lentiviral vector:efficient gene targeting in vivo显示文摘Pfeifer A Brandon E P Kootstra N 2001Proc Natl Acad Sci USA2001,98,11:1
9Modeling of ceils, stacks and systems based around metal-supported planar IT-SOFC cells with CGO electrolytes operating at 500-600显示文摘Leah R T Brandon N P Aguiar P 2005Journal of Power Sources2005,145,2:1
10How erosion builds mountains显示文摘PINTER N BRANDON M T 1997Scientific American1997,276,:1
11Anode-supported intermediate temperature direct internal reforming solid oxide fuel cell I:model-based steady state performance显示文摘Aguiar P Adjiman C S Brandon N P 2004Journal of Power Sources2004,138,12:1
12Influence of Potential on the Friction and Wear of Mild Steel in a Model Aqueous Lubricant显示文摘Brandon N P Bonanos N Fogarty P O 1993J Appl Eleetrochem1993,23,:1
13The difference between selection and drift: a reply to Millsiein显示文摘Brandon R N 2005Biology and Philosophy2005,20,:1
14Oceanographic variability and changes in Antarctic krill(Euphausia superba)abundance at South Georgia显示文摘Trathan P N Brierley A S Brandon M A 2003Fish Oceanogr2003,12,6:1
15Development of metal supported solid oxide fuel cells for operation at 500-600℃显示文摘 Corcoran D Ducker A 2004Jouranl of Materials Engineering and Performance2004,13,3:1
16Recent advances in materials for fuel cells 显示文摘BRANDON N P SKINNER S STEELE B C H 2003Annu Rev Mater Res2003,33,:1
17Anode-supported intermediate temperature direct internal reforming solid oxide fuel cell II: model-based dynamic performance and control显示文摘Aguiar P Adjiman C S Brandon N P 2005Journal of Power Sources2005,147,12:1
18Study of Loss Mechanisms Using Half- Cell Measurements in a Regenerative Hydrogen Vanadium Fuel Cell 显示文摘Dewage H H Yufit V Brandon N P 2016J Electrochem Soc2016,163,1:1
19Application of thermal imaging to validate a heat transfer model for polymer electrolyte fuel cells 显示文摘Matian M Marquis A Brandon N 2012International Journal of Hydrogen Energy2012,35,12:1
20Porcine mannan-binding lectin A binds to actinobacillus snis and Hatmophilus parasuu显示文摘Brandon N L Jutta D H Janet I M 2006Developmental and Comparative Immunology2006,30,:1
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