Targeting tumour energy metabolism potentiates the cytotoxicity of 5-aminolevulinic acid photodynamic therapy

Targeting tumour energy metabolism potentiates the cytotoxicity of 5-aminolevulinic acid photodynamic therapy

Golding, J. P. ; Wardhaugh, T. ; Patrick, L.; Turner, M.; Phillips, J. B. ; Bruce, J. I. and Kimani, S. G. (2013). Targeting tumour energy metabolism potentiates the cytotoxicity of 5-aminolevulinic acid photodynamic therapy. British Journal of C…

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New Paper: Engineered Neural Tissue for Peripheral Nerve Repair

Published online in Biomaterials on 5th July, this paper describes the construction and testing of living artificial nerve tissue that could potentially be used in regenerative medicine to repair peripheral nerves. The Engineered Neural Tissue is made by organising Schwann cells and collagen into robust sheets of aligned cellular material that support and guide neuronal […]

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Engineered neural tissue for peripheral nerve repair

Georgiou, Melanie ; Bunting, Stephen C. J. ; Davies, Heather A. ; Loughlin, Alison J. ; Golding, Jonathan P. and Phillips, James B. (2013). Engineered neural tissue for peripheral nerve repair. Biomaterials, 34(30) pp. 7335–7343.

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Aligned Schwann cells derived from human dental pulp stem cells direct neurite growth in a tissue engineered collagen construct

Sanen, Kathleen ; Martens, Wendy ; Georgiou, Melanie ; Phillips, James ; Lambrichts, Ivo and Ameloot, Marcel (2013). Aligned Schwann cells derived from human dental pulp stem cells direct neurite growth in a tissue engineered collagen construct. In…

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Fabrication of an endoneurium using engineered neural tissue within a peripheral nerve repair conduit

Georgiou, Melanie ; Golding, Jon ; Loughlin, Jane and Phillips, James (2013). Fabrication of an endoneurium using engineered neural tissue within a peripheral nerve repair conduit. In: Tissue Engineering and Regenerative Medicine International So…

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Engineered neural tissue as a substitute for the autograft in peripheral nerve repair

Phillips, James (2013). Engineered neural tissue as a substitute for the autograft in peripheral nerve repair. In: Tissue Engineering and Regenerative Medicine International Society – EU Meeting, 17-20 June 2013, Istanbul, Turkey.

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