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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):