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新生大鼠高压氧与缺氧性脑预处理的比较

A comparison of hyperbaric oxygen versus hypoxic cerebral preconditioning in neonatal rats.

作者信息

Freiberger John J, Suliman Hagir B, Sheng Huaxin, McAdoo Jessica, Piantadosi Claude A, Warner David S

机构信息

Department of Anesthesiology, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

Brain Res. 2006 Feb 23;1075(1):213-22. doi: 10.1016/j.brainres.2005.12.088. Epub 2006 Feb 3.

Abstract

The potency of hyperbaric preconditioning (HBO-PC) is uncertain compared to well-validated ischemic or hypoxic models and no studies have directly compared HBO-PC to hypoxic preconditioning (HPC). We subjected rat pups to unilateral carotid cauterization followed by 90 min (min) of hypoxia using 8% O(2). Three HBO-PC regimes (maximum 2.5 atmospheres for 150 min) were compared to HPC (150 min of 8% O(2)) for changes in mortality and brain weight. Preconditioning-induced oxidative stress was assessed using aconitase activity and manganese superoxide dismutase (MnSOD) transcript levels. Initial brain weight data revealed a large coefficient of variation and compelled an examination of the temperature sensitivity of the model that revealed a narrow optimal range of 35 to 37 degrees C of variability in brain injury and mortality. With rigorous temperature control, high dose HBO-PC and HPC showed comparable anatomic (mean hemispheric weight decrease: control 42%, HPC 25% (P=0.01), HBO-PC 26% (P=0.01) and mortality protection (control 14.7%, HPC 5.9% HBO-PC 5.7%, P=0.001). High dose HBO-PC, but not HPC, suppressed aconitase activity by 65% at 24 h after the preconditioning stimulus (P=0.001). In contrast, MnSOD mRNA increased 2.5-fold at 24 h after HPC (P=0.007) but not after high dose HBO-PC. Thus, when temperature variability is eliminated, HBO-PC and HPC elicit similar preconditioning efficacy in neonatal brain but invoke different defenses against oxidative stress.

摘要

与经过充分验证的缺血或缺氧模型相比,高压预处理(HBO-PC)的效力尚不确定,且尚无研究直接将HBO-PC与缺氧预处理(HPC)进行比较。我们对新生大鼠进行单侧颈动脉烧灼,然后使用8%氧气进行90分钟的缺氧处理。将三种HBO-PC方案(最高2.5个大气压,持续150分钟)与HPC(8%氧气,持续150分钟)进行比较,观察死亡率和脑重量的变化。使用乌头酸酶活性和锰超氧化物歧化酶(MnSOD)转录水平评估预处理诱导的氧化应激。最初的脑重量数据显示变异系数很大,因此有必要检查该模型的温度敏感性,结果发现脑损伤和死亡率变化的最佳温度范围很窄,为35至37摄氏度。通过严格控制温度,高剂量HBO-PC和HPC显示出相当的解剖学保护作用(平均半球重量减轻:对照组42%,HPC组25%(P=0.01),HBO-PC组26%(P=0.01))以及死亡率保护作用(对照组14.7%,HPC组5.9%,HBO-PC组5.7%,P=0.001)。高剂量HBO-PC而非HPC在预处理刺激后24小时使乌头酸酶活性抑制了65%(P=0.0

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