Showing 261 - 280 results of 2,553 for search '"mRNA"', query time: 0.09s Refine Results
  1. 261

    Transient Pneumonitis as a Possible Adverse Reaction to the BNT162b2 COVID-19 mRNA Vaccine in a Patient with Rheumatoid Arthritis: A Case Report and Review of the Literature by Yusuke Ohkubo, Shin-ichiro Ohmura, Ryuhei Ishihara, Toshiaki Miyamoto

    Published 2022-01-01
    “…Herein, we describe a case of pneumonitis following COVID-19 mRNA vaccination in a patient with rheumatoid arthritis, which resolved spontaneously.…”
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    Relationship between Sustained Reductions in Plasma Lipid and Lipoprotein Concentrations with Apheresis and Plasma Levels and mRNA Expression of PTX3 and Plasma Levels of hsCRP in Patients with HyperLp(a)lipoproteinemia by Claudia Stefanutti, Fabio Mazza, Michael Steiner, Gerald F. Watts, Joel De Nève, Daniela Pasqualetti, Juergen Paal

    Published 2016-01-01
    “…PTX3 soluble protein levels in plasma were unchanged by 2 sessions of LA; however, a downregulation of mRNA expression for PTX3 was observed, starting with the first session of LA (p<0.001). …”
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  7. 267

    Comparative miRNAome combined with transcriptome and degradome analysis reveals a novel miRNA-mRNA regulatory network associated with starch metabolism affecting pre-harvest sprouting resistance in wheat by Longqing Sun, Ting Zhao, Dandan Qin, Jing Dong, Daorong Zhang, Xifeng Ren

    Published 2025-01-01
    “…Combined with degradome data, the miRNA-mRNA networks analysis was performed after genome-wide screening of target genes, and then KEGG enrichment highlighted that the starch and sucrose metabolism pathway related to PHS was specifically enriched in an especial target-gene dataset derived from R12R18-HE miRNAs. …”
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    伊贝沙坦对糖尿病大鼠肾氧化应激65380;NF-κB活性和 ICAM-1 mRNA表达的影响

    Published 2008-01-01
    “…【目的】 探讨伊贝沙坦对糖尿病大鼠肾脏氧化应激65380;NF-κB活性和ICAM-1 mRNA表达水平的影响65377; 【方法】 将33 只SD大鼠随机分为3 组:正常对照组(C)65380;糖尿病组(D)和伊贝沙坦组(I)65377;糖尿病大鼠模型用链脲佐菌素诱导65377;大鼠饲养12周后,观察24h尿微量白蛋白排泄率(UAER),取出肾脏作肾组织病理检查,测定肾组织中丙二醛(MDA)含量与超氧化物歧化酶(SOD)65380;过氧化氢酶(CAT)65380;谷胱苷肽过氧化物酶(GSH-PX)活性变化65377;逆转录-聚合酶链反应(RT-PCR)法检测肾组织中细胞间粘附因子-1(ICAM-1)mRNA的表达65377;凝胶电泳迁移率变动分析(EMSA)检测核因子(NF)-κB的活性65377; 【结果】 UAER在D组(378 ± 100)及I组(149 ± 58)均显著高于C组(30 ± 13),P < 0.01;I组UAER较D组显著降低,P < 0.0165377;与C组大鼠比较,D组大鼠肾组织MDA含量显著增高(5.8 ± 0.9 vs 3.5 ± 0.2), P < 0.01;SOD65380;CAT及GSH-PX活性均显著降低(22.3 ± 3.1,11.7 ± 0.7,11.3 ± 1.7 vs 39.2 ± 2.0,18.2 ± 0.5,23.2±3.9),P < 0.01;Ⅰ组肾组织MDA含量(4.3 ±0.6)明显低于D组,P < 0.01;SOD65380;CAT及GSH-PX活性(30.7 ± 1.6,13.3 ± 0.4,15.8 ± 2.8)明显高于D组,均P < 0.0165377;NF-κB活性在D组大鼠肾组织(44.3 ± 0.4)明显高于C组(14.6 ± 0.8),P < 0.01;Ⅰ组(37.7±0.3)明显低于D组,P < 0.0165377;D组肾组织ICAM-1 mRNA表达(2.14 ± 0.2)明显高于C组(0.36±0.1),P < 0.01;Ⅰ组肾组织ICAM-1 mRNA(1.37±0.1)表达明显低于D组,P < 0.0165377;【结论】 伊贝沙坦可能部分通过减轻氧化应激反应以及下调糖尿病大鼠肾组织中NF-κB的活性,降低ICAM-1 mRNA的表达水平实现对糖尿病大鼠肾脏的保护作用65377;…”
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    高脂血症肾移植患者外周血MCP-1及其受体CCR2 mRNA表达及辛伐他汀治疗的影响 by 王玉新

    Published 2005-01-01
    “…【目的】探讨肾移植术后高脂血症患者外周血单核细胞趋化蛋白-1(MCP-1)及其受体CCR2 mRNA的表达及辛伐他汀治疗影响。【方法】根据患者肾移植术后6个月的血脂水平,从167例肾移植受者中选择60例作为研究对象,其中30例为血脂正常组(A组),30例为血脂增高组(B组),健康体检者30例作为对照组,逆转录聚合酶链反应检测各组外周血MCP-1及CCR2 mRNA表达水平。…”
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  11. 271

    ApoM maintains cellular homeostasis between mitophagy and apoptosis by affecting the stability of Nnt mRNA through the Zic3-ApoM-Elavl2-Nnt axis during neural tube closure by Qing Liu, Dan Liu, Yuejiao Wang, Xiaowei Wei, Wei Ma, Hui Gu, Shanshan Jia, Yiwen He, Wenting Luo, Songying Cao, Zhonghua Yang, Anhua Wu, Zhengwei Yuan

    Published 2025-01-01
    “…Specifically, lack of ApoM resulted in reduced cytosolic localization of Elavl2 and caused Nnt mRNA degradation, which further led to impaired cell homeostasis by suppressing PINK1-PRKN-mediated mitophagy and promoting apoptosis and subsequent NTDs formation. …”
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    <i>Lin28b-let-7</i> Modulates mRNA Expression of <i>GnRH1</i> Through Multiple Signaling Pathways Related to Glycolysis in GT1-7 Cells by Yujing Xie, Xin Li, Meng Wang, Mingxing Chu, Guiling Cao

    Published 2025-01-01
    “…Bioinformatics analysis and mRNA expression of the target genes of DEMIs revealed that the MAPK and PI3K-AKT-mTOR signaling pathways were key pathways that involved the regulatory effect of <i>Lin28b</i> on GnRH. …”
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