Showing 941 - 960 results of 25,042 for search '"CD"', query time: 0.10s Refine Results
  1. 941

    Scavenger Receptor Class B, Type I, a CD36 Related Protein in Macrobrachium nipponense: Characterization, RNA Interference, and Expression Analysis with Different Dietary Lipid Sources by Zhili Ding, Na Luo, Youqin Kong, Jingfen Li, Yixiang Zhang, Fang Cao, Jinyun Ye

    Published 2016-01-01
    “…The scavenger receptor class B, type I (SR-BI), is a member of the CD36 superfamily comprising transmembrane proteins involved in mammalian and fish lipid homeostasis regulation. …”
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    Potential of Co(II) and Cd(II) chelates of N′-(3-fluorobenzoyl)benzo[d]thiazole-2-carbohydrazide: Structural aspects, binding interactions, biological and molecular docking studies by K. Srilaxmi, B. Sireesha

    Published 2025-01-01
    “…Anti-microbial studies carried out by pour plate method showed high activity for Cd(II)-MFBBTCH complex. Cytotoxicity of the compounds was performed for Hela and MCF cell lines by MTT assay. …”
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    Anti-IL-22 Antibody Attenuates Acute Graft-versus-Host Disease via Increasing Foxp3+ T Cell through Modulation of CD11b+ Cell Function by Jianbo Wu, Jian Gu, Shun Zhou, Hao Lu, Yunjie Lu, Ling Lu, Xuehao Wang

    Published 2018-01-01
    “…In the presence of Tregs and donor CD11b+ cells, IL-22Ab protected against aGVHD. In vitro Treg induction was more efficient when CD4+CD25− T cells differentiated in the presence of CD11b+ cells obtained from IL-22Ab-treated GVHD mice, compared with cocultured untreated control cells. …”
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    Discovery and development of ANV419, an IL-2/anti-IL-2 antibody fusion protein with potent CD8+ T and natural killer cell-stimulating capacity for cancer immunotherapy by Patrizia Murer, Barbara Brannetti, Jean-Michel Rondeau, Laetitia Petersen, Nicole Egli, Simone Popp, Catherine Regnier, Kirsten Richter, Andreas Katopodis, Christoph Huber

    Published 2024-12-01
    “…ANV419 preferentially expands CD8+ T cells and natural killer (NK) cells over Tregs and can be safely administered at doses that elicit strong pharmacodynamic effects and efficacy in mouse tumor models. …”
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  13. 953

    The Relevance of CD117-Immunocytochemistry Staining Patterns to Mutational Exon-11 in c-kit Detected by PCR from Fine-Needle Aspirated Canine Mast Cell Tumor Cells by A. Sailasuta, D. Ketpun, P. Piyaviriyakul, S. Theerawatanasirikul, P. Theewasutrakul, A. Rungsipipat

    Published 2014-01-01
    “…We have demonstrated the usage of fine-needle aspirated MCT cells (FNA-MCT cells) from these specimens as a primary cell source to study the distribution of CD117-immunocytochemistry (CD117-ICC) staining patterns and the frequency of internal tandem duplication- (ITD-) mutant exon-11 of c-kit. …”
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  14. 954

    供体特异性输血通过CD47-SIRPα信号负调控树突状细胞诱导移植耐受

    Published 2010-01-01
    “…【目的】 探讨CD47-SIRPα信号在供体特异性输血诱导移植耐受中的作用及其机制65377;【方法】 将受体bm1小鼠按不同的移植前预处理分为3组:CD47 WT-DST组65380;CD47 KO-DST组65380;Non-DST组65377;7 d后移植CD47 WT/B6皮片,比较3组皮肤移植物的存活时间;DST后565380;24 h行流式细胞术检测各组受体抗原呈递细胞的活化情况;DST后565380;24 h行流式细胞术和组织免疫学检测供体细胞在受体组织内的分布和存活情况65377;【结果】 CD47 WT-DST组的皮肤移植物存活时间[MST =(46.77 ± 20.01)d]明显比Non-DST组延长(P < 0.0001),而CD47 KO-DST组明显加快皮肤移植物排斥反应,其皮肤移植物存活时间[MST =(13.73 ± 4.56)d]甚至比Non-DST组还短(P < 0.05)65377;行CD47 KO-DST的受体小鼠体内, DC上CD86的表达水平明显高于CD47 WT-DST组和Non-DST组(在5 h,P < 0.01;在24 h,P < 0.001)65377;同样,I-Ab (MHC-Ⅱ)表达水平在CD47 KO-DST的受体小鼠体内也明显高于CD47 WT-DST和Non-DST 组(在5 h,P < 0.01;在24 h,P < 0.05)65377;CD47 KO的供体脾细胞在受体内很快被受体清除65377;【结论】 DST诱导耐受作用中供体细胞表达CD47是必需的,供受体间的CD47-SIRPα引发负性调节信号,负反馈调控DC的成熟和活化,抑制其抗原呈递作用,进而诱导供体特异性耐受65377;…”
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    Synthesis, Characterization, and Biological Activity of Mn(II), Fe(II), Co(II), Ni(II), Cu(II), Zn(II), and Cd(II) Complexes of N-Thiophenoyl-N′-Phenylthiocarbohydrazide by M. Yadav, Debasis Behera

    Published 2013-01-01
    “…The complexes were found to have compositions [Mn(H TPTH)2], [Co(TPTH) (H2O)2], [Ni(TPTH) (H2O)2], [Cu(TPTH)], [Zn(H TPTH)], [Cd(H TPTH)2], and [Fe(H TPTH)2(EtOH)]. The magnetic and electronic spectral studies suggest square planar geometry for [Cu(TPTH)], tetrahedral geometry for [Zn(TPTH)] and [Cd(H TPTH)2], and octahedral geometry for rest of the complexes. …”
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