Patrick Mulder

169 Local Immune Response in Burn Patients REFERENCES 1. Dahiya. Burns as a Model of SIRS. Front. Biosci. 2009, 14, 4962–4967. 2. Bergquist; Hästbacka; Glaumann; et al. The Time-Course of the Inflammatory Response to Major Burn Injury and Its Relation to Organ Failure and Outcome. Burns 2019, 45, 354–363. 3. Wu; Zhuang; Jiang; et al. Can Systemic Inflammatory Response Syndrome Score at Admission Predict Clinical Outcome in Patients with Severe Burns? Burns 2019, 45, 860–868. 4. Farina; Rosique; Rosique. Curbing Inflammation in Burn Patients. Int. J. Inflam. 2013, 2013, 1–9. 5. Rani; Nicholson; Zhang; et al. Damage-Associated Molecular Patterns (DAMPs) Released after Burn Are Associated with Inflammation and Monocyte Activation. Burns 2017, 43, 297–303. 6. Zhu; Ding; Tredget. The Molecular Basis of Hypertrophic Scars. Burn. Trauma 2016, 4, 2. 7. Mulder; Vlig; Boekema; et al. Persistent Systemic Inflammation in Patients With Severe Burn Injury Is Accompanied by Influx of Immature Neutrophils and Shifts in T Cell Subsets and Cytokine Profiles. Front. Immunol. 2021, 11, 1–13. 8. Kotwal; Chien. Macrophage Differentiation in Normal and Accelerated Wound Healing. Macrophages Orig. Funct. Biointervention 2017, 62, 353–364. 9. Velnar; Bailey; Smrkolj. The Wound Healing Process: An Overview of the Cellular and Molecular Mechanisms. J. Int. Med. Res. 2009, 37, 1528–1542. 10. Short; Wang; Keswani. The Role of T Lymphocytes in Cutaneous Scarring. Adv. Wound Care 2022, 11, 121–131. 11. Norbury; Herndon; Tanksley; et al. Infection in Burns. Surg. Infect. (Larchmt). 2016, 17, 250–255. 12. van Zuijlen; Korkmaz; Sheraton; et al. The Future of Burn Care From a Complexity Science Perspective. J. Burn Care Res. 2022, 43, 1312–1321. 13. Mulder; Koenen; Vlig; et al. Burn-Induced Local and Systemic Immune Response: Systematic Review and Meta-Analysis of Animal Studies. J. Invest. Dermatol. 2022, 142, 3093-3109.e15. 14. Zomer; Trentin. Skin Wound Healing in Humans and Mice: Challenges in Translational Research. J. Dermatol. Sci. 2018, 90, 3–12. 15. Orgill. Excision and Skin Grafting of Thermal Burns. N. Engl. J. Med. 2009, 360, 893–901. 16. Metzler; Goosmann; Lubojemska; et al. Myeloperoxidase-Containing Complex Regulates Neutrophil Elastase Release and Actin Dynamics during NETosis. Cell Rep. 2014, 8, 883–896. 17. Marini; Costa; Bevilacqua; et al. Mature CD10+ and Immature CD10- Neutrophils Present in G-CSF-Treated Donors Display Opposite Effects on T Cells. Blood 2017, 129, 1343–1356. 18. Bajnok; Ivanova; Rigó; et al. The Distribution of Activation Markers and Selectins on Peripheral T Lymphocytes in Preeclampsia. Mediators Inflamm. 2017, 2017, 1–7. 19. Amand; Iserentant; Poli; et al. Human CD56dimCD16dim Cells As an Individualized Natural Killer Cell Subset. Front. Immunol. 2017, 8, 699. 20. Kupper; Fuhlbrigge. Immune Surveillance in the Skin: Mechanisms and Clinical Consequences. Nat. Rev. Immunol. 2004, 4, 211–222. 21. Kim; Lang; Xue; et al. The Role of Th-17 Cells and Γδ T-Cells in Modulating the Systemic Inflammatory Response to Severe Burn Injury. Int. J. Mol. Sci. 2017, 18, 758. 22. Toth; Alexander; Daniel; et al. The Role of Γδ T Cells in the Regulation of Neutrophil-Mediated Tissue Damage after Thermal Injury. J. Leukoc. Biol. 2004, 76, 545–552. 23. Rani; Zhang; Schwacha. Gamma Delta T Cells Regulate Wound Myeloid CELL Activity After Burn. Shock 2014, 42, 133–141. 24. Cruz; Diamond; Russell; et al. Human Αβ and Γδ T Cells in Skin Immunity and Disease. Front. Immunol. 2018, 9, 1–13. 25. Menter; Kopetz; Hawk; et al. Platelet “First Responders” in Wound Response, Cancer, and Metastasis. Cancer Metastasis Rev. 2017, 36, 199–213. 26. Widgerow; King; Tocco-Tussardi; et al. The Burn Wound Exudate - An under-Utilized Resource. Burns 2015, 41, 11–17. 27. Turner; Nedjai; Hurst; et al. Cytokines and Chemokines: At the Crossroads of Cell Signalling and Inflammatory Disease. Biochim. Biophys. Acta - Mol. Cell Res. 2014, 1843, 2563–2582. 28. Dinarello; Novick; Kim; et al. Interleukin-18 and IL-18 Binding Protein. Front. Immunol. 2013, 4, 1–10. 5

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