张志峰1 刘绍明2△ 修彬华2 田刚2 张德峰2.钴- 原卟啉对大鼠脑损伤区域血红素氧合酶-1
及损伤周边区脑含水量的影响[J].,2012,12(23):4429-4432 |
钴- 原卟啉对大鼠脑损伤区域血红素氧合酶-1
及损伤周边区脑含水量的影响 |
An Effect of Coblat Protoporphyrin on Heme Oxygenase-1 of Brain InjuriesZone and Brain Contents of Injury AmbitusZone in Rats |
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DOI: |
中文关键词: 脑损伤 血红素氧合酶-1 钴- 原卟啉 脑含水量 |
英文关键词: Brain injuries Heme oxygenase-1 Cobalt protoporphyrin Brain water content |
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中文摘要: |
目的:研究探讨钴- 原卟啉对大鼠脑损伤的保护作用。方法:用钴- 原卟啉灌(50mg/kg)胃处理后,建立液压脑损伤模型,采用
免疫组织化学SP 三步法检测大鼠脑损伤区域血红素氧合酶-1(HO-1)的表达情况,用干湿重法测定损伤周边区脑含水量的变化。
结果:正常组、假手术组大鼠HO-1 均无表达;模型组脑损伤区域的HO-1 阳性细胞数为(3.45±047);实验组12h、24h、3d 和7d
HO-1 的阳性细胞数分别为:(10.9±1.35)、(10.62±1.88)、(12.4±1.57)和(10.99±2.42)。正常组、假手术组脑损伤周边区脑含水
量分别为(78.7±0.4)%和(78.6±0.7)%;模型组脑含水量(89.3±0.3)%;实验组12h、24h、3d 和7d 脑含水量分别为:(83.1±
0.3)%、(83.6±0.6)%、(83.9±0.4)%和(83.2±0.3)%。结论:钴- 原卟啉(CoPP)能够诱导大鼠脑损伤区域HO-1 的表达,减轻脑损
伤周边区域的水肿程度,故钴- 原卟啉对大鼠脑损伤具有保护作用。 |
英文摘要: |
Objective: To investigate the protective effect of cobalt protoporphyrin on brain injuries in Rats. Methods: We built
hydraumatic brain injuries model after intragastric administration of 50 mg/kg cobalt protoporphyrin. We checked out expression of heme
oxygenase-1 of brain injuries zone in Rats with immunohistochemistry SP three-step method, and detected changes of brain water content
of brain injury ambitus zone with dry-wet weight regulation. Results: Normal group and sham operation group had no expression of
HO-1. HO-1 positive cell count was (3.45±047) in model group, and (10.9±1.35), (10.62±1.88), (12.4±1.57) and (10.99±2.42) at 12
h, 24 h, 3 d and 7 d in experimental group respectively. Brain water content were respectively (78.7±0.4)% and (78.6±0.7)% in normal
group and sham operation group, and was (89.3±0.3)% in model group, and respectively(83.1±0.3)%,(83.6±0.6)%,(83.9±0.4)% and
(83.2±0.3)% in experimental group at 12 h, 24 h, 3 d and 7 d. Conclusions: Cobalt protoporphyrin can induce the expression of HO-1 of
brain injuries zone in rats, and alleviate brain edema of injury ambitus zone. Thus, cobalt protoporphyrin plays a protective role in
hydraumatic brain injuries in rats. |
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