Wound Healing

Displaying 1 - 5 of 5CSV
Kim, S., Baik, S., Hyun, J., Lee, J., Lim, D., Lee, T., Jeong, G., Im, G., Seo, I., Kim, Y. H., Pang, C., & Bhang, S. H. (2024). Facile Size Tunable Skin‐Adaptive Patch for Accelerating Wound Healing. Advanced Healthcare Materials, 13(29). Portico. https://doi.org/10.1002/adhm.202304435
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Marshall, B. P., Ashinsky, B. G., Ferrer, X. E., Kunes, J. A., Innis, A. C., Luzzi, A. J., Forrester, L. A., Burt, K. G., Lee, A. J., Song, L., Lisiewski, L. E., Soni, R. K., Hung, C. T., Levine, W. N., Kovacevic, D., & Thomopoulos, S. (2024). The subacromial bursa modulates tendon healing after rotator cuff injury in rats. Science Translational Medicine, 16(744). https://doi.org/10.1126/scitranslmed.add8273
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Rodriguez, I. A., Strombergsson, A., Weinstein, R., Maloney, A., Hendrix, C., Liden, B., & Fridman, R. (2020). Preliminary Clinical Evaluation Using a Novel Bioengineered Wound Product to Treat Lower Extremity Ulcers. The International Journal of Lower Extremity Wounds, 22(1), 139–145. https://doi.org/10.1177/1534734620968378
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Johnson, J. M., Takebe, Y., Zhang, G., Ober, R., McLuckie, A., Niedt, G. W., & Johnson, L. L. (2022). Blocking RAGE improves wound healing in diabetic pigs. International Wound Journal, 20(3), 678–686. Portico. https://doi.org/10.1111/iwj.13909
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Fang, F., Xiao, Y., Zelzer, E., Leong, K. W., & Thomopoulos, S. (2022). A mineralizing pool of Gli1-expressing progenitors builds the tendon enthesis and demonstrates therapeutic potential. Cell Stem Cell, 29(12), 1669-1684.e6. https://doi.org/10.1016/j.stem.2022.11.007
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