Patrick Mulder

54 Chapter 2 262. Jabeen; Clough; Thomlinson; et al. Partial Thickness Wound: Does Mechanism of Injury Influence Healing? Burns 2019, 45, 531–542. 263. Jurjus; Hourani; Daouk; et al. Effect of Denervation on Burn Wound Healing. Ann. Burns Fire Disasters 2018, 31, 278–290. 264. Jurjus; Atiyeh; Abdallah; et al. Pharmacological Modulation of Wound Healing in Experimental Burns. Burns 2007, 33, 892–907. 265. Katakura; Miyazaki; Kobayashi; et al. CCL17 and IL-10 as Effectors That Enable Alternatively Activated Macrophages to Inhibit the Generation of Classically Activated Macrophages. J Immunol 2004, 172, 1407–1413. 266. Korkmaz; Ulrich; Van Wieringen; et al. The Local and Systemic Inflammatory Response in a Pig Burn Wound Model With a Pivotal Role for Complement. J. Burn Care Res. 2017, 38, e796–e806. 267. Lederer; Brownstein; Lopez; et al. Comparison of Longitudinal Leukocyte Gene Expression after Burn Injury or Trauma-Hemorrhage in Mice. Physiol Genomics 2008, 32, 299–310. 268. Li; Xu; Duan. TLR2 Affects CD86 Expression and Inflammatory Response in Burn Injury Mice through Regulation of P38. Biochem Cell Biol 2017, 95, 549–555. 269. Liu; Xiao; Ji; et al. Camellia Cake Extracts Reduce Burn Injury through Suppressing Inflammatory Responses and Enhancing Collagen Synthesis. Food Nutr. Res. 2020, 64, 1–15. 270. Liu; Yao; Yu; et al. Astragalus Polysaccharides Attenuate Postburn Sepsis via Inhibiting Negative Immunoregulation of CD4+ CD25(High) T Cells. PLoS One 2011, 6, e19811. 271. Madibally; Solomon; Mitchell; et al. Influence of Insulin Therapy on Burn Wound Healing in Rats. J Surg Res 2003, 109, 92–100. 272. Mikhal’chik; Ivanova; Anurov; et al. Wound-Healing Effect of Papaya-Based Preparation in Experimental Thermal Trauma. Bull. Exp. Biol. Med. 2004, 137, 560–562. 273. Newsome; Eurenius. Suppression of Granulocyte and Platelet Production by Pseudomonas Burn Wound Infection. Surg Gynecol Obs. 1973, 136, 375–379. 274. O’Leary; Tajima; Delisle; et al. Injury-Induced GR-1 + Macrophage Expansion and Activation Occurs Independently of CD4 T-Cell Influence. Shock 2011, 36, 162–169. 275. Oka; Ohta; Kanazawa; et al. Interaction between Macrophages and Fibroblasts during Wound Healing of Burn Injuries in Rats. Kurume Med. J. 2015, 62, 59–66. 276. Organ; Antonacci; Chiao; et al. Changes in Lymphocyte Number and Phenotype in Seven Lymphoid Compartments after Thermal Injury. Ann Surg 1989, 210, 78–89. 277. 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. 278. Rani; Zhang; Scherer; et al. Activated Skin Gammadelta T-Cells Regulate T-Cell Infiltration of the Wound Site after Burn. Innate Immun 2015, 21, 140–150. 279. Rani; Schwacha. The Composition of T-Cell Subsets Are Altered in the Burn Wound Early after Injury. PLoS One 2017, 12, e0179015. 280. Santos; Arroyo; Garciía; et al. Role of Mast Cells in the Pathogenesis of Postburn Inflammatory Response: Reactive Oxygen Species as Mast Cell Stimulators. Burns 2000, 26, 145–147. 281. Shen; Yao; Lee; et al. Interferon-Gamma Inhibits Healing Post Scald Burn Injury. Wound Repair Regen 2012, 20, 580–591. 282. Smith; Goldman. Selective Effects of Thermal Injury on Mouse Peritoneal Macrophages. Infect. Immun. 1972, 5, 938–941. 283. Spies; Dasu; Svrakic; et al. Gene Expression Analysis in Burn Wounds of Rats. Am. J. Physiol. - Regul. Integr. Comp. Physiol. 2002, 283, 918–930. 284. Takahashi; Tsuda; Kobayashi; et al. Increased Norepinephrine Production Associated with Burn Injuries Results in CCL2 Production and Type 2 T Cell Generation. Burns 2004, 30, 317–321. 285. Torres; Mendoza; Vicci; et al. Assessment of Local and Systemic Inflammatory Parameters of Peripheral Burn in an Animal Model. [Spanish]. Rev. Peru. Med. Exp. Salud Publica 2016, 33, 713–718. 286. Tschöp; Martignoni; Reid; et al. Differential Immunological Phenotypes Are Exhibited after Scald and Flame Burns. Shock 2009, 31, 157–163. 287. 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. 288. Waymack; Guzman; Burleson; et al. Effect of Prostaglandin E in Multiple Experimental Models. VI. Effect on T-Cell Subsets. Prostaglandins 1989, 38, 345–353.

RkJQdWJsaXNoZXIy MTk4NDMw