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首页> 外文期刊>Pediatric Research >Long-Term Functional and Protective Actions of Preconditioning With Hypoxia, Cobalt Chloride, and Desferrioxamine Against Hypoxic-Ischemic Injury in Neonatal Rats
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Long-Term Functional and Protective Actions of Preconditioning With Hypoxia, Cobalt Chloride, and Desferrioxamine Against Hypoxic-Ischemic Injury in Neonatal Rats

机译:缺氧,氯化钴和去铁胺预处理对新生大鼠缺氧缺血性损伤的长期功能和保护作用

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Preconditioning with hypoxia and hypoxia-mimetic compounds cobalt chloride (CoCl2) and desferrioxamine (DFX) protects against hypoxic-ischemic (HI) injury in neonatal rat brain. We examined long-term functional and protective actions of preconditioning induced by hypoxia, CoCl2 and DFX in a neonatal rat model of HI. Postnatal day six rat pups were exposed to preconditioning with hypoxia (8% oxygen) or injections of CoCl2, DFX or saline vehicle and 24 h later rats underwent HI or sham surgery. Behavioral tests were performed and at the conclusion of experiments, brains removed for morphologic analyses. HI resulted in a large unilateral lesion in the ipsilateral hemisphere compared with sham control rats. All preconditioning treatments significantly reduced the total lesion volume. Behavioral deficits were observed in HI rats compared with sham controls. The reduction in forelimb grasping strength in HI rats was attenuated by preconditioning with hypoxia, CoCl2 and DFX. HI increased the number of foot faults in a grid-walking test and resulted in forelimb asymmetry in the cylinder test. Only preconditioning with hypoxia reversed all three functional deficits after HI. These findings indicate that preconditioning, especially when induced by hypoxia, has the potential to minimize the morphologic and functional effects of neonatal HI injury.Abbreviations: CoCl2, cobalt chloride; DFX, desferrioxamine; HIF-1, hypoxia-inducible factor-1; HI, hypoxia-ischemia; HP, hypoxic preconditioning; p, postnatal day
机译:用缺氧和模拟缺氧化合物进行的预处理会导致氯化钴(CoCl2)和去铁胺(DFX)免受新生大鼠脑的缺氧缺血(HI)损伤。我们检查了缺氧,CoCl2和DFX在HI新生大鼠模型中引起的预处理的长期功能和保护作用。出生后的第6天,幼鼠接受低氧(8%氧气)预处理或注射CoCl2,DFX或生理盐水媒介,并且24小时后大鼠进行HI或假手术。进行了行为测试,并在实验结束时取出了大脑进行形态分析。与假手术对照组相比,HI导致同侧半球较大的单侧病变。所有预处理治疗均显着减少了总病变体积。与假对照组相比,在HI大鼠中观察到行为缺陷。缺氧,CoCl2和DFX预处理可减轻HI大鼠前臂抓地力的降低。 HI在网格行走测试中增加了脚部错误的数量,并在圆柱体测试中导致前肢不对称。仅有缺氧预处理可以在HI后逆转所有三个功能缺陷。这些发现表明,预处理,特别是由缺氧引起的预处理,有可能使新生儿HI损伤的形态和功能影响最小化。 DFX,去铁胺; HIF-1,缺氧诱导因子-1; HI,缺氧缺血; HP,低氧预处理; p,产后一天

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