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Journal of Neural Engineering|July 26, 2024
Affinity-based drug delivery systems for the central nervous system: exploiting molecular interactions for local, precise targetingPablo Ramos Ferrer, Shelly Sakiyama-ElbertBiorxiv : the Preprint Server for Biology|October 10, 2024
Acrylic Acid Modified Poly-ethylene Glycol Microparticles for Affinity-Based release of Insulin-Like Growth Factor-1 in Neural ApplicationsPablo Ramos Ferrer, Shelly Sakiyama-ElbertJournal of Biomedical Materials Research. Part A|September 7, 2023
Sustained neurotrophin-3 delivery from hyaluronic acid hydrogels for neural tissue regenerationPablo Ramos Ferrer, Sangamithra Vardhan, Shelly Sakiyama-ElbertBiomedical Materials (Bristol, England)|November 30, 2017
Using biomaterials to promote pro-regenerative glial phenotypes after nervous system injuriesRussell Thompson, Shelly Sakiyama-ElbertCurrent Opinion in Biotechnology|March 30, 2018
Genome engineering for CNS injury and diseaseJennifer Pardieck, Shelly Sakiyama-ElbertStem Cells and Development|June 18, 2021
Induction of Ventral Spinal V0 Interneurons from Mouse Embryonic Stem CellsJennifer Pardieck, Manwal Harb, Shelly Sakiyama-ElbertCurrent Opinion in Biotechnology|April 10, 2024
Stem cell engineering approaches for investigating glial cues in central nervous system disordersSangamithra Vardhan, Tyler Jordan, Shelly Sakiyama-ElbertBrain Research Bulletin|March 23, 2019
The influence of microenvironment and extracellular matrix molecules in driving neural stem cell fate within biomaterialsThomas Wilems, Sangamithra Vardhan, Siliang Wu, et al.Nature Protocols|November 10, 2019
Author Correction: V2a interneuron differentiation from mouse and human pluripotent stem cellsJessica C Butts, Nisha Iyer, Nick White, et al.Nature Protocols|October 20, 2019
V2a interneuron differentiation from mouse and human pluripotent stem cellsJessica C Butts, Nisha Iyer, Nick White, et al.Pageof 3