For: | Moresi V, Marroncelli N, Adamo S. New insights into the epigenetic control of satellite cells. World J Stem Cells 2015; 7(6): 945-955 [PMID: 26240681 DOI: 10.4252/wjsc.v7.i6.945] |
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URL: | https://www.wjgnet.com/1948-0210/full/v7/i6/945.htm |
Number | Citing Articles |
1 |
Alessandra Renzini, Nicoletta Marroncelli, Chiara Noviello, Viviana Moresi, Sergio Adamo. HDAC4 Regulates Skeletal Muscle Regeneration via Soluble Factors. Frontiers in Physiology 2018; 9 doi: 10.3389/fphys.2018.01387
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2 |
F. Triana-Martínez, G. Pedraza-Vázquez, L.A. Maciel-Barón, M. Königsberg. Reflections on the role of senescence during development and aging. Archives of Biochemistry and Biophysics 2016; 598: 40 doi: 10.1016/j.abb.2016.04.004
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3 |
Philina Santarelli, Valentina Rosti, Maria Vivo, Chiara Lanzuolo. Muscle Stem Cells. Current Topics in Developmental Biology 2024; 158: 375 doi: 10.1016/bs.ctdb.2024.01.014
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4 |
Nicoletta Marroncelli, Marzia Bianchi, Marco Bertin, Silvia Consalvi, Valentina Saccone, Marco De Bardi, Pier Lorenzo Puri, Daniela Palacios, Sergio Adamo, Viviana Moresi. HDAC4 regulates satellite cell proliferation and differentiation by targeting P21 and Sharp1 genes. Scientific Reports 2018; 8(1) doi: 10.1038/s41598-018-21835-7
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5 |
Robert L. Murray, Wei Zhang, Marie Iwaniuk, Ester Grilli, Chad H. Stahl. Dietary tributyrin, an HDAC inhibitor, promotes muscle growth through enhanced terminal differentiation of satellite cells. Physiological Reports 2018; 6(10): e13706 doi: 10.14814/phy2.13706
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6 |
Mohamed Attia, Marie Maurer, Marieke Robinet, Fabien Le Grand, Elie Fadel, Rozen Le Panse, Gillian Butler-Browne, Sonia Berrih-Aknin. Muscle satellite cells are functionally impaired in myasthenia gravis: consequences on muscle regeneration. Acta Neuropathologica 2017; 134(6): 869 doi: 10.1007/s00401-017-1754-2
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7 |
Ang Li, Jianxun Yi, Xuejun Li, Li Dong, Lyle W Ostrow, Jianjie Ma, Jingsong Zhou. Distinct transcriptomic profile of satellite cells contributes to preservation of neuromuscular junctions in extraocular muscles of ALS mice. eLife 2024; 12 doi: 10.7554/eLife.92644.4
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8 |
Barbora Malecova, Alessandra Dall'Agnese, Luca Madaro, Sole Gatto, Paula Coutinho Toto, Sonia Albini, Tammy Ryan, Làszlò Tora, Pier Lorenzo Puri. TBP/TFIID-dependent activation of MyoD target genes in skeletal muscle cells. eLife 2016; 5 doi: 10.7554/eLife.12534
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9 |
Ang Li, Jianxun Yi, Xuejun Li, Li Dong, Lyle W Ostrow, Jianjie Ma, Jingsong Zhou. Distinct transcriptomic profile of satellite cells contributes to preservation of neuromuscular junctions in extraocular muscles of ALS mice. eLife 2024; 12 doi: 10.7554/eLife.92644
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10 |
Eyal Bengal, Eusebio Perdiguero, Antonio L. Serrano, Pura Muñoz-Cánoves. Rejuvenating stem cells to restore muscle regeneration in aging. F1000Research 2017; 6: 76 doi: 10.12688/f1000research.9846.1
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11 |
Jing Zhao, Xiaoxu Shen, Xinao Cao, Haorong He, Shunshun Han, Yuqi Chen, Can Cui, Yuanhang Wei, Yan Wang, Diyan Li, Qing Zhu, Huadong Yin. HDAC4 Regulates the Proliferation, Differentiation and Apoptosis of Chicken Skeletal Muscle Satellite Cells. Animals 2020; 10(1): 84 doi: 10.3390/ani10010084
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12 |
Kotaro Anan, Shinjiro Hino, Noriaki Shimizu, Akihisa Sakamoto, Katsuya Nagaoka, Ryuta Takase, Kensaku Kohrogi, Hirotaka Araki, Yuko Hino, Shingo Usuki, Shinya Oki, Hirotoshi Tanaka, Kimitoshi Nakamura, Fumio Endo, Mitsuyoshi Nakao. LSD1 mediates metabolic reprogramming by glucocorticoids during myogenic differentiation. Nucleic Acids Research 2018; 46(11): 5441 doi: 10.1093/nar/gky234
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13 |
Esther Barreiro, Antonio Sancho-Muñoz, Ester Puig-Vilanova, Anna Salazar-Degracia, Sergi Pascual-Guardia, Carme Casadevall, Joaquim Gea. Differences in micro-RNA expression profile between vastus lateralis samples and myotubes in COPD cachexia. Journal of Applied Physiology 2019; 126(2): 403 doi: 10.1152/japplphysiol.00611.2018
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14 |
Yaiza Núñez‐Álvarez, Erica Hurtado, Mar Muñoz, Ignacio García‐Tuñon, Gabriel E. Rech, Raquel Pluvinet, Lauro Sumoy, Alberto M. Pendás, Miguel A. Peinado, Mònica Suelves. Loss of HDAC11 accelerates skeletal muscle regeneration in mice. The FEBS Journal 2021; 288(4): 1201 doi: 10.1111/febs.15468
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15 |
Marzia Bianchi, Alessandra Renzini, Sergio Adamo, Viviana Moresi. Coordinated Actions of MicroRNAs with other Epigenetic Factors Regulate Skeletal Muscle Development and Adaptation. International Journal of Molecular Sciences 2017; 18(4): 840 doi: 10.3390/ijms18040840
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16 |
Yuan-hang WEI, Xi-yu ZHAO, Xiao-xu SHEN, Lin YE, Yao ZHANG, Yan WANG, Di-yan LI, Qing ZHU, Hua-dong YIN. The expression, function, and coding potential of circular RNA circEDC3 in chicken skeletal muscle development. Journal of Integrative Agriculture 2022; 21(5): 1444 doi: 10.1016/S2095-3119(21)63826-1
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17 |
Jiyao Wu, Binglin Yue, Xianyong Lan, Yanhuan Wang, Xingtang Fang, Yun Ma, Yueyu Bai, Xingshan Qi, Chunlei Zhang, Hong Chen. MiR‐499 regulates myoblast proliferation and differentiation by targeting transforming growth factor β receptor 1. Journal of Cellular Physiology 2019; 234(3): 2523 doi: 10.1002/jcp.26903
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18 |
Xin Yi, Ye Tao, Xi Lin, Yuan Dai, Tingli Yang, Xiaojing Yue, Xuejun Jiang, Xiaoyan Li, Ding-sheng Jiang, Kelsey C. Andrade, Jiang Chang. Histone methyltransferase Setd2 is critical for the proliferation and differentiation of myoblasts. Biochimica et Biophysica Acta (BBA) - Molecular Cell Research 2017; 1864(4): 697 doi: 10.1016/j.bbamcr.2017.01.012
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19 |
Devon Ehnes, Shiri Levy, Hannele Ruohola-Baker. Medical Epigenetics. 2021; : 853 doi: 10.1016/B978-0-12-823928-5.00019-0
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20 |
Natacha Breuls, Nefele Giarratana, Laura Yedigaryan, Maurilio Sampaolesi. Current Topics in iPSCs Technology. 2022; : 197 doi: 10.1016/B978-0-323-99892-5.00019-0
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21 |
Robert L. Murray, Wei Zhang, Jianan Liu, Jason Cooper, Alex Mitchell, Maria Buman, Jiuzhou Song, Chad H. Stahl. Tributyrin, a Butyrate Pro-Drug, Primes Satellite Cells for Differentiation by Altering the Epigenetic Landscape. Cells 2021; 10(12): 3475 doi: 10.3390/cells10123475
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22 |
Jeongeun Lee, Jinryoung Park, Hosung Choe, Kwanseob Shim. Insect peptide CopA3 promotes proliferation and PAX7 and MYOD
expression in porcine muscle satellite cells. Journal of Animal Science and Technology 2022; 64(6): 1132 doi: 10.5187/jast.2022.e81
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23 |
Milica Tosic, Anita Allen, Dominica Willmann, Christoph Lepper, Johnny Kim, Delphine Duteil, Roland Schüle. Lsd1 regulates skeletal muscle regeneration and directs the fate of satellite cells. Nature Communications 2018; 9(1) doi: 10.1038/s41467-017-02740-5
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24 |
Yuan Su, Xuyang Gao, Yu Wang, Xuying Li, Weipeng Zhang, Junxing Zhao. Astragalus polysaccharide promotes sheep satellite cell differentiation by regulating miR-133a through the MAPK/ERK signaling pathway. International Journal of Biological Macromolecules 2023; 239: 124351 doi: 10.1016/j.ijbiomac.2023.124351
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25 |
Qian Zhao, Ye Kang, Hong-Yang Wang, Wei-Jun Guan, Xiang-Chen Li, Lin Jiang, Xiao-Hong He, Ya-Bin Pu, Jian-Lin Han, Yue-Hui Ma, Qian-Jun Zhao. Expression profiling and functional characterization of miR-192 throughout sheep skeletal muscle development. Scientific Reports 2016; 6(1) doi: 10.1038/srep30281
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26 |
Alexandra Harvey, Giuseppina Caretti, Viviana Moresi, Alessandra Renzini, Sergio Adamo. Interplay between Metabolites and the Epigenome in Regulating Embryonic and Adult Stem Cell Potency and Maintenance. Stem Cell Reports 2019; 13(4): 573 doi: 10.1016/j.stemcr.2019.09.003
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27 |
Natacha Breuls, Giorgia Giacomazzi, Maurilio Sampaolesi. (Epi)genetic Modifications in Myogenic Stem Cells: From Novel Insights to Therapeutic Perspectives. Cells 2019; 8(5): 429 doi: 10.3390/cells8050429
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