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20篇 您的检索式:作者名="DUG B"
    题名 作者 年代 出处 被引量
1Single nucleotide polymorphism in the tumor necrosis factor-alpha gene affects inflammatory bowel diseases risk显示文摘AIM: To investigate the role that single nucleotide polymorphisms (SNPs) in the promoter of the tumour necrosis factor-alpha (TNF-α) gene play in the risk of inflammatory bowel diseases (IBDs) in a New Zealand population, in the context of international studies. METHODS: DNA samples from 388 patients with Crohn's disease (CD), 405 ulcerative colitis (UC), 27 indeterminate colitis (IC) and 201 randomly selected controls, from Canterbury, New Zealand were screened for 3 common polymorphisms in the TNF-α receptor: -238 G→A, -308 G→A and -857C→T, using a TaqmanR assay. A meta-analysis was performed on the data obtained on these polymorphisms combined with that from other published studies. RESULTS: Individuals carrying the -308 G/A allele had a significantly (OR = 1.91, χ2 = 17.36, P < 0.0001) increased risk of pancolitis, and a 1.57-fold increased risk (OR = 1.57, χ2 = 4.34, P = 0.037) of requiring a bowel resection in UC. Carrying the -857 C/T variant decreased the risk of ileocolonic CD (OR = 0.56, χ2 =4.32, P = 0.037), and the need for a bowel resection (OR = 0.59, χ2 = 4.85, P = 0.028). The risk of UC was reduced in individuals who were smokers at diagnosis, (OR = 0.48, χ2 = 4.86, P = 0.028). CONCLUSION: TNF-α is a key cytokine known to play a role in inflammatory response, and the locus for the gene is found in the IBD3 region on chromosome 6p21, known to be associated with an increased risk for IBD. The -308 G/A SNP in the TNF-α promoter is functional, and may account in part for the increased UC risk associated with the IBD3 genomic region. The -857 C/T SNP may decrease IBD risk in certain groups. Pharmaco- or nutrigenomic approaches may be desir- able for individuals with such affected genotypes.Lynnette R Ferguson Claudia Huebner Ivonne Petermann Richard B Gearry Murray L Barclay Pieter Demmers Alan McCulloch Dug Yeo Han 2008World Journal of Gastroenterology2008,14,29:7
2Influenee of nanoelay on phenol- formaldehyde and phenol- urea- formaldehyde resins for wood adhesives显示文摘LEI H DUG B PIZZI A 2010Journal of Adhesion Science & Technology2010,24,810:1
3Montmorillonite reinforced phenol formaldehyde resin: Preparation, characterization, and application in wood bonding显示文摘FANG Q cuI H W DUG B 2014International Journal of Adhesion and Adhesives2014,49,:1
4Molecular markers for predicting recurrence, progression and outcomes of bladder cancer (do the poster boys need new posters?)显示文摘 Williamson K 2004Curr Opin Urol2004,14,5:1
5FcEpilsonRll/CD23 is expressed in Pakrinson' s disease and induces,in vitro,production of nitric oxide and tumor necrosis factor-alpha in glia cells显示文摘Hunot S Dug as N Faucheux B 1999J Neurosci1999,19,:1
6An optical microscopy study of dislocations in multicrystalline silicon grown by directional solidification method 显示文摘CHEN N QIU S Y LIU B F DUG P LIU G H SUN W 2010Mat Sci Semicond Process2010,13,4:1
7Modeling coagulation kinetics incorporating fractal theories:a fractaX rectilinear approach 显示文摘DUG L JAMES S B LAURIE S G 2000Wat Res2000,34,7:1
8A new strategy to enhance glu- tathione production by multiple H202-induced oxidative stress in Candi- da utilis显示文摘LIANG G B LIAO X Y DUG C 2009Bioresource Teclmol2009,100,1:1
9In situ synthesis of ultra-fine, porous, tin oxide-carbon nano composites via a molten salt method for lithium-ion batteries 显示文摘LIU B GUO Z P DUG D 2010J Power Sources2010,195,16:1
10Dissociating intentional learning from relative novelty responses in the medial temporal lobe 显示文摘Strang B'A Hurlemann R Dug gins A 2005Neuroimage2005,25,:1
11Nanostructured sheets of Ti-O nanobehs for gas sensing and antibacterial applications 显示文摘Wang Y M DuG J LiuH LiuD Qin S B Wang N HuCQ Tao X T Jiao J Wang J Y Wang Z L 2008Advanced Functional Materials2008,18,:1
12Short-term Load Forecasting for the Holidays Using Fuzzy Liner Regression Method显示文摘KYUNG B S YOUNG S B DUG H H 2005IEEE Transactions Power Systems2005,20,1:1
13Influence of nanoclay on urea-formaldehyde resins for wood adhesives and its model显示文摘LEI H DUG B PIZZI A 2008Journal of Applied Polymer Science2008,109,4:1
14Influence of nanoclay on phenol-formaldehyde and phenol-urea-formaldehyde resins for wood adhesives显示文摘LEI H DUG B PIZZI A 2010Journal of Adhesion Science and Tech- nology2010,24,810:1
15Performance and reaction mechanism of zero formaldehyde-emission urea- glyoxal (UG) resin显示文摘DENG S D DUG B LI X H 2014Journal of Taiwan Institute of Chemical Engineers2014,45,4:1
16Performance, reaction mechanism and characterization of glyoxal-monomethylol urea (G-MMU) resin显示文摘DENG S D DUG B LI X H 2014Industrial & Engineering Chemistry Research2014,53,13:1
17Synthesis, structure and characterization of glyoxal-urea-formaldehyde cocon'- densed resins显示文摘DENG S D PIZZI A DUG B 2014Journal of Applied Polymer Science2014,131,21:1
18Synthesis-structure- performance relationship of cocondensed phenol-urea- formaldehyde resins by MALDI-ToF and 'C-NMR显示文摘DUG B LEI H PIZZI A 2008Journal of Applied Polymer Science2008,110,2:1
19Influence of nanoclay on urea-formaldehyde resins for wood adhesives and its model显示文摘LEI H DUG B PIZZI A 2008Journal of Applied Polymer Science2008,109,4:1
20Disruption of soy-based adhesive treated by Ca(OH)2 and NaOH显示文摘WU Z G LEI H DUG B 2013Journal of Adhesion Science and Technology2013,27,20:1
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