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spinal cord injury
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2024 (1)
Duarte D.
,
Correia C.
,
Reis R. L.
,
Pashkuleva I.
,
Peixoto D.
, and
Alves N. M.
,
"
Bioadhesive hyaluronic acid-based hydrogels for spinal cord injury
",
Biomacromolecules
, vol. 25, issue 3, pp. 1592-1601, doi:
10.1021/acs.biomac.3c01186
, 2024.
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RepositoriUM
2023 (1)
Correia C.
,
Reis R. L.
,
Pashkuleva I.
, and
Alves N. M.
,
"
Adhesive and self-healing materials for central nervous system repair
",
Biomaterials Advances
, vol. 151, pp. 213439, doi:
10.1016/j.bioadv.2023.213439
, 2023.
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RepositoriUM
2022 (1)
Shi H.
,
Jin L.
,
Liang K.
,
Li X.
,
Zhu X.
,
Oliveira J. M.
,
Reis R. L.
,
Mao Z.
, and
Wu M.
,
"
Mesoporous polydopamine nanoparticles for sustained release of rapamycin and reactive oxygen species scavenging to synergistically accelerate neurogenesis after spinal cord injury
",
Journal of Materials Chemistry B
, vol. Advance Article , doi:
10.1039/D2TB00841F
, 2022.
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RepositoriUM
2021 (1)
Zhao X.
,
Jin L.
,
Zhu Z.
,
Lu H.
,
Shi H.
,
Zhong Q.
,
Oliveira J. M.
,
Reis R. L.
,
Gao C.
, and
Zhengwei M.
,
"
Conotoxin loaded dextran microgel particles alleviate effects of spinal cord injury by inhibiting neuronal excitotoxicity
",
Applied Materials Today
, vol. 23, pp. 101064, doi:
10.1016/j.apmt.2021.101064
, 2021.
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RepositoriUM
2013 (3)
Cerqueira S. R.
,
Oliveira J. M.
,
Mano J. F.
,
Sousa N.
,
Salgado A. J.
, and
Reis R. L.
,
"
Regeneration Strategies in the Central Nervous System
",
3rd 3B´s Symposium on Biomaterials and Stem cells in Regenerative Medicine
, 2013.
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RepositoriUM
Silva N. A.
,
Gimble J. M.
,
Sousa N.
,
Reis R. L.
, and
Salgado A. J.
,
"
Modulation of Bone Marrow Mesenchymal Stem Cell Secretome by ECM-Like Hydrogels.
",
STEM CELLS AND DEVELOPMENT olume 22, Number 8, 2013
, vol. 22, issue 8, pp. 1232-1240, doi:
doi: 10.1089/scd.2012.0524
, 2013.
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Cerqueira S. R.
,
Oliveira J. M.
,
Silva N. A.
,
Leite-Almeida H.
,
Samy S. M.
,
Almeida A.
,
Mano J. F.
,
Sousa N.
,
Salgado A. J.
, and
Reis R. L.
,
"
Microglia response and in vivo therapeutic potential of methylprednisolone-loaded dendrimer nanoparticles in spinal cord injury
",
Small
, vol. 9, issue 5, pp. 738-749, 2013.
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RepositoriUM
2012 (1)
Cerqueira S. R.
,
Oliveira J. M.
,
Silva B. L.
,
Silva N. A.
,
Mano J. F.
,
Sousa N.
,
Salgado A. J.
, and
Reis R. L.
,
"
Intracellular delivery of methylprednisolone by dendrimer-based nanoparticles improves the locomotor outcomes after spinal cord injury
",
Journal of Tissue Engineering and Regenerative Medicine
, vol. 6, issue Suppl.2, pp. 19-19, doi:
10.1002/term.1608
, 2012.
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RepositoriUM
2011 (1)
Cerqueira S. R.
,
Oliveira J. M.
,
Mano J. F.
,
Sousa N.
,
Salgado A. J.
, and
Reis R. L.
,
"
Dendrimer-based nanoparticle delivery system for the sustained and intracellular delivery of methylprednisolone to CNS cells: potential application in spinal cord injury treatment
",
Histology and Histopathology
, vol. 26, issue supplement1, pp. 323-324, 2011.
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2009 (2)
Cerqueira S. R.
,
Oliveira J. M.
,
Mano J. F.
,
Sousa N.
,
Salgado A. J.
, and
Reis R. L.
,
"
Cell targeted nano-based drug delivery systems for spinal cord injury regeneration
",
Tissue Engineering and Regenerative Medicine
, vol. 6, issue 12, pp. S82, 2009.
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Salgado A. J.
,
Sousa R. A.
,
Fraga J. S.
,
Pego J. M.
,
Silva B. A.
,
Malva J. O.
,
Neves N. M.
,
Reis R. L.
, and
Sousa N.
,
"
Effects of Starch/ Polycaprolactone-based Blends for Spinal Cord Injury Regeneration in Neurons/Glial Cells Viability and Proliferation
",
Journal of Bioactive and Biocompatible Polymers
, vol. 24, pp. 235-247, 2009.
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2008 (1)
Silva N. A.
,
Salgado A. J.
,
Sousa R. A.
,
Oliveira J. T.
,
Neves N. M.
,
Mano J. F.
,
Sousa N.
, and
Reis R. L.
,
"
Starch/gellan gum hybrid 3D guidance systems for spinal cord injury regeneration: Scaffolds processing, characterization and biological evaluation
",
Tissue Engineering Part A
, vol. 14, issue 5, pp. 779-779, 2008.
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