Justin C Burrell

Affiliations: 
University of Pennsylvania, Philadelphia, PA, United States 
Area:
Neural tissue engineering, neurotrauma, nerve regeneration
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"Justin C Burrell"
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Publications

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Sáez JC, Burrell JC, Cahill CM, et al. (2024) Pharmacology of boldine: summary of the field and update on recent advances. Frontiers in Pharmacology. 15: 1427147
Chouhan D, Gordián Vélez WJ, Struzyna LA, et al. (2024) Generation of contractile forces by three-dimensional bundled axonal tracts in micro-tissue engineered neural networks. Frontiers in Molecular Neuroscience. 17: 1346696
Acero VP, Cribas ES, Browne KD, et al. (2023) Bedside to bench: the outlook for psychedelic research. Frontiers in Pharmacology. 14: 1240295
Burrell JC, Vu PT, Alcott OJB, et al. (2023) Orally administered boldine reduces muscle atrophy and promotes neuromuscular recovery in a rodent model of delayed nerve repair. Frontiers in Cellular Neuroscience. 17: 1240916
Meng Q, Burrell JC, Zhang Q, et al. (2023) Potential Application of Orofacial MSCs in Tissue Engineering Nerve Guidance for Peripheral Nerve Injury Repair. Stem Cell Reviews and Reports
Struzyna LA, Browne KD, Burrell JC, et al. (2022) Axonal Tract Reconstruction Using a Tissue-Engineered Nigrostriatal Pathway in a Rat Model of Parkinson's Disease. International Journal of Molecular Sciences. 23
Smith DH, Burrell JC, Browne KD, et al. (2022) Tissue-engineered grafts exploit axon-facilitated axon regeneration and pathway protection to enable recovery after 5-cm nerve defects in pigs. Science Advances. 8: eabm3291
Zhang Q, Burrell JC, Zeng J, et al. (2022) Implantation of a nerve protector embedded with human GMSC-derived Schwann-like cells accelerates regeneration of crush-injured rat sciatic nerves. Stem Cell Research & Therapy. 13: 263
Burrell JC, Das S, Laimo FA, et al. (2022) Engineered neuronal microtissue provides exogenous axons for delayed nerve fusion and rapid neuromuscular recovery in rats. Bioactive Materials. 18: 339-353
Petrov D, Burrell JC, Browne KD, et al. (2022) Neurorrhaphy in Presence of Polyethylene Glycol Enables Immediate Electrophysiological Conduction in Porcine Model of Facial Nerve Injury. Frontiers in Surgery. 9: 811544
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