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| 1 | Genetic barriers in transplantation medicine显示文摘The successful of transplantation is determined by the shared human leukocyte antigens(HLAs) and ABO blood group antigens between donor and recipient. In recent years, killer cell receptor [i.e., killer cell immunoglobulinlike receptor(KIR)] and major histocompatibility complex(MHC) class I chain-related gene molecule(i.e., MICA) were also reported as important determinants of transplant compatibility. At present, several different genotyping techniques(e.g., sequence specific primer and sequence based typing) can be used to characterize blood group, HLA, MICA and KIR and loci. These molecular techniques have several advantages because they do not depend on the availability of anti-sera, cellular expression and have greater specificity and accuracy compared with the antibody-antigen based typing. Nonetheless, these molecular techniques have limited capability to capture increasing number of markers which have been demonstrated to determine donor and recipient compatibility. It is now possible to genotype multiple markers and to the extent of a complete sequencing of the human genome using next generation sequencer(NGS). This high throughput genotyping platform has been tested for HLA, and it is expected that NGS will be used to simultaneously genotype a large number of clinically relevant transplantation genes in near future. This is not far from reality due to the bioinformatics support given by the immunogenetics community and the rigorous improvement in NGS methodology. In addition, new developments in immune tolerance based therapy, donor recruitment strategies and bioengineering are expected to provide significant advances in the field of transplantation medicine. | Hisham A Edinur Siti M Manaf Nor F Che Mat | 2016 | World Journal of Transplantation2016,6,3: | 4 |
| 2 | 全颗粒饲料对奶牛生产性能的影响显示文摘饲料中的中性洗涤纤维(NDF)含量和饲料颗粒直径是影响瘤胃功能的重要因素。试验评估了以颗粒饲料为主的奶牛瘤胃健康情况、NDF消化率和生产性能。选取8头荷斯坦母牛(336±30 d,体重346±35 kg),随机分配到交叉重复试验组中,奶牛安置于牛栏,自由采食。试验期为3周,前两周是适应期,最后一周为数据收集期。各组饲粮原料相同,但物理形式不同,分为全混合日粮(TMR)和颗粒料(直径=8 mm)。两组间物理有效NDF(pe NDF)不同,TMR组为39.8%,颗粒料组为11.8%。在试验过程中,干物质采食量(DMI)、饮水量、瘤胃反刍时间、瘤胃温度和pH情况均记录。3周后收集粪样,确定潜在的可消化NDF总消化率(pdNDF)。每阶段结束后计算平均日增重和饲料转化率。颗粒料组的DMI、DMI/体重和饮水量更高。而两组间平均日增重和饲料转化率无显著差异。颗粒料组的瘤胃反刍时间为241 min·d-1低于TMR组的507 min·d-1。饲料的不同物理外形对瘤胃温度、瘤胃pH无显著影响。TMR组的pdNDF总消化率为90.25%高于颗粒料组的86.82%。试验结果表明,动物易接受完整的颗粒饲料,DMI较高,且反刍时间减少,但瘤胃pH无显著变化。TMR组的pdNDF消化率显著增加。尽管两组奶牛在DMI和纤维消化方面表现不同,但总体表现相似,两组饲料的保存时间与其物理形式有关。在短期内,提供能满足NDF需求的完全颗粒饲料可改善瘤胃健康状况和动物生产性能,而较长时间的数据则需要进一步试验。 | Wang J Yang M Cao M Lin Y Che L Q Duraipandiyan V Al-Dhabi N A Fang Z F Xu S Y Feng B Liu G Wu D Bonfante E Palmonari A Mammi L Canestrari G Fustini M Formigoni A | 2016 | 饲料博览2016,0,12: | 2 |
| 3 | Excited - state properties of dioxorhenium(V) generation and reactivity of dioxorhenium(Ⅵ) 显示文摘 | Che C M Chung W C Lai T F | 1989 | Inorg Chem1989,28,: | 1 |
| 4 | 显示文摘 | Lambert J F Che M | 1997 | J Am Chem Soc1997,19,10: | 1 |
| 5 | Completely (001)-textured growth and electrical properties of Bi4Ti3O12/LaNiO3 heterostructures prepared by pulsed laser deposition on LaAlO3 single crystal substrates显示文摘 | ZHANG X J ZHANG S T CHE Y F | 2003 | Microelectronic Engineering2003,66,: | 1 |
| 6 | The use of FTIR spectroscopy and chemometrics for rapid authentication of extra virgin olive oil显示文摘 | Rohman A Che M Y Yusof F | 2014 | J Am Oil Chem Soc2014,,91: | 1 |
| 7 | Analysis of 8-aminonaphthalene-1,3,6-trisulfonate-derivatized oligosaccharides by capillary electrophoresis-electrospray ionization quadrupole ion trap mass spectrometry显示文摘 | Che F Song JF Zeng R | 1999 | J Chromatogr A1999,858,2: | 1 |
| 8 | The number and microlocalization of tumor-associated immune cells are associated with patient' s survival time in non-small cell lung cancer显示文摘 | Dai F Liu L Che G | 2010 | BMC cancer2010,10,1: | 1 |
| 9 | Embedded atom potential calculation of the A1-Pb immiscible alloy system 显示文摘 | Fang F Zeng M Q Che X Z ct al | 2002 | Journal of Alloys and Compounds2002,340,: | 1 |
| 10 | Aldose reductase regulates TGFβ1-indused production of fibronectin and type Ⅳ collagen in cultured rat mesangial cells显示文摘 | JIANG T CHE Q LIN Y F | 2006 | Nephrology2006,11,2: | 1 |
| 11 | Direct image the upconversion nanocrystal core/shell structure at the subnanometer level:Shell thickness dependence in upconverting optical properties显示文摘 | Zhang F Che R C Li X M | | 0,,06: | 1 |
| 12 | Ecological footprint accounting for energy and resource in China 显示文摘 | Che B Chen G Q Yang Z F | 2007 | Energy Policy2007,35,: | 1 |
| 13 | Cloning, functional charac- terization and nutritional regulation of A6 fatty acyl desatu- rase in the herbivorous euryhaline teleost Scatophagus ar- gus显示文摘 | Xie D Z Che F Lin S Y | 2014 | PLoS ONE2014,9,90: | 1 |
| 14 | DNA binding and cyto- toxicity of ruthenium(II) and rhenium(I) complexes of 2 -Amino-4-phenylamino-6- (2-pyridyl) - 1,3,5 -triazine 显示文摘 | Ma D L Che C M Siu F M | 2007 | Inorg Chem2007,46,: | 1 |
| 15 | Homopolar di hydrogen bonding in alkali-metal amidoboranes and its implica- tions for hydrogen storage显示文摘 | Wolstenholme D J Titah J T Che F N | 2011 | Journal of the American Chemi- cal Society2011,133,16: | 1 |
| 16 | A novel polyimide dispersing matrix for highly electrically conductive solution-cast carbon nanotube-based composite 显示文摘 | Yuan W Che J F Chan-Park M B | 2011 | Chemistry of Materials2011,23,8: | 1 |
| 17 | A novel capacitive accelerometerwith an eight-beam-mass structure by self-stop anisotropic etchingof( 1 0 0 ) silicon 显示文摘 | Xiao F Che L F Xiong B | 2008 | Journal of Micromechanics and Microengi-neering2008,18,7: | 1 |
| 18 | New sensitive layer based on pulsed plasma-polymerized ani-line for integrated optical ammonia sensor显示文摘 | Airoudj A Debarnot D Bêche B Poncin-Epaillard F | | 0,,01: | 1 |
| 19 | Graft polymerization nano sized SiO2 surface and its application to the modification of PBT显示文摘 | Che J F Luan B Y Yang X J | 2005 | Materials Letter2005,59,13: | 1 |
| 20 | The natural higher fatty acid soaps in nat- ural rubber latex and their effect on the mechanical stability of the latex显示文摘 | Che S F Ng C S | 1984 | Rubber Chemical Technology1984,57,2: | 1 |