Patrick Mulder

95 Review Inflammatory Mediators in Animal Burn Models 289. Souza; De Azevedo; Possebon; et al. Heterogeneity of Mast Cells and Expression of Annexin A1 Protein in a Second Degree Burn Model with Silver Sulfadiazine Treatment. PLoS One 2017, 12, 1–17. 290. Steinstraesser; Burkhard; Fan; et al. Burn Wounds Infected with Pseudomonas Aeruginosa Triggers Weight Loss in Rats. BMC Surg. 2005, 5, 1–7. 291. Stromps; Fuchs; Demir; et al. Intraalveolar TNF-Alpha in Combined Burn and Inhalation Injury Compared with Intraalveolar Interleukin-6. J Burn Care Res 2015, 36, e55-61. 292. Sulaiman; Alyileili; Raghavankutty; et al. Sulfated Polysaccharide Ascophyllan from Padina Tetrastromatica Enhances Healing of Burn Wounds by Ameliorating Inflammatory Responses and Oxidative Damage. Mol. Biol. Rep. 2020, 47, 8701–8710. 293. Summer; Romero-Sandoval; Bogen; et al. Proinflammatory Cytokines Mediating Burn-Injury Pain. Pain 2008, 135, 98–107. 294. Sun; Sun; Sun; et al. CO Liberated from CORM-2 Modulates the Inflammatory Response in the Liver of Thermally Injured Mice. World J. Gastroenterol. 2008, 14, 547–553. 295. Sun; Wu; Gao; et al. Effect of 200 MEq/L Na+ Hypertonic Saline Resuscitation on Systemic Inflammatory Response and Oxidative Stress in Severely Burned Rats. J. Surg. Res. 2013, 185, 477–484. 296. Bauzá; Miller; Kaseje; et al. Injury-Induced Changes in Liver Specific Transcription Factors HNF-1α and HNF-4α. J. Surg. Res. 2012, 175, 298–304. 297. Sun; Han; Gao; et al. 200 MM Hypertonic Saline Resuscitation Attenuates Intestinal Injury and Inhibits P38 Signaling in Rats after Severe Burn Trauma. Burns 2017, 43, 1693–1701. 298. Svensson; Wetterqvist. Histamine Metabolism and Gastric Secretion in Experimental Burns in the Rat. Br J Exp Pathol 1973, 54, 665–672. 299. Takahata; Ohira; Nishiguchi; et al. Effect of Enteral Nutrition of Monoacetoacetin on Bacterial Translocation in Burned Rats. JPEN J Parenter Enter. Nutr 2004, 28, 301–307. 300. Toklu; Şener; Jahovic; et al. Beta-Glucan Protects against Burn-Induced Oxidative Organ Damage in Rats. Int. Immunopharmacol. 2006, 6, 156–169. 301. Toklu; Tunali-Akbay; Erkanli; et al. Silymarin, the Antioxidant Component of Silybum Marianum, Protects against Burn-Induced Oxidative Skin Injury. Burns 2007, 33, 908–916. 302. 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. 303. Tschöp; Martignoni; Reid; et al. Differential Immunological Phenotypes Are Exhibited after Scald and Flame Burns. Shock 2009, 31, 157–163. 304. Utsunomiya; Kobayashi; Ito; et al. Glycyrrhizin Restores the Impaired IL-12 Production in Thermally Injured Mice. Cytokine 2001, 14, 49–55. 305. Valvis; Waithman; Wood; et al. The Immune Response to Skin Trauma Is Dependent on the Etiology of Injury in a Mouse Model of Burn and Excision. J Invest Dermatol 2015, 135, 2119–2128. 306. Vinaik; Abdullahi; Barayan; et al. NLRP3 Inflammasome Activity Is Required for Wound Healing after Burns. Transl. Res. 2020, 217, 47–60. 307. Abdallah Hajj Hussein; Dali Balta; Jurjus; et al. Rat Model of Burn Wound Healing: Effect of Botox. J Biol Regul Homeost Agents 2012, 26, 389–400. 308. Bayir; Un; Ugan; et al. The Effects of Beeswax, Olive Oil and Butter Impregnated Bandage on Burn Wound Healing. Burns 2019, 45, 1410–1417. 309. Wan; Yu; Niu; et al. Inhibition of Bruton’s Tyrosine Kinase Protects Against Burn Sepsis-Induced Intestinal Injury. Front. Med. 2022, 9, 1–11. 310. Wang; Zhao; Li; et al. Time-Course Changes in Nuclear Translocation of Hepatic Glucocorticoid Receptor in Rats after Burn Trauma and Its Pathophysiological Significance. Shock 2008, 30, 747–752. 311. Wang; Liu; Hu; et al. Protective Effect of Glucose-Insulin-Potassium (GIK) on Intestinal Tissues after Severe Burn in Experimental Rats. Burns 2012, 38, 846–854. 312. Wang; Zhao; Zhao; et al. Effect of Chinese Medical Herbs-Burn Liniment on Deep Second Degree Burn in Rats. African J. Tradit. Complement. Altern. Med. 2014, 11, 92–104. 313. Wang; Yu; Liu; et al. Hydrogen-Rich Saline Resuscitation Alleviates Inflammation Induced by Severe Burn with Delayed Resuscitation. Burns 2015, 41, 379–385. 314. Wang; Chang; Tzeng; et al. Enhanced Wound-Healing Performance of a Phyto-Polysaccharide-Enriched Dressing - a Preclinical Small and Large Animal Study. Int Wound J 2017, 14, 1359–1369. 315. Wang; Fang; Xiao. Correlation of the Expression of Inflammatory Factors with Expression of ApoptosisRelated Genes Bax and Bcl-2, in Burned Rats. Exp Ther Med 2019, 17, 1790–1796. 3

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