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Evaluation of regular treadmill exercise plan combined with electrospun scaffolds loaded with green tea extract and bone marrow-derived mesenchymal stem cells for spinal cord injury repair in a rat model

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31. Dez. 2024

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COVER HERUNTERLADEN

Guo, S., Redenski, I., Levenberg, S., Spinal cord repair: from cells and tissue engineering to extracellular vesicles, Cells, 2021, 10(8): 1872 Guo S. Redenski I. Levenberg S. Spinal cord repair: from cells and tissue engineering to extracellular vesicles Cells 2021 10 8 1872 Search in Google Scholar

Bedir, T., Ulag, S., Ustundag, C.B., Gunduz, O., 3D bioprinting applications in neural tissue engineering for spinal cord injury repair, Mater. Sci. Eng. C, 2020, 110: 110741 Bedir T. Ulag S. Ustundag C.B. Gunduz O. 3D bioprinting applications in neural tissue engineering for spinal cord injury repair Mater. Sci. Eng. C 2020 110 110741 Search in Google Scholar

Seáñez, I., Capogrosso, M., Motor improvements enabled by spinal cord stimulation combined with physical training after spinal cord injury: review of experimental evidence in animals and humans, Bioelectron. Med., 2021, 7(1): 16 Seáñez I. Capogrosso M. Motor improvements enabled by spinal cord stimulation combined with physical training after spinal cord injury: review of experimental evidence in animals and humans Bioelectron. Med. 2021 7 1 16 Search in Google Scholar

Sutor, T.W., Kura, J., Mattingly, A.J., Otzel, D.M., Yarrow, J.F., The effects of exercise and activity-based physical therapy on bone after spinal cord injury, Int. J. Mol. Sci., 2022, 23(2): 608 Sutor T.W. Kura J. Mattingly A.J. Otzel D.M. Yarrow J.F. The effects of exercise and activity-based physical therapy on bone after spinal cord injury Int. J. Mol. Sci. 2022 23 2 608 Search in Google Scholar

Li, Y., Dong, T., Li, Z., Ni, S., Zhou, F., Alimi, O.A., et al., Review of advances in electrospinning-based strategies for spinal cord regeneration, Mater. Today Chem., 2022, 24: 100944 Li Y. Dong T. Li Z. Ni S. Zhou F. Alimi O.A. Review of advances in electrospinning-based strategies for spinal cord regeneration Mater. Today Chem. 2022 24 100944 Search in Google Scholar

Zhao, T., Li, C., Wang, S., Song, X., Green tea (Camellia sinensis): A review of its phytochemistry, pharmacology, and toxicology, Molecules, 2022, 27(12): 3909 Zhao T. Li C. Wang S. Song X. Green tea (Camellia sinensis): A review of its phytochemistry, pharmacology, and toxicology Molecules 2022 27 12 3909 Search in Google Scholar

Liau, L.L., Looi, Q.H., Chia, W.C., Subramaniam, T., Ng, M.H., Law, J.X., Treatment of spinal cord injury with mesenchymal stem cells, Cell Biosci., 2020, 10: 1–17 Liau L.L. Looi Q.H. Chia W.C. Subramaniam T. Ng M.H. Law J.X. Treatment of spinal cord injury with mesenchymal stem cells Cell Biosci. 2020 10 1 17 Search in Google Scholar

Lanza, R., Langer, R., Vacanti, J.P., Atala, A., Principles of tissue engineering, Academic Press, Cambridge, Massachusetts, USA, 2020 Lanza R. Langer R. Vacanti J.P. Atala A. Principles of tissue engineering Academic Press Cambridge, Massachusetts, USA 2020 Search in Google Scholar

Musial, C., Kuban-Jankowska, A., Gorska-Ponikowska, M., Beneficial properties of green tea catechins, Int. J. Mol. Sci., 2020, 21(5): 1744 Musial C. Kuban-Jankowska A. Gorska-Ponikowska M. Beneficial properties of green tea catechins Int. J. Mol. Sci. 2020 21 5 1744 Search in Google Scholar

Ikbal, A., Roy, S., Pat, K., Health benefits of green tea: A mini review, J. Entomol. Zool. Stud., 2020, 8: 1424–1430 Ikbal A. Roy S. Pat K. Health benefits of green tea: A mini review J. Entomol. Zool. Stud. 2020 8 1424 1430 Search in Google Scholar

Alam, M., Ali, S., Ashraf, G.M., Bilgrami, A.L., Yadav, D.K., Hassan, M.I., Epigallocatechin 3-gallate: From green tea to cancer therapeutics, Food Chem., 2022, 379: 132135 Alam M. Ali S. Ashraf G.M. Bilgrami A.L. Yadav D.K. Hassan M.I. Epigallocatechin 3-gallate: From green tea to cancer therapeutics Food Chem. 2022 379 132135 Search in Google Scholar

Kamal, D.A.M., Salamt, N., Zaid, S., Mokhtar, M.H., Beneficial effects of green tea catechins on female reproductive disorders: A review, Molecules, 2021, 26(9): 2675 Kamal D.A.M. Salamt N. Zaid S. Mokhtar M.H. Beneficial effects of green tea catechins on female reproductive disorders: A review Molecules 2021 26 9 2675 Search in Google Scholar

Cheng, Z., Zhang, Z., Han, Y., Wang, J., Wang, Y., Chen, X., et al., A review on anti-cancer effect of green tea catechins, J. Funct. Foods, 2020, 74: 104172 Cheng Z. Zhang Z. Han Y. Wang J. Wang Y. Chen X. A review on anti-cancer effect of green tea catechins J. Funct. Foods 2020 74 104172 Search in Google Scholar

Alharbi, N., Daraei, A., Lee, H., Guthold, M., The effect of molecular weight and fiber diameter on the mechanical properties of single, electrospun PCL nanofibers, Mater. Today Commun., 2023, 35: 105773 Alharbi N. Daraei A. Lee H. Guthold M. The effect of molecular weight and fiber diameter on the mechanical properties of single, electrospun PCL nanofibers Mater. Today Commun. 2023 35 105773 Search in Google Scholar

Liu, Y., Weng, R., Wang, W., Wei, X., Li, J., Chen, X., et al., Tunable physical and mechanical properties of gelatin hydrogel after transglutaminase crosslinking on two gelatin types, Int. J. Biol. Macromol., 2020, 162: 405–413 Liu Y. Weng R. Wang W. Wei X. Li J. Chen X. Tunable physical and mechanical properties of gelatin hydrogel after transglutaminase crosslinking on two gelatin types Int. J. Biol. Macromol. 2020 162 405 413 Search in Google Scholar

Hodges, J.K., Sasaki, G.Y., Bruno, R.S., Anti-inflammatory activities of green tea catechins along the gut–liver axis in nonalcoholic fatty liver disease: Lessons learned from preclinical and human studies, J. Nutr. Biochem., 2020, 85: 108478 Hodges J.K. Sasaki G.Y. Bruno R.S. Anti-inflammatory activities of green tea catechins along the gut–liver axis in nonalcoholic fatty liver disease: Lessons learned from preclinical and human studies J. Nutr. Biochem. 2020 85 108478 Search in Google Scholar

Rahmati, M., Mills, D.K., Urbanska, A.M., Saeb, M.R., Venugopal, J.R., Ramakrishna, S., et al., Electrospinning for tissue engineering applications, Prog. Mater. Sci., 2021, 117: 100721 Rahmati M. Mills D.K. Urbanska A.M. Saeb M.R. Venugopal J.R. Ramakrishna S. Electrospinning for tissue engineering applications Prog. Mater. Sci. 2021 117 100721 Search in Google Scholar

Zulkifli, M.Z.A., Nordin, D., Shaari, N., Kamarudin, S.K., Overview of electrospinning for tissue engineering applications, Polymers, 2023, 15(11): 2418 Zulkifli M.Z.A. Nordin D. Shaari N. Kamarudin S.K. Overview of electrospinning for tissue engineering applications Polymers 2023 15 11 2418 Search in Google Scholar

Wang, S., Li, Z., Ma, Y., Liu, Y., Lin, C.C., Li, S., et al., Immunomodulatory effects of green tea polyphenols, Molecules, 2021, 26(12): 3755 Wang S. Li Z. Ma Y. Liu Y. Lin C.C. Li S. Immunomodulatory effects of green tea polyphenols Molecules 2021 26 12 3755 Search in Google Scholar

Iyer, S.S., Rojas, M., Anti-inflammatory effects of mesenchymal stem cells: novel concept for future therapies, Expert. Opin. Biol. Ther., 2008, 8(5): 569–581 Iyer S.S. Rojas M. Anti-inflammatory effects of mesenchymal stem cells: novel concept for future therapies Expert. Opin. Biol. Ther. 2008 8 5 569 581 Search in Google Scholar

Guo, J., Lin, G.S., Bao, C.Y., Hu, Z.M., Hu, M.Y., Anti-inflammation role for mesenchymal stem cells transplantation in myocardial infarction, Inflammation, 2007, 30: 97–104 Guo J. Lin G.S. Bao C.Y. Hu Z.M. Hu M.Y. Anti-inflammation role for mesenchymal stem cells transplantation in myocardial infarction Inflammation 2007 30 97 104 Search in Google Scholar

Tang, Y., Zhou, Y., Li, H.-J., Advances in mesenchymal stem cell exosomes: A review, Stem Cell Res. Ther., 2021, 12(1): 1–12 Tang Y. Zhou Y. Li H.-J. Advances in mesenchymal stem cell exosomes: A review Stem Cell Res. Ther. 2021 12 1 1 12 Search in Google Scholar

Szuhany, K.L., Bugatti, M., Otto, M.W., A meta-analytic review of the effects of exercise on brain-derived neurotrophic factor, J. Psychiatr. Res., 2015, 60: 56–64 Szuhany K.L. Bugatti M. Otto M.W. A meta-analytic review of the effects of exercise on brain-derived neurotrophic factor J. Psychiatr. Res. 2015 60 56 64 Search in Google Scholar

Tang, S.W., Chu, E., Hui, T., Helmeste, D., Law, C., Influence of exercise on serum brain-derived neurotrophic factor concentrations in healthy human subjects, Neurosci. Lett., 2008, 431(1): 62–65 Tang S.W. Chu E. Hui T. Helmeste D. Law C. Influence of exercise on serum brain-derived neurotrophic factor concentrations in healthy human subjects Neurosci. Lett. 2008 431 1 62 65 Search in Google Scholar

Petersen, A.M.W., Pedersen, B.K., The anti-inflammatory effect of exercise, J. Appl. Physiol., 2005, 98(4): 1154–1162 Petersen A.M.W. Pedersen B.K. The anti-inflammatory effect of exercise J. Appl. Physiol. 2005 98 4 1154 1162 Search in Google Scholar