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9篇 您的检索式:作者名="A.Wang"
    题名 作者 年代 出处 被引量
1母细胞性浆细胞样树突细胞肿瘤研究进展显示文摘母细胞性浆细胞样树突细胞肿瘤(blastic plasmacytoiddendritic cell neoplasm,BPDCN)是2008年淋巴造血系统肿瘤WHO分类中的一种新的独立的疾病类型。它于1994年被Adachi等首先报道,病变多发生在皮肤,肿瘤细胞同时表达CIM和CD56。随后该肿瘤先后出现多种命名。近几年来,对该肿瘤的研究和认识有了较大进展,本文即对其进行介绍。樊祥山 Sa A.Wang 2013中华病理学杂志2013,42,2:6
2Channel activity of mirror-image M2 proton channel of influenza A virus is blocked by achiral or chiral inhibitors显示文摘Dear Editor,It is known that most of lives on the earth compose of homochiral molecules of L-amino acids and D-ribose nucleic acids.However,little is known why and how the life's chirality in such a way.Studies on an artificial mirror-image life could strengthen our understanding of the question about the origin of life on the Earth and even elsewhere in the universe.Especially studies on mirror-image life would also have a plenty of vast application prospects in materials,energy and pharmaceutical sciences(Bohannon,2010).Qing-Yan Guo Long-Hua Zhang Chao Zuo Dong-Liang Huang Zhipeng A.Wang Ji-Shen Zheng Chang-Lin Tian 2019Protein & Cell2019,10,3:1
3Biochemical properties of K_(11,48)-branched ubiquitin chains显示文摘As one of the most widely existing post-translational modification models, ubiquitination regulates diverse cellular activities. In eukaryotes, K_(11,48)-branched ubiquitin chains play key roles in cell cycle and protein quality control. However, the structural and biochemical properties of K_(11,48)-branched ubiquitin chains have not been well examined. Here we employed the synthetic linkage-and length-defined K_(11,48)-branched ubiquitin chains to examine their binding and hydrolysis properties in vitro. Quantitatively affinity determination of ubiquitin chains to the proteasome ubiquitin receptor S5 a indicated that the S5 a exhibited preference binding to K_(11,48)-branched chains over K_(11)-linked chains, but not K_(48)-conjugated chains. In addition, deubiquitination experiments were carried out and the results showed that K_(11,48)-branched chains were preferably hydrolyzed by proteasome-associated deubiquitinase Rpnll than homotypic K_(11) or K_(48)-linked chains.Lu-Jun Liang Yanyan Si Shan Tang Dongliang Huang Zhipeng A.Wang Changlin Tian Ji-Shen Zheng 2018Chinese Chemical Letters2018,29,7:1
4Reproducibility of regional placental vascularity/perfusion measurement using 3D power Doppler显示文摘P. K.Lai Y. A.Wang A. W.Welsh 2010Ultrasound Obstet Gynecol2010,,2:1
5Prognostic significance of immunophenotypic and karyotypic features of Philadelphia positive B‐lymphoblastic leukemia in the era of tyrosine kinase inhibitors显示文摘JesseJaso Deborah A.Thomas KristaCunningham Jeffrey L.Jorgensen Hagop M.Kantarjian L. JeffreyMedeiros Sa A.Wang 2011Cancer2011,,:1
6“Design Considerations for Ultra-Low Energy Wireless Microsensor Nodes显示文摘B. H. Calhoun D. C. Daly N. Verma D.F.Finchelstein D.D.Wentzloff A.Wang S.H.Cho A.P.Chandrakasan 0,,:1
7A vector space model for automatic indexing显示文摘G.SALTON A.WANG C.S.YANG 0,,:1
8Experimental Study for Pressure Drop of Viscoelastic Fluids through Periodically Sudden Converging-Diverging Tube显示文摘ExperimentalStudyforPressureDropofViscoelasticFluidsthroughPeriodicallySuddenConverging-DivergingTubeExperimentalStudyforPres...Q. Xiao A.Wang W.Q.Tao(School of Chemical Engineering,School of Energy and Power Engineering,Xi’an Jiaotong University,Xi’an,Shaanxi 710049,China) 1996Journal of Thermal Science1996,5,1:0
9Improving ionic conductivity of polymer-based solid electrolytes for lithium metal batteries显示文摘Because of its superior safety and excellent processability,solid polymer electrolytes(SPEs)have attracted widespread attention.In lithium based batteries,SPEs have great prospects in replacing leaky and flammable liquid electrolytes.However,the low ionic conductivity of SPEs cannot meet the requirements of high energy density systems,which is also an important obstacle to its practical application.In this respect,escalating charge carriers(i.e.Li^(+))and Li^(+)transport paths are two major aspects of improving the ionic conductivity of SPEs.This article reviews recent advances from the two perspectives,and the underlying mechanism of these proposed strategies is discussed,including increasing the Li^(+)number and optimizing the Li^(+)transport paths through increasing the types and shortening the distance of Li^(+)transport path.It is hoped that this article can enlighten profound thinking and open up new ways to improve the ionic conductivity of SPEs.Q.Yang A.Wang J.Luo W.Tang 2022Chinese Journal of Chemical Engineering2022,35,3:0
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