Patrick Mulder

87 Review Inflammatory Mediators in Animal Burn Models 85. Abali; Cabioglu; Bayraktar; et al. Efficacy of Acupuncture on Pain Mechanisms, Inflammatory Responses, and Wound Healing in the Acute Phase of Major Burns: An Experimental Study on Rats. J. Burn Care Res. 2022, 43, 389–398. 86. Ahmad; Szabo. Both the H2S Biosynthesis Inhibitor Aminooxyacetic Acid and the Mitochondrially Targeted H2S Donor AP39 Exert Protective Effects in a Mouse Model of Burn Injury. Pharmacol Res 2016, 113, 348–355. 87. Faunce; Garner; Llanas; et al. Effect of Acute Ethanol Exposure on the Dermal Inflammatory Response after Burn Injury. Alcohol. Clin. Exp. Res. 2003, 27, 1199–1206. 88. Fear; Poh; Valvis; et al. Timing of Excision after a Non-Severe Burn Has a Significant Impact on the Subsequent Immune Response in a Murine Model. Burns 2016, 42, 815–824. 89. Finnerty; Przkora; Herndon; et al. Cytokine Expression Profile over Time in Burned Mice. Cytokine 2009, 45, 20–25. 90. Fontanilla; Faunce; Gregory; et al. Anti-Interleukin-6 Antibody Treatment Restores Cell-Mediated Immune Function in Mice with Acute Ethanol Exposure before Burn Trauma. Alcohol. Clin. Exp. Res. 2000, 24, 1392–1399. 91. Friedl; Till; Trentz; et al. Roles of Histamine, Complement and Xanthine Oxidase in Thermal Injury of Skin. Am J Pathol 1989, 135, 203–217. 92. Friston; Junttila; Lemes; et al. Leptin and Fractalkine: Novel Subcutaneous Cytokines in Burn Injury. Dis. Model. Mech. 2020, 13, 1–13. 93. Fu; Guo; Xiong; et al. Early Anticoagulation Therapy for Severe Burns Complicated by Inhalation Injury in a Rabbit Model. Mol Med Rep 2017, 16, 7375–7381. 94. Fuchs; Demir; Reuber; et al. Intra-Alveolar IL-6 Levels Following Burn and Inhalation Injury. Burns 2009, 35, 840–844. 95. Fujimi; MacConmara; Maung; et al. Platelet Depletion in Mice Increases Mortality after Thermal Injury. Blood 2006, 107, 4399–4406. 96. Gao; Chen; Xi; et al. Long Noncoding RNA MALAT1 Regulates Sepsis in Patients with Burns by Modulating MiR-214 with TLR5. Mol. Med. Rep. 2019, 49, 3756–3766. 97. Ahmad; Druzhyna; Szabo. Cystathionine-Gamma-Lyase Deficient Mice Are Protected against the Development of Multiorgan Failure and Exhibit Reduced Inflammatory Response during Burn. Burns 2017, 43, 1021–1033. 98. Gardner; Noel; Nikolaidis; et al. G-CSF Drives a Posttraumatic Immune Program That Protects the Host from Infection. J. Immunol. 2014, 192, 2405–2417. 99. Gauglitz; Song; Herndon; et al. Characterization of the Inflammatory Response during Acute and PostAcute Phases after Severe Burn. Shock 2008, 30, 503–507. 100. Gholipourmalekabadi; Seifalian; Urbanska; et al. 3D Protein-Based Bilayer Artificial Skin for the Guided Scarless Healing of Third-Degree Burn Wounds in Vivo. Biomacromolecules 2018, 19, 2409–2422. 101. Gomez; Plackett; Kovacs; et al. Aging and Estrogen: Modulation of Inflammatory Responses after Injury. Exp Gerontol 2007, 42, 451–456. 102. Gómez; McIntyre; Gurney; et al. Enteral Resuscitation with Oral Rehydration Solution to Reduce Acute Kidney Injury in Burn Victims: Evidence from a Porcine Model. PLoS One 2018, 13, 1–16. 103. Gregory; Duffner; Faunce; et al. Estrogen Mediates the Sex Difference in Post-Burn Immunosuppression. J Endocrinol 2000, 164, 129–138. 104. Gregory; Faunce; Duffner; et al. Gender Difference in Cell-Mediated Immunity after Thermal Injury Is Mediated, in Part, by Elevated Levels of Interleukin-6. J. Leukoc. Biol. 2000, 67, 319–326. 105. Grimes; Doyle; Miller; et al. Intraluminal Flagellin Differentially Contributes to Gut Dysbiosis and Systemic Inflammation Following Burn Injury. PLoS One 2016, 11, 1–22. 106. Groger; Piatkowski; Grieb; et al. The Mobilisation of Mononuclear Cells and Endothelial Progenitor Cells after Burn Injury in a Porcine Model. Burns 2010, 36, 545–551. 107. Guo; Bai; Cai; et al. The Protective Effect of Different Enteral Nutrition Combined with Growth Hormone on Intestinal Mucosal Damage of Scalded Rats. Burns 2010, 36, 1283–1288. 108. Ahmad; Olah; Herndon; et al. The Clinically Used PARP Inhibitor Olaparib Improves Organ Function, Suppresses Inflammatory Responses and Accelerates Wound Healing in a Murine Model of Third-Degree Burn Injury. Br. J. Pharmacol. 2018, 175, 232–245. 109. Guo; Jin; Fang; et al. Beneficial Effects of Hydrogen-Rich Saline on Early Burn-Wound Progression in Rats. PLoS One 2015, 10, 1–18. 3

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