Quantifying regeneration in patients following peripheral nerve injury

Quantifying regeneration in patients following peripheral nerve injury

Rayner MLD, Brown HL, Wilcox M, Phillips JB & Quick TJ (2019). Quantifying regeneration in patients following peripheral nerve injury. JPRAS http://doi.org/10.1016/j.bjps.2019.10.007

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Generation of c-MycER-TAM-transduced human late-adherent olfactory mucosa cells for potential regenerative applications

Santiago-Toledo G, Georgiou M, dos Reis J, Roberton VH, Valinhas A, Wood RC, Phillips JB, Mason C, Li D, Li Y, Sinden JD, Choi D, Jat PS & Wall IB (2019). Generation of c-MycERTAM-transduced human late-adherent olfactory mucosa cells for potential regenerative applications. Scientific Reports 9, 13190

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The Effects of Surgical Antiseptics and Time Delays on RNA Isolated From Human and Rodent Peripheral Nerves

Wilcox M, Quick TJ & Phillips JB (2019) The Effects of Surgical Antiseptics and Time Delays on RNA Isolated From Human and Rodent Peripheral Nerves. Frontiers in Cellular Neuroscience 13, 189

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Physical and mechanical properties of RAFT-stabilised collagen gels for tissue engineering applications

Kayal C, Shipley RJ & Phillips JB (2019) Physical and mechanical properties of RAFT-stabilised collagen gels for tissue engineering applications. Journal of the Mechanical Behaviour of Biomedical Materials 99, 216-224

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Developing an in vitro model to screen drugs for nerve regeneration

Rayner M, Laranjeira S, Evans RE, Shipley RJ, Healy J & Phillips JB (2018) Developing an in vitro model to screen drugs for nerve regeneration Anatomical Record doi:10.1002/ar.23918

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Vascularisation strategies for peripheral nerve tissue engineering

Muangsanit P, Shipley RJ & Phillips JB (2018) Vascularisation strategies for peripheral nerve tissue engineering. Anatomical Record doi:10.1002/ar.23919

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An optimized collagen-fibrin blend enhances the ability of engineered neural tissue to promote peripheral nerve repair

Schuh CMAP, Day AGE, Redl H & Phillips JB (2018) An optimized collagen-fibrin blend enhances the ability of engineered neural tissue to promote peripheral nerve repair. Tissue Engineering Part A, 24, 1332-1340

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An allogeneic ‘off the shelf’ therapeutic strategy for peripheral nerve tissue engineering using clinical grade human neural stem cells

C. O’Rourke, A. G. E. Day, C. Murray-Dunning, L. Thanabalasundaram, J. Cowan, L. Stevanato, N. Grace, G. Cameron, R. A. L. Drake, J. Sinden & J. B. Phillips (2018) An allogeneic ‘off the shelf’ therapeutic strategy for peripheral nerve tissue engineering using clinical grade human neural stem cells. Scientific Reports 8, 2951

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Controlling human corneal stromal stem cell contraction to mediate rapid cell and matrix organization of real architecture for 3-dimensional tissue equivalents

Mukhey D, Phillips JB, Daniels JT, Kureshi AK (2018) Controlling human corneal stromal stem cell contraction to mediate rapid cell and matrix organization of real architecture for 3-dimensional tissue equivalents. Acta Biomaterialia. 2018 Feb;67:229-237

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Schwann cells and mesenchymal stem cells in laminin- or fibronectin-aligned matrices and regeneration across a critical size defect of 15 mm in the rat sciatic nerve

Gonzalez-Perez F, Hernández J, Heimann C, Phillips JB, Udina E, Navarro X (2017) Schwann cells and mesenchymal stem cells in laminin- or fibronectin-aligned matrices and regeneration across a critical size defect of 15 mm in the rat sciatic nerve. Journal of Neurosurgery: Spine, doi: 10.3171/2017.5.SPINE161100

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