Pro-regenerative biomaterials recruit immunoregulatory dendritic cells after traumatic injury
- PMID: 37872423
- DOI: 10.1038/s41563-023-01689-9
Pro-regenerative biomaterials recruit immunoregulatory dendritic cells after traumatic injury
Abstract
During wound healing and surgical implantation, the body establishes a delicate balance between immune activation to fight off infection and clear debris and immune tolerance to control reactivity against self-tissue. Nonetheless, how such a balance is achieved is not well understood. Here we describe that pro-regenerative biomaterials for muscle injury treatment promote the proliferation of a BATF3-dependent CD103+XCR1+CD206+CD301b+ dendritic cell population associated with cross-presentation and self-tolerance. Upregulation of E-cadherin, the ligand for CD103, and XCL-1 in injured tissue suggests a mechanism for cell recruitment to trauma. Muscle injury recruited natural killer cells that produced Xcl1 when stimulated with fragmented extracellular matrix. Without cross-presenting cells, T-cell activation increases, pro-regenerative macrophage polarization decreases and there are alterations in myogenesis, adipogenesis, fibrosis and increased muscle calcification. These results, previously observed in cancer progression, suggest a fundamental mechanism of immune regulation in trauma and material implantation with implications for both short- and long-term injury recovery.
© 2023. The Author(s), under exclusive licence to Springer Nature Limited.
References
-
- Marwick, C. Implant recommendations. JAMA 283, 869 (2000).
-
- Wampler, A. How differently should the FDA regulate drugs and devices? AMA J. Ethics 23, 669–672 (2021).
-
- Anderson, J. M. Biological responses to materials. Annu. Rev. Mater. Res. 31, 81–110 (2001).
-
- Anderson, J. M., Rodriguez, A. & Chang, D. T. Foreign body reaction to biomaterials. Semin. Immunol. 20, 86–100 (2008).
-
- Heredia, J. E. et al. Type 2 innate signals stimulate fibro/adipogenic progenitors to facilitate muscle regeneration. Cell 153, 376–388 (2013).
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