Stabilization, rolling and addition of other ECM proteins to collagen hydrogels improves regeneration in chitosan guides for long peripheral nerve gaps in rats

Stabilization, rolling and addition of other ECM proteins to collagen hydrogels improves regeneration in chitosan guides for long peripheral nerve gaps in rats

F. Gonzalez-Perez, S. Cobianchi, C. Heimann, J.B. Phillips, E. Udina, X. Navarro (2017) Stabilization, rolling and addition of other ECM proteins to collagen hydrogels improves regeneration in chitosan guides for long peripheral nerve gaps in rats. Neurosurgery 80, 465-474

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Adapting tissue-engineered in vitro CNS models for high-throughput study of neurodegeneration

Caitriona O’Rourke, Charlotte Lee-Reeves, Rosemary AL Drake, Grant WW Cameron, A Jane Laughlin & James B Phillips (2017) Adapting tissue-engineered in vitro CNS models for high-throughput study of neurodegeneration. Journal of Tissue Engineering 8, 1-9.

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Combining Gene and Stem Cell Therapy for Peripheral Nerve Tissue Engineering

Francesca Busuttil, Ahad A. Rahim and James B. Phillips (2017) Combining gene and stem cell therapy for peripheral nerve tissue engineering. Stem Cells and Development 26(4):231-238

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Engineered neural tissue with Schwann cell differentiated human dental pulp stem cells: potential for peripheral nerve repair?

K. Sanen, W. Martens, M. Georgiou, M. Ameloot, I. Lambrichts & J.B. Phillips (2017) Engineered neural tissue with Schwann cell differentiated human dental pulp stem cells: potential for peripheral nerve repair? Journal of Tissue Engineering and Regenerative Medicine doi: 10.1002/term.2249

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An integrated theoretical-experimental approach to accelerate translational tissue engineering

R.H. Coy, O.R. Evans, J.B. Phillips & R.J. Shipley (2016). An integrated theoretical-experimental approach to accelerate translational tissue engineering. Journal of Tissue Engineering and Regenerative Medicine doi: 10.1002/term.2346

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Biomechanical properties of the spinal cord: implications for tissue engineering and clinical translation.

R.D. Bartlett, D. Choi & J.B. Phillips (2016). Biomechanical properties of the spinal cord: implications for tissue engineering and clinical translation. Regenerative Medicine, (doi:10.2217/rme-2016-0065)

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Using Stem Cells to Grow Artificial Tissue for Peripheral Nerve Repair

K.S. Bhangra, F. Busuttil, J.B. Phillips & A.A. Rahim (2016). Using Stem Cells to Grow Artificial Tissue for Peripheral Nerve Repair. Stem Cells International, ID 7502178

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Label-free mapping of microstructural organisation in self-aligning cellular collagen hydrogels using image correlation spectroscopy

K. Sanen, R. Paesen, S. Luyck, J.B. Phillips, I. Lambrichts, W. Martens & M. Ameloot (2015) Label-free mapping of microstructural organisation in self-aligning cellular collagen hydrogels using image correlation spectroscopy. Acts Biomaterialia doi: 10.1016/j.actbio.2015.10.047

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Embryonic and mature astrocytes exert different effects on neuronal growth in rat ventral mesencephalic slice cultures

Hashemian, C. O’Rourke, J.B. Phillips, I. Strömberg & S. Af Bjerkén (2015) Embryonic and mature astrocytes exert different effects on neuronal growth in rat ventral mesencephalic slice cultures. Springerplus doi: 10.1186/s40064-015-1362-3

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Optimising contraction and alignment of cellular collagen hydrogels to achieve reliable and consistent engineered anisotropic tissue.

O’Rourke, Caitriona; Drake, Rosemary A. L.; Cameron, Grant W. W.; Loughlin, A. Jane and Phillips, James B. (2015). Optimising contraction and alignment of cellular collagen hydrogels to achieve reliable and consistent engineered anisotropic tissue. Journal of Biomaterials Applications (Early view).

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