For: | Wang CZ, Yan GX, Dong DS, Xin H, Liu ZY. LncRNA-ATB promotes autophagy by activating Yes-associated protein and inducing autophagy-related protein 5 expression in hepatocellular carcinoma. World J Gastroenterol 2019; 25(35): 5310-5322 [PMID: 31558875 DOI: 10.3748/wjg.v25.i35.5310] |
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URL: | https://www.wjgnet.com/1007-9327/full/v25/i35/5310.htm |
Number | Citing Articles |
1 |
Aviral Kumar, Kenneth Chun-Hong Yap, Bandari BharathwajChetty, Juncheng Lyu, Mangala Hegde, Mohamed Abbas, Mohammed S. Alqahtani, Soham Khadlikar, Ali Zarrabi, Arezoo Khosravi, Alan Prem Kumar, Ajaikumar B. Kunnumakkara. Regulating the regulators: long non-coding RNAs as autophagic controllers in chronic disease management. Journal of Biomedical Science 2024; 31(1) doi: 10.1186/s12929-024-01092-9
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2 |
Soudeh Ghafouri-Fard, Mahdi Gholipour, Bashdar Mahmud Hussen, Mohammad Taheri. The Impact of Long Non-Coding RNAs in the Pathogenesis of Hepatocellular Carcinoma. Frontiers in Oncology 2021; 11 doi: 10.3389/fonc.2021.649107
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3 |
Mengzhen Han, Zhibin Liao, Furong Liu, Xiaoping Chen, Bixiang Zhang. Modulation of the TGF-β signaling pathway by long noncoding RNA in hepatocellular carcinoma. Biomarker Research 2020; 8(1) doi: 10.1186/s40364-020-00252-x
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4 |
Xue‐Juan Chen, Na An. Long noncoding RNA ATB promotes ovarian cancer tumorigenesis by mediating histone H3 lysine 27 trimethylation through binding to EZH2. Journal of Cellular and Molecular Medicine 2021; 25(1): 37 doi: 10.1111/jcmm.15329
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5 |
Haitao Wei, Li Li, Haifeng Zhang, Feng Xu, Longqi Chen, Guowei Che, Yun Wang. Circ-FOXM1 knockdown suppresses non-small cell lung cancer development by regulating the miR-149-5p/ATG5 axis. Cell Cycle 2021; 20(2): 166 doi: 10.1080/15384101.2020.1867780
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6 |
艳云 刘. Expression of Noncoding RNA in Liver Related Disease. Advances in Clinical Medicine 2020; 10(11): 2787 doi: 10.12677/ACM.2020.1011424
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7 |
Chao Guo, Shuhuang Zhou, Weimin Yi, Pingzhou Yang, Ou Li, Jianming Liu, Chuang Peng. Long non-coding RNA muskelin 1 antisense RNA (MKLN1-AS) is a potential diagnostic and prognostic biomarker and therapeutic target for hepatocellular carcinoma. Experimental and Molecular Pathology 2021; 120: 104638 doi: 10.1016/j.yexmp.2021.104638
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8 |
Zhu-Jian Deng, Hao-Tian Liu, Bao-Hong Yuan, Li-Xin Pan, Yu-Xian Teng, Jia-Yong Su, Cheng-Piao Luo, Ping-Ping Guo, Jian-Hong Zhong. lncSNHG16 promotes hepatocellular carcinoma development by inhibiting autophagy. Clinical and Translational Oncology 2024; doi: 10.1007/s12094-024-03730-y
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9 |
Yunyi Zhao, Ze Wang, Wenhui Zhang, Linbo Zhang. Non-coding RNAs regulate autophagy process via influencing the expression of associated protein. Progress in Biophysics and Molecular Biology 2020; 151: 32 doi: 10.1016/j.pbiomolbio.2019.11.009
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10 |
Caihua Jiang, Feng Li, Meng Yang, Jianping Duan, Jianming Lai, Shulun Sun, Shaohua Fan. LINC00238 inhibits hepatic carcinoma progression by activating TMEM106C‑mediated apoptosis pathway. Molecular Medicine Reports 2021; 24(5) doi: 10.3892/mmr.2021.12397
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11 |
Mengzhen Han, Furong Liu, Xinxin Li, Hongwei Zhang, Yonglong Pan, Yachong Liu, He Zhu, Huifang Liang, Xiaoping Chen, Zhibin Liao, Zhanguo Zhang, Bixiang Zhang. LINC01608 activated by YY1 facilitate hepatocellular carcinoma progression by modulating the EGFR/ERK axis. Liver International 2023; 43(2): 471 doi: 10.1111/liv.15479
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12 |
Soudeh Ghafouri-Fard, Hamed Shoorei, Mahdi Mohaqiq, Jamal Majidpoor, Mohammad Amin Moosavi, Mohammad Taheri. Exploring the role of non-coding RNAs in autophagy. Autophagy 2022; 18(5): 949 doi: 10.1080/15548627.2021.1883881
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13 |
Huilin Zhang, Bingjian Lu. The Roles of ceRNAs-Mediated Autophagy in Cancer Chemoresistance and Metastasis. Cancers 2020; 12(10): 2926 doi: 10.3390/cancers12102926
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14 |
Amir Anbiyaiee, Mohammad Ramazii, Siamak Soltani Bajestani, Seyed Mohammadmahdi Meybodi, Mona Keivan, Seyed Esmaeil Khoshnam, Maryam Farzaneh. The function of LncRNA-ATB in cancer. Clinical and Translational Oncology 2022; 25(1): 1 doi: 10.1007/s12094-022-02848-1
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15 |
Feng Tang, Yadi Xu, Hongliang Wang, Erbao Bian, Bing Zhao. LncRNA-ATB in cancers: what do we know so far?. Molecular Biology Reports 2020; 47(5): 4077 doi: 10.1007/s11033-020-05415-5
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16 |
Mehran Molavand, Niloufar Ebrahimnezhade, Arash Kiani, Bahman Yousefi, Ahmad Nazari, Maryam Majidinia. Regulation of autophagy by non-coding RNAs in human glioblastoma. Medical Oncology 2024; 41(11) doi: 10.1007/s12032-024-02513-3
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17 |
Ahmad Khan, Xiaobo Zhang. Function of the Long Noncoding RNAs in Hepatocellular Carcinoma: Classification, Molecular Mechanisms, and Significant Therapeutic Potentials. Bioengineering 2022; 9(8): 406 doi: 10.3390/bioengineering9080406
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18 |
Fatemeh Movahedi Motlagh, Sepideh Kadkhoda, Maryam Motamedrad, Parisa Javidzade, Sheyda Khalilian, Mohammad Hossein Modarressi, Soudeh Ghafouri-Fard. Roles of non-coding RNAs in cell death pathways involved in the treatment of resistance and recurrence of cancer. Pathology - Research and Practice 2023; 247: 154542 doi: 10.1016/j.prp.2023.154542
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19 |
Guangzhen Wu, Yingkun Xu, Huayu Zhang, Zihao Ruan, Peizhi Zhang, Zicheng Wang, Han Gao, Xiangyu Che, Qinghua Xia, Feng Chen. A new prognostic risk model based on autophagy-related genes in kidney renal clear cell carcinoma. Bioengineered 2021; 12(1): 7805 doi: 10.1080/21655979.2021.1976050
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20 |
Hui-Xian Tang, Fu-Zhen Yi, Zan-Song Huang, Gui-Liu Huang. Role of Hippo signaling pathway in occurrence, development, and treatment of primary hepatocellular carcinoma. World Chinese Journal of Digestology 2022; 30(1): 34 doi: 10.11569/wcjd.v30.i1.34
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21 |
Zhuolun Sun, Changying Jing, Chutian Xiao, Tengcheng Li. An autophagy-related long non-coding RNA prognostic signature accurately predicts survival outcomes in bladder urothelial carcinoma patients. Aging 2020; 12(15): 15624 doi: 10.18632/aging.103718
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22 |
Yuliang Qu, Dan Jiang, Minjuan Liu, Hongxia Wang, Tao Xu, Haijin Zhou, Minlan Huang, Weitong Shu, Guangxian Xu. LncRNA DANCR restrained the survival of mycobacterium tuberculosis H37Ra by sponging miR-1301-3p/miR-5194. Frontiers in Microbiology 2023; 14 doi: 10.3389/fmicb.2023.1119629
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23 |
Shenghao Li, Liyuan Hao, Na Li, Xiaoyu Hu, Huimin Yan, Erhei Dai, Xinli Shi. Targeting the Hippo/YAP1 signaling pathway in hepatocellular carcinoma: From mechanisms to therapeutic drugs (Review). International Journal of Oncology 2024; 65(3) doi: 10.3892/ijo.2024.5676
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24 |
Zhi-Dong Yang, Hui Kang. Exploring prognostic potential of long noncoding RNAs in colorectal cancer based on a competing endogenous RNA network. World Journal of Gastroenterology 2020; 26(12): 1298-1316 doi: 10.3748/wjg.v26.i12.1298
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25 |
Yi Wang, Yuqi Fu, Yingying Lu, Siwei Chen, Jin Zhang, Bo Liu, Yong Yuan. Unravelling the complexity of lncRNAs in autophagy to improve potential cancer therapy. Biochimica et Biophysica Acta (BBA) - Reviews on Cancer 2023; 1878(5): 188932 doi: 10.1016/j.bbcan.2023.188932
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26 |
Yanyan Wang, Zhaoping Liu, Zhenru Xu, Wenjun Shao, Dingyu Hu, Huiying Zhong, Ji Zhang. Introduction of long non-coding RNAs to regulate autophagy-associated therapy resistance in cancer. Molecular Biology Reports 2022; 49(11): 10761 doi: 10.1007/s11033-022-07669-7
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27 |
Yin Zhang, Qinge Wang, Yuping Xu, Jing Sun, Yanbo Ding, Li Wang, Bingfang Chen, Kewen Sun, Jianping Chen. Mitomycin C Inhibits Esophageal Fibrosis by Regulating Cell Apoptosis and Autophagy via lncRNA-ATB and miR-200b. Frontiers in Molecular Biosciences 2021; 8 doi: 10.3389/fmolb.2021.675757
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28 |
Rana A. Youness, Hossam A. Hassan, Tasneem Abaza, Ahmed A. Hady, Hekmat M. El Magdoub, Mohamed Ali, Johannes Vogel, Markus Thiersch, Max Gassmann, Nadia M. Hamdy, Mostafa A. Aboouf. A Comprehensive Insight and In Silico Analysis of CircRNAs in Hepatocellular Carcinoma: A Step toward ncRNA-Based Precision Medicine. Cells 2024; 13(15): 1245 doi: 10.3390/cells13151245
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29 |
Rana Shafabakhsh, Farzaneh Arianfar, Massoud Vosough, Hamid Reza Mirzaei, Maryam Mahjoubin-Tehran, Hashem khanbabaei, Hamed Kowsari, Layla Shojaie, Maryam Ebadi Fard Azar, Michael R. Hamblin, Hamed Mirzaei. Autophagy and gastrointestinal cancers: the behind the scenes role of long non-coding RNAs in initiation, progression, and treatment resistance. Cancer Gene Therapy 2021; 28(12): 1229 doi: 10.1038/s41417-020-00272-7
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30 |
Mehrdad Hashemi, Niloufar Nadafzadeh, Mohammad Hassan Imani, Romina Rajabi, Setayesh Ziaolhagh, Seyedeh Delaram Bayanzadeh, Raheleh Norouzi, Reihaneh Rafiei, Zeinab Khazaei Koohpar, Behnaz Raei, Mohammad Arad Zandieh, Shokooh Salimimoghadam, Maliheh Entezari, Afshin Taheriazam, Athanasios Alexiou, Marios Papadakis, Shing Cheng Tan. Targeting and regulation of autophagy in hepatocellular carcinoma: revisiting the molecular interactions and mechanisms for new therapy approaches. Cell Communication and Signaling 2023; 21(1) doi: 10.1186/s12964-023-01053-z
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31 |
Jing Xu, Xin-Yuan Liu, Qi Zhang, Hua Liu, Peng Zhang, Zi-Bin Tian, Cui-Ping Zhang, Xiao-Yu Li. Crosstalk Among YAP, LncRNA, and Tumor-Associated Macrophages in Tumorigenesis Development. Frontiers in Oncology 2022; 11 doi: 10.3389/fonc.2021.810893
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32 |
Yang-Hsiang Lin. The effects of intracellular and exosomal ncRNAs on cancer progression. Cancer Gene Therapy 2023; 30(12): 1587 doi: 10.1038/s41417-023-00679-y
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33 |
Hai Zhang, Shu Chen, Sanrong Xu, Xiangcheng Li, Stefania Pizzimenti. COTE1 Facilitates Intrahepatic Cholangiocarcinoma Progression via Beclin1‐Dependent Autophagy Inhibition. BioMed Research International 2023; 2023(1) doi: 10.1155/2023/5491682
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34 |
Guang-Lin Lei, Yan Niu, Si-Jie Cheng, Yuan-Yuan Li, Zhi-Fang Bai, Ling-Xiang Yu, Zhi-Xian Hong, Hu Liu, Hong-Hong Liu, Jin Yan, Yuan Gao, Shao-Geng Zhang, Zhu Chen, Rui-Sheng Li, Peng-Hui Yang. Upregulation of long noncoding RNA W42 promotes tumor development by binding with DBN1 in hepatocellular carcinoma. World Journal of Gastroenterology 2021; 27(20): 2586-2602 doi: 10.3748/wjg.v27.i20.2586
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35 |
Xueke Wang, Meisong Kang, Chun Liu, Ting Lin, Xiao Han, Xiwen Jiang. Current State and Progress of Research on the Role of lncRNA in HBV-Related Liver Cancer. Frontiers in Cellular and Infection Microbiology 2021; 11 doi: 10.3389/fcimb.2021.714895
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36 |
Wen-jun Ge, Huan Huang, Tao Wang, Wei-hong Zeng, Min Guo, Chen-ran Ren, Ting-yu Fan, Fang Liu, Xi Zeng. Long non-coding RNAs in hepatocellular carcinoma. Pathology - Research and Practice 2023; 248: 154604 doi: 10.1016/j.prp.2023.154604
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37 |
Jian Pu, Chuan Tan, Zesheng Shao, Xianjian Wu, Ya Zhang, Zuoming Xu, Jianchu Wang, Qianli Tang, Huamei Wei. <p>Long Noncoding RNA <em>PART1</em> Promotes Hepatocellular Carcinoma Progression via Targeting miR-590-3p/<em>HMGB2</em> Axis</p>. OncoTargets and Therapy 2020; : 9203 doi: 10.2147/OTT.S259962
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38 |
Yan Li, Wei Li, Andrew R. Hoffman, Jiuwei Cui, Ji-Fan Hu. The Nucleus/Mitochondria-Shuttling LncRNAs Function as New Epigenetic Regulators of Mitophagy in Cancer. Frontiers in Cell and Developmental Biology 2021; 9 doi: 10.3389/fcell.2021.699621
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39 |
Shuo Wang, Hongyan Bai, Sujuan Fei, Bei Miao. A Cuproptosis-Related LncRNA Risk Model for Predicting Prognosis and Immunotherapeutic Efficacy in Patients with Hepatocellular Carcinoma. Biochemical Genetics 2024; 62(3): 2332 doi: 10.1007/s10528-023-10539-x
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40 |
Yuting Gao, Qing Peng, Shenghao Li, Kangning Zheng, Yi Gong, Yu Xue, Yiwei Liu, Junlan Lu, Yuman Zhang, Xinli Shi. YAP1 suppression inhibits autophagy and improves the efficacy of anti-PD-1 immunotherapy in hepatocellular carcinoma. Experimental Cell Research 2023; 424(1): 113486 doi: 10.1016/j.yexcr.2023.113486
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41 |
Homeyra Seydi, Kosar Nouri, Niloufar Rezaei, Atena Tamimi, Moustapha Hassan, Hamed Mirzaei, Massoud Vosough. Autophagy orchestrates resistance in hepatocellular carcinoma cells. Biomedicine & Pharmacotherapy 2023; 161: 114487 doi: 10.1016/j.biopha.2023.114487
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42 |
Zhaoxia Sun, Li Zhao, Shuang Wang, Honggang Wang. Knockdown of long non-coding RNA LINC01006 represses the development of hepatocellular carcinoma by modulating the miR-194-5p/CADM1 axis. Annals of Hepatology 2022; 27: 100571 doi: 10.1016/j.aohep.2021.100571
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43 |
Lihui Si, Zecheng Yang, Lu Ding, Duoduo Zhang. Regulatory effects of lncRNAs and miRNAs on the crosstalk between autophagy and EMT in cancer: a new era for cancer treatment. Journal of Cancer Research and Clinical Oncology 2022; 148(3): 547 doi: 10.1007/s00432-021-03892-0
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44 |
Xian-Bin Cheng, Bo Fu, Xing-Zhao Li, Yang Jiang. Prognostic value of long non-coding RNA ATB in digestive system cancers: A meta-analysis. Pathology - Research and Practice 2020; 216(6): 152949 doi: 10.1016/j.prp.2020.152949
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45 |
Young-Ah Kim, Kwan-Kyu Park, Sun-Jae Lee. LncRNAs Act as a Link between Chronic Liver Disease and Hepatocellular Carcinoma. International Journal of Molecular Sciences 2020; 21(8): 2883 doi: 10.3390/ijms21082883
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46 |
Zihe Guo, Ayao Guo, Chuang Zhou. Breast Cancer Stem Cell-Derived ANXA6-Containing Exosomes Sustain Paclitaxel Resistance and Cancer Aggressiveness in Breast Cancer. Frontiers in Cell and Developmental Biology 2021; 9 doi: 10.3389/fcell.2021.718721
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47 |
Zidan Zhao, Junjian He, Chao Feng. CircCBFB is a mediator of hepatocellular carcinoma cell autophagy and proliferation through miR-424-5p/ATG14 axis. Immunologic Research 2022; 70(3): 341 doi: 10.1007/s12026-021-09255-8
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48 |
Jia Wu, Ying Zhu, Qingwei Cong, Qiumin Xu. Non‑coding RNAs: Role of miRNAs and lncRNAs in the regulation of autophagy in hepatocellular carcinoma (Review). Oncology Reports 2023; 49(6) doi: 10.3892/or.2023.8550
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49 |
Saade Abdalkareem Jasim, Yasir Qasim Almajidi, Reyadh R. Al‐Rashidi, Ahmed Hjazi, Irfan Ahmad, Ahmed Hussien Radie Alawadi, Enas R. Alwaily, Hashem O. Alsaab, Ali Haslany, Mohamood Hameed. The interaction between lncRNAs and transcription factors regulating autophagy in human cancers: A comprehensive and therapeutical survey. Cell Biochemistry and Function 2024; 42(2) doi: 10.1002/cbf.3971
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50 |
Dan Wang, Fengjiao Chen, Tao Zeng, Qingxia Tang, Bing Chen, Ling Chen, Yan Dong, Xiaosong Li. Comprehensive biological function analysis of lncRNAs in hepatocellular carcinoma. Genes & Diseases 2021; 8(2): 157 doi: 10.1016/j.gendis.2019.12.013
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51 |
Guang-Zhi Zhang, Zuo-Long Wu, Chun-Ying Li, En-Hui Ren, Wen-Hua Yuan, Ya-Jun Deng, Qi-Qi Xie. Development of a Machine Learning-Based Autophagy-Related lncRNA Signature to Improve Prognosis Prediction in Osteosarcoma Patients. Frontiers in Molecular Biosciences 2021; 8 doi: 10.3389/fmolb.2021.615084
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52 |
Aviral Kumar, Sosmitha Girisa, Mohammed S. Alqahtani, Mohamed Abbas, Mangala Hegde, Gautam Sethi, Ajaikumar B. Kunnumakkara. Targeting Autophagy Using Long Non-Coding RNAs (LncRNAs): New Landscapes in the Arena of Cancer Therapeutics. Cells 2023; 12(5): 810 doi: 10.3390/cells12050810
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53 |
Dongying Wang, Jiaxing He, Bingyu Huang, Shanshan Liu, Hongming Zhu, Tianmin Xu. Emerging role of the Hippo pathway in autophagy. Cell Death & Disease 2020; 11(10) doi: 10.1038/s41419-020-03069-6
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54 |
Tushar Singh Barwal, Uttam Sharma, Manjit Kaur Rana, Sonali Bazala, Ipsa Singh, Masang Murmu, Harmanpreet Singh Kapoor, Smriti Thakur, Manju Jain, Aklank Jain. A diagnostic and prognostic value of blood-based circulating long non-coding RNAs in thyroid, pancreatic and ovarian cancer. Critical Reviews in Oncology/Hematology 2022; 171: 103598 doi: 10.1016/j.critrevonc.2022.103598
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55 |
Yushan Huang, Longchang Jiang, Yang Liu, Lixian Liu, Junling Wang, Lei Shi. Long non‐coding RNAs in virus‐related cancers. Reviews in Medical Virology 2022; 32(6) doi: 10.1002/rmv.2364
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56 |
Chao Tu, Kexin Yang, Lu Wan, Jieyu He, Lin Qi, Wanchun Wang, Qiong Lu, Zhihong Li. The crosstalk between lncRNAs and the Hippo signalling pathway in cancer progression. Cell Proliferation 2020; 53(9) doi: 10.1111/cpr.12887
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