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Profile Publications (9)
XB-PERS-4039

Publications By Paula G Slater

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Xenopus laevis neural stem progenitor cells exhibit a transient metabolic shift toward glycolysis during spinal cord regeneration., Slater PG, Domínguez-Romero ME, Campos G, Aravena V, Cavieres-Lepe J, Eisner V., Front Cell Dev Biol. January 29, 2025; 13 1529093.   


Cornifelin expression during Xenopus laevis metamorphosis and in response to spinal cord injury., Torruella-Gonzalez S, Slater PG, Lee-Liu D, Larraín J., Gene Expr Patterns. March 1, 2022; 43 119234.   


Spinal Cord Transection In Xenopus laevis Tadpoles., Slater PG, Larraín J., J Vis Exp. December 10, 2021; (178):


Analysis of the early response to spinal cord injury identified a key role for mTORC1 signaling in the activation of neural stem progenitor cells., Peñailillo J, Palacios M, Mounieres C, Muñoz R, Slater PG, De Domenico E, Patrushev I, Gilchrist M, Larraín J., NPJ Regen Med. October 22, 2021; 6 (1): 68.


Xenopus, a Model to Study Wound Healing and Regeneration: Experimental Approaches., Slater PG, Palacios M, Larraín J., Cold Spring Harb Protoc. August 2, 2021; 2021 (8):


Tau, XMAP215/Msps and Eb1 co-operate interdependently to regulate microtubule polymerisation and bundle formation in axons., Hahn I, Voelzmann A, Parkin J, Fülle JB, Slater PG, Lowery LA, Sanchez-Soriano N, Prokop A., PLoS Genet. July 1, 2021; 17 (7): e1009647.   


XMAP215 promotes microtubule-F-actin interactions to regulate growth cone microtubules during axon guidance in Xenopuslaevis., Slater PG, Cammarata GM, Samuelson AG, Magee A, Hu Y, Lowery LA., J Cell Sci. April 30, 2019; 132 (9):   


Characterization of Xenopus laevis guanine deaminase reveals new insights for its expression and function in the embryonic kidney., Slater PG, Cammarata GM, Monahan C, Bowers JT, Yan O, Lee S, Lowery LA., Dev Dyn. April 1, 2019; 248 (4): 296-305.   


Xenopus laevis as a model system to study cytoskeletal dynamics during axon pathfinding., Slater PG, Hayrapetian L, Lowery LA., Genesis. January 1, 2017; 55 (1-2):   

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