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The potential of miRNAs as biomarkers for multiple myeloma

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Shujuan Huang, Guang Ma, Rufeng Wang, Ning Wang, Lijun Cui, Lihua Chang & Maoxiang Cui. (2023) MicroRNA-142-5p promotes the proliferation and metastasis of nasopharyngeal carcinoma. Nucleosides, Nucleotides & Nucleic Acids 42:8, pages 657-670.
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Ming Fang, Yanfei Li, Yingbiao Wu, Zhongping Ning, Xuejun Wang & Xinming Li. (2019) miR-185 silencing promotes the progression of atherosclerosis via targeting stromal interaction molecule 1. Cell Cycle 18:6-7, pages 682-695.
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Manuela Gambella, Antonio Palumbo & Alberto Rocci. (2015) MET/HGF pathway in multiple myeloma: from diagnosis to targeted therapy?. Expert Review of Molecular Diagnostics 15:7, pages 881-893.
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Kenneth Lundstrom. (2015) RNA-based drugs and vaccines. Expert Review of Vaccines 14:2, pages 253-263.
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Safoora Pordel, Motahare Khorrami, Fatemeh Saadatpour, Delsuz Rezaee, William C. Cho, Saleheh Jahani, Seyed Mohsen Aghaei-Zarch, Elham Hashemi & Sajad Najafi. (2023) The role of microRNA-185 in the pathogenesis of human diseases: A focus on cancer. Pathology - Research and Practice 249, pages 154729.
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Yi Zhang, Lian Liu, Qiongzi Qiu, Qing Zhou, Jinwang Ding, Yan Lu & Pengyuan Liu. (2021) Alternative polyadenylation: methods, mechanism, function, and role in cancer. Journal of Experimental & Clinical Cancer Research 40:1.
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Vanessa Pinto, Rui Bergantim, Hugo R. Caires, Hugo Seca, José E. Guimarães & M. Helena Vasconcelos. (2020) Multiple Myeloma: Available Therapies and Causes of Drug Resistance. Cancers 12:2, pages 407.
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Yifeng Hu & Jingtie Yan. (2019) Aberrant expression and mechanism of miR‑130b‑3p/phosphatase and tensin homolog in nephroblastoma in children. Experimental and Therapeutic Medicine.
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Cinzia Federico, Antonio Sacco, Angelo Belotti, Rossella Ribolla, Valeria Cancelli, Arianna Giacomini, Roberto Ronca, Marco Chiarini, Luisa Imberti, Mirella Marini, Giuseppe Rossi, Marco Presta, Bruno Paiva & Aldo M. Roccaro. (2019) Circulating microRNAs and Their Role in Multiple Myeloma. Non-Coding RNA 5:2, pages 37.
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Ying‐Ying Xu, Ya‐Qi Song, Zi‐Ming Huang, Hai‐Bing Zhang & Ming Chen. (2019) MicroRNA‐26a inhibits multiple myeloma cell growth by suppressing cyclin‐dependent kinase 6 expression. The Kaohsiung Journal of Medical Sciences 35:5, pages 277-283.
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Jing Yuan, Rui Dong, Fei Liu, Lijun Zhan, Yu Liu, Jun Wei & Ninghua Wang. (2019) The miR‑183/182/96 cluster functions as a potential carcinogenic factor and prognostic factor in kidney renal clear cell carcinoma. Experimental and Therapeutic Medicine.
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Qi Xiao, Tianming Chen, Yao Wu, Wenxiu Wu, Yandi Xu, Zhunan Gong & Shilin Chen. (2018) MicroRNA‑675‑3p promotes esophageal squamous cell cancer cell migration and invasion. Molecular Medicine Reports.
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Seema Sethi, Sajiv Sethi & Martin H. Bluth. (2018) Clinical Implication of MicroRNAs in Molecular Pathology. Clinics in Laboratory Medicine 38:2, pages 237-251.
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Bingying Zhu, Shaoqing Ju, Haidan Chu, Xianjuan Shen, Yan Zhang, Xi Luo & Hui Cong. (2018) The potential function of microRNAs as biomarkers and therapeutic targets in multiple myeloma (Review). Oncology Letters.
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Wen-Jie Zhu, Xu Chen, Ya-Wen Wang, Hai-Ting Liu, Ran-Ran Ma & Peng Gao. (2017) MiR-1268b confers chemosensitivity in breast cancer by targeting ERBB2-mediated PI3K-AKT pathway. Oncotarget 8:52, pages 89631-89642.
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Chunming Gu, Tianfu Li, Zhao Yin, Shengting Chen, Jia Fei, Jianping Shen & Yuan Zhang. (2016) Integrative analysis of signaling pathways and diseases associated with the miR-106b/25 cluster and their function study in berberine-induced multiple myeloma cells. Functional & Integrative Genomics 17:2-3, pages 253-262.
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Lavinia Raimondi, Angela De Luca, Eugenio Morelli, Gianluca Giavaresi, Pierosandro Tagliaferri, Pierfrancesco Tassone & Nicola Amodio. (2016) MicroRNAs: Novel Crossroads between Myeloma Cells and the Bone Marrow Microenvironment. BioMed Research International 2016, pages 1-12.
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