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Cited by in CrossRef
For: Wazan LE, Urrutia-Cabrera D, Wong RCB. Using transcription factors for direct reprogramming of neurons in vitroWorld J Stem Cells 2019; 11(7): 431-444 [PMID: 31396370 DOI: 10.4252/wjsc.v11.i7.431]
URL: https://www.wjgnet.com/1948-0210/full/v11/i7/431.htm
Number Citing Articles
1
Jishizhan Chen, Ziyu Liu, Jinke Chang. Genetic Mechanism Study of Auditory Phoenix Spheres and Transcription Factors Prediction for Direct Reprogramming by BioinformaticsInternational Journal of Molecular Sciences 2022; 23(18): 10287 doi: 10.3390/ijms231810287
2
Shu-Yuan Zhang, Juan Zhao, Jun-Jun Ni, Hui Li, Zhen-Zhen Quan, Hong Qing. Application and prospects of high-throughput screening for <i>in vitro </i>neurogenesisWorld Journal of Stem Cells 2022; 14(6): 393-419 doi: 10.4252/wjsc.v14.i6.393
3
Bo P. Lear, Darcie L. Moore. Moving CNS axon growth and regeneration research into human model systemsFrontiers in Neuroscience 2023; 17 doi: 10.3389/fnins.2023.1198041
4
Francesco Ferrari, Laura Arrigoni, Henriette Franz, Annalisa Izzo, Ludmila Butenko, Eirini Trompouki, Tanja Vogel, Thomas Manke. DOT1L-mediated murine neuronal differentiation associates with H3K79me2 accumulation and preserves SOX2-enhancer accessibilityNature Communications 2020; 11(1) doi: 10.1038/s41467-020-19001-7
5
Michał K. Jastrzębski, Piotr Wójcik, Piotr Stępnicki, Agnieszka A. Kaczor. Effects of small molecules on neurogenesis: Neuronal proliferation and differentiationActa Pharmaceutica Sinica B 2024; 14(1): 20 doi: 10.1016/j.apsb.2023.10.007
6
Basheer Abdullah Marzoog. Transcription Factors in Brain Regeneration: A Potential Novel Therapeutic TargetCurrent Drug Targets 2024; 25(1): 46 doi: 10.2174/0113894501279977231210170231
7
Daniel Urrutia-Cabrera, Roxanne Hsiang-Chi Liou, Jiao Lin, Yue Shi, Kun Liu, Sandy S. C. Hung, Alex W. Hewitt, Peng-Yuan Wang, Raymond Ching-Bong Wong. Combinatorial Approach of Binary Colloidal Crystals and CRISPR Activation to Improve Induced Pluripotent Stem Cell Differentiation into NeuronsACS Applied Materials & Interfaces 2022; 14(7): 8669 doi: 10.1021/acsami.1c17975
8
Ying Zhang, Xinyang Xie, Jiangnan Hu, Kazi Sabrina Afreen, Chun-Li Zhang, Qichuan Zhuge, Jianjing Yang. Prospects of Directly Reprogrammed Adult Human Neurons for Neurodegenerative Disease Modeling and Drug Discovery: iN vs. iPSCs ModelsFrontiers in Neuroscience 2020; 14 doi: 10.3389/fnins.2020.546484
9
L. A. Rzhanova, A. V. Kuznetsova, M. A. Aleksandrova. Reprogramming of Differentiated Mammalian and Human Retinal Pigment Epithelium: Current Achievements and ProspectsRussian Journal of Developmental Biology 2020; 51(4): 212 doi: 10.1134/S1062360420040062
10
Masuma Akter, Baojin Ding. Modeling Movement Disorders via Generation of hiPSC-Derived Motor NeuronsCells 2022; 11(23): 3796 doi: 10.3390/cells11233796
11
Siqi Gong, Han Shao, Xiuying Cai, Juehua Zhu. Astrocyte-Derived Neuronal Transdifferentiation as a Therapy for Ischemic Stroke: Advances and ChallengesBrain Sciences 2022; 12(9): 1175 doi: 10.3390/brainsci12091175
12
Roxanne Hsiang-Chi Liou, Thomas L. Edwards, Keith R. Martin, Raymond Ching-Bong Wong. Neuronal Reprogramming for Tissue Repair and NeuroregenerationInternational Journal of Molecular Sciences 2020; 21(12): 4273 doi: 10.3390/ijms21124273
13
Yoo Sung Kim, NaRi Seo, Ji-Hye Kim, Soyeong Kang, Ji Won Park, Ki Dae Park, Hyang-Ae Lee, Misun Park. Exploring the Functional Heterogeneity of Directly Reprogrammed Neural Stem Cell-Derived Neurons via Single-Cell RNA SequencingCells 2023; 12(24): 2818 doi: 10.3390/cells12242818