Biblio

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Journal Article
Zizioli D, Mione M, Varinelli M, Malagola M, Bernardi S, Alghisi E, Borsani G, Finazzi D, Monti E, Presta M, et al. Zebrafish disease models in hematology: Highlights on biological and translational impact. Biochim Biophys Acta Mol Basis Dis. 2018.
Peterman E, Quitevis EJA, Black EC, Horton EC, Aelmore RL, White E, Sagasti A, Rasmussen JP. Zebrafish cutaneous injury models reveal Langerhans cells engulf axonal debris in adult epidermis. Dis Model Mech. 2023.
Mork L, Crump G. Zebrafish Craniofacial Development: A Window into Early Patterning. Curr Top Dev Biol. 2015;115:235-69.
Erbaba B, Burhan ÖPelin, Şerifoğlu N, Muratoğlu B, Kahveci F, Adams MM, Arslan-Ergül A. Zebrafish brain RNA sequencing reveals that cell adhesion molecules are critical in brain aging. Neurobiol Aging. 2020;94:164-175.
Macrae CA, Peterson RT. Zebrafish as tools for drug discovery. Nat Rev Drug Discov. 2015.
Ceci M, Mariano V, Romano N. Zebrafish as a translational regeneration model to study the activation of neural stem cells and role of their environment. Rev Neurosci. 2018.
Koparir A, Lekszas C, Keseroglu K, Rose T, Rappl L, Rad A, Maroofian R, Narendran N, Hasanzadeh A, Karimiani EGhayoor, et al. Zebrafish as a model to investigate a biallelic gain-of-function variant in MSGN1, associated with a novel skeletal dysplasia syndrome. Hum Genomics. 2024;18(1):23.
Blackburn JS, Langenau DM. Zebrafish as a model to assess cancer heterogeneity, progression and relapse. Dis Model Mech. 2014;7(7):755-762.
Vivinetto AL, Kim I-D, Goldberg DC, Fones L, Brown E, Tarabykin VS, Hill CE, Cho S, Cave JW. Zeb2 Is a Regulator of Astrogliosis and Functional Recovery after CNS Injury. Cell Rep. 2020;31(13):107834.
Wang D, Du G, Chen X, Wang J, Liu K, Zhao H, Cheng C, He Y, Jing N, Xu P, et al. Zeb1-controlled metabolic plasticity enables remodeling of chromatin accessibility in the development of neuroendocrine prostate cancer. Cell Death Differ. 2024.
Wang H, Xiao Z, Zheng J, Wu J, Hu X-L, Yang X, Shen Q. ZEB1 Represses Neural Differentiation and Cooperates with CTBP2 to Dynamically Regulate Cell Migration during Neocortex Development. Cell Rep. 2019;27(8):2335-2353.e6.
Almotiri A, Alzahrani HAhmad A, Menendez-Gonzalez JBautista, Abdelfattah A, Alotaibi B, Saleh L, Greene A, Georgiou MRF, Gibbs A, Alsayari ASalem, et al. Zeb1 modulates hematopoietic stem cell fates required for suppressing acute myeloid leukemia. J Clin Invest. 2020.
Fang S, Wu L, Li M, Yi H, Gao G, Sheng Z, Gong P, Ma Y, Cai L. ZEB1 knockdown mediated using polypeptide cationic micelles inhibits metastasis and effects sensitization to a chemotherapeutic drug for cancer therapy. Nanoscale. 2014.
Nesvick CL, Zhang C, Edwards NA, Montgomery BK, Lee M, Yang C, Wang H, Zhu D, Heiss JD, Merrill MJ, et al. ZEB1 expression is increased in IDH1-mutant lower-grade gliomas. J Neurooncol. 2016.
Singh S, Howell D, Trivedi N, Kessler K, Ong T, Rosmaninho P, Raposo AAsf, Robinson G, Roussel MF, Castro DS, et al. Zeb1 controls neuron differentiation and germinal zone exit by a mesenchymal-epithelial-like transition. Elife. 2016;5.
Durand S, Tang Y, Pommier RM, Benboubker V, Grimont M, Boivin F, Barbollat-Boutrand L, Cumunel E, Dupeuble F, Eberhardt A, et al. ZEB1 controls a lineage-specific transcriptional program essential for melanoma cell state transitions. Oncogene. 2024.
Zhang P, Sun Y, Ma L. ZEB1: at the crossroads of epithelial-mesenchymal transition, metastasis and therapy resistance. Cell Cycle. 2015.
Cao H, Zhi Y, Xu H, Fang H, Jia X. Zearalenone causes embryotoxicity and induces oxidative stress and apoptosis in differentiated human embryonic stem cells. Toxicol In Vitro. 2018.
Shi W, Wang F, Gao M, Yang Y, Du Z, Wang C, Yao Y, He K, Chen X, Hao A. ZDHHC17 promotes axon outgrowth by regulating TrkA-tubulin complex formation. Mol Cell Neurosci. 2015.
Bartosch AMarie W, Youth EHH, Hansen S, Wu Y, Buchanan HM, Kaufman ME, Xiao H, Koo SYeon, Ashok A, Sivakumar S, et al. ZCCHC17 modulates neuronal RNA splicing and supports cognitive resilience in Alzheimer's disease. J Neurosci. 2023.
Toneff MJ, Sreekumar A, Tinnirello A, P Hollander D, Habib S, Li S, Ellis MJ, Xin L, Mani SA, Rosen JM. The Z-cad dual fluorescent sensor detects dynamic changes between the epithelial and mesenchymal cellular states. BMC Biol. 2016;14(1):47.
Su J, Miao X, Archambault D, Mager J, Cui W. ZC3H4, a novel CCCH-type zinc finger protein, is essential for early embryogenesis in mice. Biol Reprod. 2020.
Hojo N, Tatsumi N, Moriguchi N, Matsumura A, Morimoto S, Nakata J, Fujiki F, Nishida S, Nakajima H, Tsuboi A, et al. A Zbtb7a proto-oncogene as a novel target for miR-125a. Mol Carcinog. 2015.
Zhang L, Wang Y, Zhang L, Xia X, Chao Y, He R, Han C, Zhao W. ZBTB7A, a miR-663a target gene, protects osteosarcoma from endoplasmic reticulum stress-induced apoptosis by suppressing LncRNA GAS5 expression. Cancer Lett. 2019.
Zhou M, Cui Y, Zuo S, Peng Q, Liu Y, Li X, Yang Y, He Q, Yu X, Zhou J, et al. ZBTB40 is a telomere-associated protein and protects telomeres in human ALT cells. J Biol Chem. 2023:105053.

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