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烧伤中的氧化应激与DNA损伤 被引量:1

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作者 戴海华
出处 《中华烧伤杂志》 CAS CSCD 2001年第5期315-316,共2页 Chinese Journal of Burns
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  • 1Anderson D,Mutat Res,1994年,307卷,261页

同被引文献8

  • 1卫伟,夏照帆.烧伤后的氧化应激研究进展[J].中华外科杂志,2005,43(3):192-194. 被引量:11
  • 2Morita N, Traber MG, Enkhbaatar P, et al. Aerosolized alpha-to- copherol ameliorates acute lung injury following combined burn and smoke inhalation injury in sheep. Shock, 2006,25(3) : 277-282.
  • 3Zhang C, Sheng ZY, Hu S, et al. The role of oxygen-free radical in the apoptosis of enterocytes in scalded rats after delayed resuscitation. J Trauma, 2004,56 ( 3 ) :611-617.
  • 4Tan DX, Manchester LC, Terron MP, et al. One molecule, many derivatives: a never-ending interaction of melatonin with reactive oxygen and nitrogen species? J Pineal Res, 2007,42( 1 ) :28-42.
  • 5Zang Q, Maass DL, White J, et al. Cardiac mitochondrial damage and loss of ROS defense after burn injury: the beneficial effects of antioxidant therapy. J Appl Physiol, 2007 ,102( 1 ) :103-112.
  • 6Ahavilla D, Galeano M, Bitto A, et al. Lipid peroxidation inhibition by raxofelast improves angiogenesis and wound healing in experimental burn wounds. Shock, 2005,24( 1 ) :85-91.
  • 7Tan DX, Reiter RJ, Manchester LC, et al. Chemical and physical properties and potential mechanisms: melatonin as a broad spectrum antioxidant and free radical scavenger. Curr Top Med Chem, 2002,2(2) :181-197.
  • 8Maldonado MD, Murillo-Cabezas F, Calvo JR, et al. Melatonin as pharmacologic support in burn patients: a proposed solution to thermal injury-related lymphocytopenia and oxidative damage. Crit Care Med, 2007,35 (4) :1177-1185.

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