Showing 1 - 20 results of 107 for search 'non-coding RNA interventions', query time: 0.12s Refine Results
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    The role of ferroptosis-related non-coding RNA in liver fibrosis by Guozhu Zhang, Kejia Wu, Kejia Wu, Xiaobo Jiang, Yuan Gao, Dong Ding, Hao Wang, Chongyuan Yu, Xiaozhong Wang, Naixin Jia, Li Zhu

    Published 2024-12-01
    “…It aims to propose novel strategies for the prevention and therapeutic intervention of liver fibrosis.…”
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    Article
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    Chemically modified non-coding RNAs in cancer by Lulu Yang, Boyang Wang, Zhaohui Gong

    Published 2025-01-01
    “…Abstract Background Non-coding RNAs (ncRNAs) are transcribed RNA molecules that do not encode proteins but regulate diverse biological processes. …”
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    Article
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    Non-coding RNA NEAT-1 and interleukin-6 as diagnostic indicators for vitiligo by Mai M. Sharabi, Amr A. Zahra, Azza M. Elamir, Talal A. Abd El Raheem, Nesreen M. Aboraia

    Published 2024-06-01
    “…Nuclear enriched abundant transcript 1 (NEAT-1) is a long non-coding RNA that has a vital role in the diagnostics and treatment of certain autoimmune and inflammatory diseases. …”
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    Research progress on non-coding RNA regulatory networks and targeted therapy in diabetic nephropathy by Xiaxia Wang, Ruge Jing, Tong Yang, Ruiwen Shao, Fan Yang, Yangyang Shi, Xiujuan Yang, Dong An, Yonglin Liang

    Published 2025-07-01
    “…Research indicates that Non-coding RNAs (ncRNAs) participate in cell death and fibrosis through an endogenous competitive RNA (ceRNA) network. …”
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    The role of long non-coding RNAs in cardiovascular diseases: A comprehensive review by Xuena Xie, Meiwen Huang, Shudong Ma, Qiqi Xin, Yuying Wang, Lantian Hu, Han Zhao, Pengqi Li, Mei Liu, Rong Yuan, Yu Miao, Yizhun Zhu, Weihong Cong

    Published 2025-04-01
    “…Despite advances in medical interventions, the molecular mechanisms underlying CVDs are not yet fully understood. …”
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    Exploring the Regulatory Mechanism of CXCL16 Molecule-Related Antigen Presentation Using lncRNA-mRNA Co-Expression Network Analysis by Liu TT, Zheng S, Jia LX, Du J, Piao C

    Published 2024-12-01
    “…The four differentially expressed key lncRNAs in the co-expression network (NONMMUT026034, NONMMUT028184, NONMMUT016537, and NONMMUT043155) can serve as intervention targets for CXCL16 molecular regulation of antigen presentation in mice asthma models.Keywords: Long non-coding RNA, CXCL16, antigen presentation, co-expression network, asthma…”
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    Circular RNAs as disease modifiers of complex neurologic disorders by Veronica Galli, Sara Vinciguerra, Marta Biagioli, Jasmin Morandell

    Published 2025-05-01
    “…Circular RNAs are a large class of non-coding RNA molecules, conserved across species and produced by back-splicing. …”
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    DNA methylation and non-coding RNAs in metabolic disorders: Epigenetic Roles of Nutrients, Dietary Patterns and Weight Loss Interventions for Precision Nutrition by Carolina F. Nicoletti, Taís S. Assmann, Leticia L. Souza, José Alfredo Martinez

    Published 2024-10-01
    “…This highlights the influence of dietary patterns and weight-loss interventions on the regulation of miRNA expression and DNA methylation levels, suggesting an interaction between these epigenetic factors and the body's response to weight loss.…”
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    MicroRNA-1303 in cancer pathogenesis and therapy: clinical implications for biomarker development and targeted treatment strategies by Lingzi Zheng, Ling Hu, Bita Badehnoosh

    Published 2025-07-01
    “…MiRNAs are short, non-coding RNA molecules approximately 19–25 nucleotides in length that regulate gene expression at the post-transcriptional level. …”
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    Long non-coding RNA AK023617 orchestrates atherosclerosis by regulating the circadian rhythm of immunity-related GTPase family M protein in macrophages by Rongzhe Lu, Hengxuan Cai, Yige Liu, Guanpeng Ma, Jiaxin Wang, Miao Yan, Zhenming Zhang, Bo Yu, Zhaoying Li, Shaohong Fang

    Published 2025-04-01
    “…Acute coronary events show a diurnal rhythm, and atherosclerotic plaque vulnerability, as a histomorphological characteristic of major adverse cardiovascular events, is a key target for intervention. Although oscillating microRNAs reduce plaque stability by facilitating macrophage apoptosis in lesions, whether rhythmic long non-coding RNA (lncRNA) can regulate diurnal oscillations in plaque stability and the potential underlying mechanism remain unclear. …”
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    The Mechanism of HPV-mediated DNA Methylation in the Promoter Region of Long-chain Non-coding RNA MAGI2-AS3 in the Occurrence and Development of Cervical Cancer by Jie Zhang, Qiong Xia, Qinghua Zhang

    Published 2024-06-01
    “…This study delves into the investigation of human papillomavirus (HPV)-mediated DNA methylation modifications within the promoter region of the long non-coding RNA MAGI2-AS3 during cervical cancer development. …”
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    Physical exercise and epigenetic modifications in skeletal muscle, brain, and heart by Xi Zheng, Xueli Liu, Yuqian Guo, Yi Lv, Chensheng Lin, Dan Wang, Shaobing Wang, Yiping Liu, Xuefeng Hu

    Published 2025-03-01
    “…There is a burgeoning body of evidence supports that physical exercise, acting as an external environmental stimulus, exerts a discernible impact on major epigenetic modifications, including histone modifications, DNA methylation, RNA methylation, and non-coding RNA. This effect assumes a pivotal role in the pathogenesis of various human diseases. …”
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    Long non-coding RNA CCAT2 promotes cell proliferation and invasion through regulating Wnt/β-catenin signaling pathway in clear cell renal cell carcinoma by Jian-lin Huang, Yong Liao, Ming-xing Qiu, Jun Li, Yu An

    Published 2017-07-01
    “…Clear cell renal cell carcinoma (ccRCC) is a common urologic malignancy. Long non-coding RNA colon cancer–associated transcript 2 (CCAT2) has been suggested as serving pivotal roles in tumorigenesis. …”
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    Unraveling the genetic and epigenetic landscape governing intramuscular fat deposition in rabbits: Insights and implications by Ifeanyi Solomon Ahamba, Chinyere Mary-Cynthia Ikele, Lionel Kinkpe, Naqash Goswami, Hui Wang, Zhen Li, Zhanjun Ren, Xianggui Dong

    Published 2024-12-01
    “…We explored the potential of DNA methylation patterns, histone modifications, and non-coding RNA-mediation as fingerprints for selecting rabbits with desirable IMF levels. …”
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