Patrick Mulder

92 Chapter 3 211. Liu; Han; Tang; et al. Changes of Mineralogical Properties and Biological Activities of Gypsum and Its Calcined Products with Different Phase Structures. Evidence-based Complement. Altern. Med. 2021, 2021, 6676797. 212. Long; Xu; Luo; et al. Artemisinin Protects Mice against Burn Sepsis through Inhibiting NLRP3 Inflammasome Activation. Am. J. Emerg. Med. 2016, 34, 772–777. 213. Luo; Hu; Zhou; et al. The Effects of Ulinastatin on Systemic Inflammation, Visceral Vasopermeability and Tissue Water Content in Rats with Scald Injury. Burns 2013, 39, 916–922. 214. Luo; Long; Xu; et al. Apelin Attenuates Postburn Sepsis via a Phosphatidylinositol 3-Kinase/Protein Kinase B Dependent Mechanism: A Randomized Animal Study. Int J Surg 2015, 21, 22–27. 215. Luo; Long; Xu; et al. Metallothionein Ameliorates Burn Sepsis Partly via Activation of Akt Signaling Pathway in Mice: A Randomized Animal Study. World J Emerg Surg 2015, 10, 53. 216. Lyuksutova; Murphey; Toliver-Kinsky; et al. Glucan Phosphate Treatment Attenuates Burn-Induced Inflammation and Improves Resistance to Pseudomonas Aeruginosa Burn Wound Infection. Shock 2005, 23, 224–232. 217. Ma; Zhang. Neutralization Effects of Egg Yolk Immunoglobulin (IgY)and Fab’ Fragment against Lipopolysaccharide (LPS) Inburned Mice Model. African J. Biotechnol. 2011, 10, 5677–5682. 218. Marano; Moldawer; Fong; et al. Cachectin/TNF Production in Experimental Burns and Pseudomonas Infection. Arch. Surg. 1988, 123, 1383–1388. 219. Alyoussef; El-Gogary; Nasr; et al. The Beneficial Activity of Curcumin and Resveratrol Loaded in Nanoemulgel for Healing of Burn-Induced Wounds. J. Drug Deliv. Sci. Technol. 2021, 62, 102360. 220. Markley; Horakova; Smallman; et al. The Role Of Histamine In Burn, Tourniquet And Endotoxin Shock In Mice. Eur J Pharmacol 1975, 33, 255–265. 221. Marshall; Brooks; Hiyama; et al. Hepatic Apoptosis Postburn Is Mediated by C-Jun N-Terminal Kinase 2. Shock 2013, 39, 183–188. 222. Mascarenhas; Ravikumar; Amento. Covalent Modification of Nephrilin Peptide with Valproic Acid Increases Its Efficacy as a Therapeutic in Burn Trauma. Burn. Open 2020, 4, 85–89. 223. Masuda; Kinoshita; Ono; et al. Diverse Enhancement of Superoxide Production from Kupffer Cells and Neutrophils after Burn Injury or Septicemia. J. Clin. Biochem. Nutr. 2006, 38, 25–32. 224. Matsuo; Kobayashi; Herndon; et al. Interleukin-12 Protects Thermally Injured Mice from Herpes Simplex Virus Type 1 Infection. J Leukoc Biol 1996, 59, 623–630. 225. Mendoza; Neely; Charles; et al. Radiation Combined with Thermal Injury Induces Immature Myeloid Cells. Shock 2012, 38, 532–542. 226. Messingham; Fontanilla; Colantoni; et al. Cellular Immunity after Ethanol Exposure and Burn Injury: Dose and Time Dependence. Alcohol 2000, 22, 35–44. 227. Messingham; Heinrich; Schilling; et al. Interleukin-4 Treatment Restores Cellular Immunity after Ethanol Exposure and Burn Injury. Alcohol Clin Exp Res 2002, 26, 519–526. 228. Mileski; Rothlien; Lipsky; et al. Interference with the Function of Leukocyte Adhesion Molecules by Monoclonal Antibodies: A New Approach to Burn Injury. Eur J Pediatr Surg 1994, 4, 225–230. 229. Miyazaki; Kinoshita; Ono; et al. Augmented Bacterial Elimination by Kupffer Cells after IL-18 Pretreatment via IFN-γ Produced from NK Cells in Burn-Injured Mice. Burns 2011, 37, 1208–1215. 230. Ami; Kinoshita; Yamauchi; et al. IFN-γ Production from Liver Mononuclear Cells of Mice in Burn Injury As Well As in Postburn Bacterial Infection Models and the Therapeutic Effect of IL-18. J. Immunol. 2002, 169, 4437–4442. 231. Mohammed; Gatea; Abu-Raghif; et al. Pharmacological Effects of Topical Dapsone Gel in ExperimentallyInduced Thermal Injury in Rabbits. Indian J. Forensic Med. Toxicol. 2021, 15, 1327–1335. 232. Mohammed; Qureshi; Ali; et al. Bio-Evaluation of the Wound Healing Activity of Artemisia Judaica L. as Part of the Plant’s Use in Traditional Medicine; Phytochemical, Antioxidant, Anti-Inflammatory, and Antibiofilm Properties of the Plant’s Essential Oils. Antioxidants 2022, 11, 332. 233. Møller-Kristensen; Hamblin; Thiel; et al. Burn Injury Reveals Altered Phenotype in Mannan-Binding LectinDeficient Mice. J. Invest. Dermatol. 2007, 127, 1524–1531. 234. Muthu; He; Szilagyi; et al. Propranolol Restores the Tumor Necrosis Factor-α Response of Circulating Inflammatory Monocytes and Granulocytes after Burn Injury and Sepsis. J. Burn Care Res. 2009, 30, 8–18. 235. Nakae; Inaba. Expression of Heme Oxygenase-1 in the Lung and Liver Tissues in a Rat Model of Burns. Burns 2002, 28, 305–309.

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