Gene Editing Tool for Neurodegenerative Diseases
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-9404-5_16
Reference119 articles.
1. Alerasool N, Segal D, Lee H, Taipale M (2020) An efficient KRAB domain for CRISPRi applications in human cells. Nat Methods 17(11):1093–1096
2. Al-Naama N, Mackeh R, Kino T (2020) C2H2-type zinc finger proteins in brain development, neurodevelopmental, and other neuropsychiatric disorders: systematic literature-based analysis. Front Neurol 11:32
3. Alwin S, Gere MB, Guhl E, Effertz K, Barbas CF III, Segal DJ et al (2005) Custom zinc-finger nucleases for use in human cells. Mol Ther 12(4):610–617
4. Bellefroid EJ, Poncelet DA, Lecocq PJ, Revelant O, Martial JA (1991) The evolutionarily conserved Krüppel-associated box domain defines a subfamily of eukaryotic multifingered proteins. Proc Natl Acad Sci 88(9):3608–3612
5. Bhardwaj S, Kesari KK, Rachamalla M, Mani S, Ashraf GM, Jha SK et al (2022) CRISPR/Cas9 gene editing: new hope for Alzheimer’s disease therapeutics. J Adv Res 40:207–221
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