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| 1 | Effect of water vapor on the pore structure and sulfation of CaO 显示文摘 | Wang Chunbo Zhang Yue Jia Lufei | 2014 | Fuel2014,130,: | 1 |
| 2 | Zeeman-birefringence He-Ne dual-frequency lasers based on hole-drilling birefringence in a cavity mirror 显示文摘 | ZHOU Lufei ZHANG Shulian | 2008 | Laser Physics2008,18,12: | 1 |
| 3 | A highly sensitive bio-barcode immunoassay for multi-residue detection of organophosphate pesticides based on fluorescence antiquenching显示文摘Balancing the risks and benefits of organophosphate pesticides(OPs)on human and environmental health relies partly on their accurate measurement.A highly sensitive fluorescence anti-quenching multi-residue bio-barcode immunoassay was developed to detect OPs(triazophos,parathion,and chlorpyrifos)in apples,turnips,cabbages,and rice.Gold nanoparticles were functionalized with monoclonal antibodies against the tested OPs.DNA oligonucleotides were complementarily hybridized with an RNA fluorescent label for signal amplification.The detection signals were generated by DNA-RNA hybridization and ribonuclease H dissociation of the fluorophore.The resulting fluorescence signal enables multiplexed quantification of triazophos,parathion,and chlorpyrifos residues over the concentration range of 0.01-25,0.01-50,and 0.1-50 ng/mL with limits of detection of 0.014,0.011,and 0.126 ng/mL,respectively.The mean recovery ranged between 80.3% and 110.8% with relative standard deviations of 7.3%-17.6%,which correlate well with results obtained by liquid chromatography-tandem mass spectrometry(LC-MS/MS).The proposed bio-barcode immunoassay is stable,reproducible and reliable,and is able to detect low residual levels of multi-residue OPs in agricultural products. | Lingyuan Xu Xiuyuan Zhang A.M.Abd El-Aty Yuanshang Wang Zhen Cao Huiyan Jia J.-Pablo Salvador Ahmet Hacimuftuoglu Xueyan Cui Yudan Zhang Kun Wang Yongxin She Fen Jin Lufei Zheng Baima Pujia Jing Wang Maojun Jin Bruce D.Hammock | 2022 | Journal of Pharmaceutical Analysis2022,12,4: | 1 |
| 4 | GRIM-19, a death-regulatory gene product, suppresses STAT3 activity via functional interaction 显示文摘 | Lufei C Ma J Huang G Zhang T Novotny-Diermayr V Ong CT | 2003 | EMBO J2003,22,6: | 1 |
| 5 | Effect of water vapor on the pore structure and sulphation of CaO 显示文摘 | Wang Chunbo Zhang Yue Jia Lufei | 2014 | Fuel2014,130,: | 1 |
| 6 | Identification of S-genotypes and a novel S-RNase in 84 native Chinese pear accessions显示文摘The Chinese pear(Pyrus spp.)exhibits typical gametophytic self-incompatibility(GSI),which inhibits self-crossing and promotes outcrossing,similar to other fruit species in the Rosaceae family.Thus,S-compatible cultivars are required in pear orchards to ensure successful pollination and stable yields.In this study,84 native Chinese pear accessions were genotyped by allele-specific PCR using one pair allele consensus primers and 29 pairs of S-allele-specific primers that were designed in this study.After cloning and sequencing the PCR products,the S-genotypes of all 84 pear accessions,including wild and cultivated accessions,were determined.The reported 34 S-alleles and a novel S-allele were isolated from these pear accessions.These S-alleles were expressed specifically in the style.Sequence analysis identified that six pear cultivars originated in China shared the same S-RNases with P.communis(Pc).These findings supported the hypothesis that oriental and occidental Pyrus spp.may share the same pool of alleles at the S-locus.A novel S-RNase was isolated in ‘Putiandouli’,‘Daguoshanli’,‘Yunhongli1,and‘Dianli’and deposited as S67-RNase under accession number MT773568.Furthermore,the deduced amino acid sequences exhibited high similarity(99.56%)to S32-RNase in Malus.The high similarity between S-RNase in Pyrus and Malus indicated that the existence of S-RNase could have predated speciation between Pyrus and Malus.Furthermore,S-allele information was rearranged in Asian and European pears to provide information for selecting the best pollinator for widely cultivated pear cultivars in China.This information is useful for pear production,cross-breeding,and understanding the mechanism of the self-incompatibility reaction. | Min He Lufei Li Ying Xu Jianxin Mu Zhihua Xie Chao Gu Shaoling Zhang | 2022 | Horticultural Plant Journal2022,8,6: | 1 |
| 7 | Effect of water vapor on the pore structure and sulfation of CaO显示文摘 | WANG Chunbo ZHANG Yue JIA Lufei | 2014 | Fuel2014,130,: | 1 |
| 8 | 5′-tiRNA-Gln inhibits hepatocellular carcinoma progression by repressing translation through the interaction with eukaryotic initiation factor 4A-I显示文摘tRNA-derived small RNAs(tsRNAs)are novel non-coding RNAs that are involved in the occurrence and progression of diverse diseases.However,their exact presence and function in hepatocellular carcinoma(HCC)remain unclear.Here,differentially expressed tsRNAs in HCC were profiled.A novel tsRNA,tRNAGln-TTG derived 5′-tiRNA-Gln,is significantly downregulated,and its expression level is correlated with progression in patients.In HCC cells,5′-tiRNA-Gln overexpression impaired the proliferation,migration,and invasion in vitro and in vivo,while 5′-tiRNA-Gln knockdown yielded opposite results.5′-tiRNA-Gln exerted its function by binding eukaryotic initiation factor 4A-I(EIF4A1),which unwinds complex RNA secondary structures during translation initiation,causing the partial inhibition of translation.The suppressed downregulated proteins include ARAF,MEK1/2 and STAT3,causing the impaired signaling pathway related to HCC progression.Furthermore,based on the construction of a mutant 5′-tiRNA-Gln,the sequence of forming intramolecular G-quadruplex structure is crucial for 5′-tiRNA-Gln to strongly bind EIF4A1 and repress translation.Clinically,5′-tiRNA-Gln expression level is negatively correlated with ARAF,MEK1/2,and STAT3 in HCC tissues.Collectively,these findings reveal that 5′-tiRNA-Gln interacts with EIF4A1 to reduce related mRNA binding through the intramolecular Gquadruplex structure,and this process partially inhibits translation and HCC progression. | Chengdong Wu Dekai Liu Lufei Zhang Jingjie Wang Yuan Ding Zhongquan Sun Weilin Wang | 2023 | Frontiers of Medicine2023,17,3: | 0 |