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225篇 您的检索式:作者名="VALENT B"
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1Identification of CD13,CD107a,and CD164 as novel basophil-activation markers and dissection of two response patterns in time kinetics of IgE-de-pendent upregulation显示文摘Using two-colour flow cytometry >200 antibodies submitted to the 8th International Workshop of Human Leukocyte Differentiation Antigens (HLDA8) have been analyzed for their reactivity with resting and activated CD203c+ basophils. Four antibodies either non-reactive or weakly reactive with resting basophils exhibited an increased reactivity with basophils activated by anti-IgE-mediated cross-linking of the high affinity IgE receptor (FcεRI). These include antibod- ies against CD164 (WS-80160, clone N6B6 and WS-80162, clone 67D2), as well as two reagents with previously unknown specificities that were identified as CD13 (WS-80274, clone A8) and CD107a (WS-80280, clone E63-880). The activation patterns followed either the “CD203c-like” or “CD63-like” activation profile. The CD203c profile is characterized by a rapid and significant upregulation (of CD13, CD164, and CD203c), reaching maximum levels after 5- 15 min of stimulation. The phosphoinositide-3-kinase (PI3K)-specific inhibitor wortmannin inhibited the upregulation of these markers whereas 12-O-tetradecanoyl-phorbol-13-acetate (TPA) induced a rapid and FcεRI-independent upregulation within 1-2 min. In the CD63 profile, maximum upregulation (of CD63 and CD107a) was detected only after 20-40 min, and upregulation by TPA reached maximum levels after 60 min. In summary, our data identify CD13, CD107a, and CD164 as novel basophil-activation antigens. Based on time kinetics of upregulation, we hypothesize that molecules of the “CD203c group” and the “CD63 group” are linked to two different mechanisms of basophil activation.Florian HENNERSDORF Stefan FLORIAN Andreas JAKOB Katharina BAUMGRTNER Karoline SONNECK Alfred NORDHEIM Tilo BIEDERMANN Peter VALENT Hans-Jrg BüHRING 2005Cell Research2005,15,5:9
2Roles for rice membrane dynamics and plasmodesmata during biotrophic invasion by the blast fungus 显示文摘Kankaaala P Czymmek K Valent B 2007Plant Cell2007,19,:1
3Microencapsulated chitosan-dextran sulfate nanoparticles for controlled delivery of bioactive molecules and cells in bone regeneration显示文摘Valente J F A Gaspar V M Antunes B P 2013Polymer2013,54,:1
4Amplification of the MLL gene on double minutes,a homogeneously staining region, and ring chromosomes in five patients with acute myeloid leukemia or myelodysplastic syndrome显示文摘STREUBEL B VALENT P JAGER U 2000Genes Chromosomes Cancer2000,27,:1
5Host pathogen interactions in plants, when exposed to 01igosaccharides of fungal origin, de- fend themselves by accumulatingantibiotics显示文摘AlbersheimP Valent B S 1978J Cell Biol1978,78,:1
6Magnaporthe grisea Genes for Pathogenicity and Virulence Identified Through a Series of Backcrosses显示文摘VALENT B FARRALL L CHUMELY F G 1991Genetics1991,127,1:1
7Magnaporthe grisea genes for pathogenicity and virulence identified through a se- ries of baekcrosses 显示文摘VALENT B FARRALL L CHUMLEY F G 1991Genetics1991,127,:1
8lnterleukin-18 induces human cardiac endothelial cell death via a novel signaling pathway invol- ving NF-kappaB-dependent PTEN activation显示文摘Chandrasekar B Valente AJ Freeman GL 2006Bioch Bioph Res Com- mun2006,339,3:1
9EMMPRIN activates multiple transcription faetors in eardiomyocytes, and induces interleukin-18 expression via Rael-dependent PI3K/ Akt/IKK/NF-kappaB andMKK7/JNK/AP-1 signaling 显示文摘Venkatesan B Valente A J Prabhu SD 2010J Mol Cell Cardiol2010,49,4:1
10Recent advances in rice blast effector research显示文摘Valent B Khang CH 2010Current Opinion in Plant Biology2010,13,4:1
11The PWL host specificity gene family in the blast fungus Magnaporthe grisea 显示文摘Kang S Sweigard J A Valent B 1995MPMI1995,8,:1
12Isolation of the mating-type genes of the phytopathogenic fungus Magnaporthe grisea using genomic subtraction显示文摘Kang S Chumley F G Valent B 1994Genetics1994,138,:1
13Host-pathogen interactions in plants, when exposed to oligosaccharides of fungal origin, defend themselves by accumulating antibiotics 显示文摘Albersheim P Valent B S 1978J Cell Biol1978,78,3:1
14Rice blast as a model system for plant pathology显示文摘Valent B 1990Phytopathology1990,80,:1
15The proatherogenic cytokine interleukin-18 induces CXCL16 expression in rat aortic smooth muscle cells via MyD88, interleukin-1 receptor-associated kinase, tumor necrosis factor receptorassociated factor 6, c-Src, phosphatidylinositol 3-ki- nase, Akt, c-Jun N-terminal kinase, and activator protein-1 signaling显示文摘Chandrasekar B Mummidi S Valente AJ 2005J Biol Chem2005,280,26:1
16Molecular genetic analysis of the rice blast fungus,Magnaporthe grisea显示文摘VALENT B CHUMLEY F G 1991Annual Review of Phytopathology1991,29,:1
17CaTiO3-based ceramics: microstructure development and dielectric properties显示文摘SUVOROV D VALENT M JANCAR B 2001Acta Chim Slov2001,48,:1
18Breaking and Entering - host Penetration by the Fungal Rice Blast Pathogen Magnaporthe grisea显示文摘HOWARD R J VALENT B 1996Annu Rev Microbiol1996,50,:1
19EMMPRIN activates multiple transcription factors in cardiomyocytes , and induces interleukin-18 expression via Rac 1-dependent PI3K1 Aktl IKKlNF-kappaB and MKK7/JNKI AP-1 signaling显示文摘VENKA TESAN B VALENTE A J PR ABHU S D 2010J Mol Cell Cardiol2010,49,4:1
20Ultrastruetrual biologic effects of sonography with pulse inversion and microbubble contrast in rabbit liver 显示文摘Caruso G Valention B Salvaggio G 2005J Clin Ultrasound2005,33,3:1
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