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抗氧化剂对兔膀胱体外缺血/再灌注反应的影响。

The effect of antioxidants on the response of the rabbit urinary bladder to in vitro ischemia/reperfusion.

机构信息

Albany College of Pharmacy and Health Sciences, 106 New Scotland Avenue, Albany, NY 12208, USA.

出版信息

Mol Cell Biochem. 2011 Sep;355(1-2):65-73. doi: 10.1007/s11010-011-0839-9. Epub 2011 May 4.

Abstract

To evaluate the protective effects of two naturally occurring antioxidants, α-Lipoic acid and coenzyme Q10 on the response to in vitro ischemia of the rabbit urinary bladder. We measured free fatty acid (FFA) content, phospholipid (PL) content, malondialdehyde (MDA) levels, and phospholipase A(2) activity (PLA) of subcellular compartments. Twenty New Zealand White male rabbits were separated into four groups of five rabbits each. The in vitro whole bladders from Groups 1 and 2 received a 3 h incubation under normal oxygenated physiological conditions. The bladders were stimulated by field stimulation at 1 and 3 h. The bladders from groups 3 and 4 underwent 1 h incubation time under normal oxygenated physiological conditions. After 1 h, the bladders were stimulated with field stimulation. After a maximal pressure response was recorded, the stimulation was turned off and the bath medium changed to one equilibrated with 95% nitrogen, 5% oxygen without glucose (ischemic medium) and incubated for 1 h with field stimulations occurring at 5 min intervals during this time. At the end of this hour of ischemia with repetitive stimulation, the bath was changed to an oxygenated medium with glucose for a 1-h reperfusion period after which the stimulation was repeated. The rabbits from groups 2 and 4 received α-Lipoic acid (10 mg/kg/day) + Coenzyme Q10 (3 mg/kg/day) by gavage for 4 weeks before the experiment. At the end of the experimental period, each bladder was opened longitudinally, and the muscle and mucosa separated by blunt dissection, frozen under liquid nitrogen, and stored at -80°C for biochemical analyses. Each tissue was fractionated by differential centrifugation into nuclear, mitochondrial, synaptosomal, and cytosol (supernatant) components. PL, FFA, MDA, and PLA were analyzed using standard biochemical techniques. Post-ischemic contractility only returned to 30% of control of the untreated group. However, post-ischemic contractility of the treated group returned to approximately 70% of control. PL loss in the muscle mitochondria and synaptosomes was prevented by antioxidant treatment, while the mucosal layer showed a significant drop in PL with antioxidants treatment. Administration of CoQ + LA significantly decreased MDA levels in both control and ischemic tissues in both the muscle and mucosal bladder layers, especially substantial in the microsomal and mitochondrial components. Treatment had variable effects on PLA(2) activity. Treatment of bladder dysfunction with antioxidants daily can be beneficial in man to prevent or delay the onset of progressive loss of bladder function especially that due to ischemic damage to mitochondrial and microsomal lipids. CoQ10 + LA can provide similar protection of the bladder muscle and mucosa against lipid oxidative stress as they have been shown to protect against protein oxidative damage.

摘要

为了评估两种天然抗氧化剂α-硫辛酸和辅酶 Q10 对兔膀胱体外缺血反应的保护作用。我们测量了游离脂肪酸 (FFA) 含量、磷脂 (PL) 含量、丙二醛 (MDA) 水平和亚细胞区室的磷脂酶 A(2) 活性 (PLA)。20 只新西兰白兔被分为四组,每组 5 只。第 1 组和第 2 组的体外全膀胱在正常氧合生理条件下孵育 3 小时。膀胱在 1 小时和 3 小时接受场刺激。第 3 组和第 4 组的膀胱在正常氧合生理条件下孵育 1 小时。1 小时后,用场刺激膀胱。记录最大压力反应后,关闭刺激,将浴液更换为不含葡萄糖的 95%氮气、5%氧气的平衡介质(缺血介质),并在此期间每隔 5 分钟进行一次场刺激,孵育 1 小时。在这 1 小时的缺血性重复刺激结束时,将浴液更换为含葡萄糖的氧合介质,进行 1 小时再灌注期,然后重复刺激。第 2 组和第 4 组的兔子在实验前 4 周每天通过灌胃接受α-硫辛酸 (10mg/kg/天) + 辅酶 Q10 (3mg/kg/天)。在实验结束时,每个膀胱纵向切开,用钝性解剖将肌肉和黏膜分开,在液氮下冷冻,并储存在-80°C 下进行生化分析。用差速离心法将每种组织分为核、线粒体、突触体和胞浆(上清液)成分。使用标准生化技术分析 PL、FFA、MDA 和 PLA。未处理组的缺血后收缩性仅恢复到对照的 30%。然而,经处理组的缺血后收缩性恢复到对照的约 70%。抗氧化剂治疗可防止肌肉线粒体和突触体中 PL 的丢失,而黏膜层在抗氧化剂治疗后 PL 明显下降。辅酶 Q10 + LA 的给药可显著降低肌肉和黏膜膀胱层中对照和缺血组织中的 MDA 水平,尤其是在微粒体和线粒体成分中。治疗对 PLA(2) 活性有不同的影响。每天用抗氧化剂治疗膀胱功能障碍在人类中可能是有益的,可预防或延迟因线粒体和微粒体脂质缺血性损伤引起的膀胱功能逐渐丧失。辅酶 Q10 + LA 可以为膀胱肌肉和黏膜提供类似的脂质氧化应激保护,因为它们已被证明可以防止蛋白质氧化损伤。

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