For: | Tecalco-Cruz AC, Ramírez-Jarquín JO, Alvarez-Sánchez ME, Zepeda-Cervantes J. Epigenetic basis of Alzheimer disease. World J Biol Chem 2020; 11(2): 62-75 [PMID: 33024518 DOI: 10.4331/wjbc.v11.i2.62] |
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URL: | https://www.wjgnet.com/1949-8454/full/v11/i2/62.htm |
Number | Citing Articles |
1 |
Negar Omidkhah, Razieh Ghodsi. NO-HDAC dual inhibitors. European Journal of Medicinal Chemistry 2022; 227: 113934 doi: 10.1016/j.ejmech.2021.113934
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2 |
Michael Aschner, Anatoly V. Skalny, Abel Santamaria, Joao B. T. Rocha, Borhan Mansouri, Yousef Tizabi, Roberto Madeddu, Rongzu Lu, Eunsook Lee, Alexey A. Tinkov. Epigenetic Mechanisms of Aluminum-Induced Neurotoxicity and Alzheimer’s Disease: A Focus on Non-Coding RNAs. Neurochemical Research 2024; 49(11): 2988 doi: 10.1007/s11064-024-04214-9
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3 |
Daria Zhdanova, Marina Gomzikova, Natalia Bobkova, Irina Starostina, Vladimir Kovalev, Albert Rizvanov. Intranasal Administration of Microvesicles in the Brain of Mice with Induced Model of Alzheimer’s Type of Neurodegeneration. BioNanoScience 2022; 12(2): 685 doi: 10.1007/s12668-022-00972-4
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4 |
Jonathan K. L. Mak, Asmus Cosmos Skovgaard, Marianne Nygaard, Laura Kananen, Chandra A. Reynolds, Yunzhang Wang, Ralf Kuja‐Halkola, Ida K. Karlsson, Nancy L. Pedersen, Sara Hägg, Mette Soerensen, Juulia Jylhävä. Epigenome‐wide analysis of frailty: Results from two European twin cohorts. Aging Cell 2024; 23(6) doi: 10.1111/acel.14135
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5 |
Rumiana Tenchov, Janet M. Sasso, Qiongqiong Angela Zhou. Alzheimer’s Disease: Exploring the Landscape of Cognitive Decline. ACS Chemical Neuroscience 2024; 15(21): 3800 doi: 10.1021/acschemneuro.4c00339
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6 |
Rima Hajjo, Dima A. Sabbah, Osama H. Abusara, Abdel Qader Al Bawab. A Review of the Recent Advances in Alzheimer’s Disease Research and the Utilization of Network Biology Approaches for Prioritizing Diagnostics and Therapeutics. Diagnostics 2022; 12(12): 2975 doi: 10.3390/diagnostics12122975
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7 |
Olaia Martínez-Iglesias, Vinogran Naidoo, Iván Carrera, Ramón Cacabelos. Epigenetic Studies in the Male APP/BIN1/COPS5 Triple-Transgenic Mouse Model of Alzheimer’s Disease. International Journal of Molecular Sciences 2022; 23(5): 2446 doi: 10.3390/ijms23052446
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8 |
Sebnem E. Cevik, David A. Skaar, Dereje D. Jima, Andy J. Liu, Truls Østbye, Heather E. Whitson, Randy L. Jirtle, Cathrine Hoyo, Antonio Planchart. DNA methylation of imprint control regions associated with Alzheimer’s disease in non-Hispanic Blacks and non-Hispanic Whites. Clinical Epigenetics 2024; 16(1) doi: 10.1186/s13148-024-01672-4
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9 |
Maria do Carmo Carreiras, José Marco-Contelles. Hydrazides as Inhibitors of Histone Deacetylases. Journal of Medicinal Chemistry 2024; 67(16): 13512 doi: 10.1021/acs.jmedchem.4c00541
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10 |
斯贤 许. Study on the Effect of Blood Pressure on the Physiological Mechanism of Alzheimer’s Disease. Advances in Clinical Medicine 2022; 12(11): 10059 doi: 10.12677/ACM.2022.12111451
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11 |
Aina Bellver-Sanchis, Pedro A. Ávila-López, Iva Tic, David Valle-García, Marta Ribalta-Vilella, Luis Labrador, Deb Ranjan Banerjee, Ana Guerrero, Gemma Casadesus, Coralie Poulard, Mercè Pallàs, Christian Griñán-Ferré. Neuroprotective effects of G9a inhibition through modulation of peroxisome-proliferator activator receptor gamma-dependent pathways by miR-128. Neural Regeneration Research 2024; 19(11): 2532 doi: 10.4103/1673-5374.393102
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12 |
Dominik Saul, Robyn Laura Kosinsky. Epigenetics of Aging and Aging-Associated Diseases. International Journal of Molecular Sciences 2021; 22(1): 401 doi: 10.3390/ijms22010401
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13 |
Bruno P. Imbimbo, Stefania Ippati, Mark Watling, Claudia Balducci. Accelerating Alzheimer’s disease drug discovery and development: what’s the way forward?. Expert Opinion on Drug Discovery 2021; 16(7): 727 doi: 10.1080/17460441.2021.1887132
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14 |
Hong Wei, Yuhao Xu, Li Lin, Yuefeng Li, Xiaolan Zhu. A review on the role of RNA methylation in aging-related diseases. International Journal of Biological Macromolecules 2024; 254: 127769 doi: 10.1016/j.ijbiomac.2023.127769
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15 |
Xiaobo Wang, Jin-Bao Zhang, Kai-Jie He, Fen Wang, Chun-Feng Liu. Advances of Zebrafish in Neurodegenerative Disease: From Models to Drug Discovery. Frontiers in Pharmacology 2021; 12 doi: 10.3389/fphar.2021.713963
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16 |
Birgitta Mc Ewen. Construction of a Review About Epigenetics for Biology Teachers and Other Non-experts. Science & Education 2022; 31(4): 997 doi: 10.1007/s11191-021-00278-z
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17 |
Zhiying Chen, Moxin Wu, Qin Lai, Weixin Zhou, Xiaoqing Wen, Xiaoping Yin. Epigenetic regulation of synaptic disorder in Alzheimer’s disease. Frontiers in Neuroscience 2022; 16 doi: 10.3389/fnins.2022.888014
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18 |
Menglong Jin, Shi-Qing Cai. Mechanisms Underlying Brain Aging Under Normal and Pathological Conditions. Neuroscience Bulletin 2023; 39(2): 303 doi: 10.1007/s12264-022-00969-9
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19 |
Yi-An Chen, Cheng-Hsiu Lu, Chien-Chih Ke, Sain-Jhih Chiu, Chi-Wei Chang, Bang-Hung Yang, Juri G. Gelovani, Ren-Shyan Liu. Evaluation of Class IIa Histone Deacetylases Expression and In Vivo Epigenetic Imaging in a Transgenic Mouse Model of Alzheimer’s Disease. International Journal of Molecular Sciences 2021; 22(16): 8633 doi: 10.3390/ijms22168633
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20 |
Wandi Xiong, Lin Lu, Jiali Li. Long non-coding RNAs with essential roles in neurodegenerative disorders. Neural Regeneration Research 2024; 19(6): 1212 doi: 10.4103/1673-5374.385850
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21 |
Annamaria la Torre, Filomena Lo Vecchio, Antonio Greco. Epigenetic Mechanisms of Aging and Aging-Associated Diseases. Cells 2023; 12(8): 1163 doi: 10.3390/cells12081163
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22 |
Chidiebere Emmanuel Okechukwu. Deciphering and manipulating the epigenome for the treatment of Parkinson’s and Alzheimer’s disease. MGM Journal of Medical Sciences 2021; 8(2): 171 doi: 10.4103/mgmj.mgmj_90_20
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23 |
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