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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 Cover

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

Open Access
|Dec 2024

References

  1. Guo, S., Redenski, I., Levenberg, S., Spinal cord repair: from cells and tissue engineering to extracellular vesicles, Cells, 2021, 10(8): 1872
  2. 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
  3. 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
  4. 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
  5. 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
  6. 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
  7. 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
  8. Lanza, R., Langer, R., Vacanti, J.P., Atala, A., Principles of tissue engineering, Academic Press, Cambridge, Massachusetts, USA, 2020
  9. Musial, C., Kuban-Jankowska, A., Gorska-Ponikowska, M., Beneficial properties of green tea catechins, Int. J. Mol. Sci., 2020, 21(5): 1744
  10. Ikbal, A., Roy, S., Pat, K., Health benefits of green tea: A mini review, J. Entomol. Zool. Stud., 2020, 8: 1424–1430
  11. 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
  12. 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
  13. 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
  14. 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
  15. 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
  16. 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
  17. 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
  18. Zulkifli, M.Z.A., Nordin, D., Shaari, N., Kamarudin, S.K., Overview of electrospinning for tissue engineering applications, Polymers, 2023, 15(11): 2418
  19. 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
  20. 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
  21. 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
  22. Tang, Y., Zhou, Y., Li, H.-J., Advances in mesenchymal stem cell exosomes: A review, Stem Cell Res. Ther., 2021, 12(1): 1–12
  23. 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
  24. 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
  25. Petersen, A.M.W., Pedersen, B.K., The anti-inflammatory effect of exercise, J. Appl. Physiol., 2005, 98(4): 1154–1162
DOI: https://doi.org/10.2478/msp-2024-0038 | Journal eISSN: 2083-134X | Journal ISSN: 2083-1331
Language: English
Page range: 79 - 91
Submitted on: Apr 29, 2024
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Accepted on: Oct 22, 2024
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Published on: Dec 31, 2024
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2024 Jianjun Wang, Tao Zhang, Yingqi Jiang, Wei Han, Shimeng Huang, Jihong Zhao, Xiru Du, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.