Yao Hiroshi, Ferdaus Mohammed Zubaerul, Zahid Hasan Md, Ohara Hiroki, Nakahara Tatsuo, Nabika Toru
Laboratory for Neurochemistry, National Hospital Organization Hizen Psychiatric Center, Saga, Japan.
Department of Functional Pathology, Shimane University School of Medicine, Izumo, Japan.
PLoS One. 2015 Sep 21;10(9):e0138551. doi: 10.1371/journal.pone.0138551. eCollection 2015.
By means of introgressing a loss-of-function mutation in the p22phox gene from the Matsumoto Eosinophilia Shinshu (MES) rat to stroke-prone spontaneously hypertensive rats (SHRSP), we constructed the SHRSP-based congenic strain lacking the P22PHOX expression (i.e., lacking NADPH oxidases [NOX] activities) (SHRSP.MES-Cyba(mes)/Izm; hereafter referred to as SP.MES). To examine the effects of Nox activities on the focal ischemic injury or stroke, we performed middle cerebral artery (MCA) occlusion in this new congenic strain; the distal MCA was occluded by 561-nm laser-driven photothrombosis. Resting mean arterial blood pressure was significantly lower in SP.MES when compared with the control PM0/SHRSP (150±11 mmHg vs. 166±11 mmHg). Cerebral blood flow decreased to 37±13% in SP.MES and 35±17% in PM0/SHRSP at 10 min after MCA occlusion (not significant). Infarct volume determined at 24 h after MCA occlusion in SP.MES was 89±39 mm3, which was not significantly different from 83±35 mm3 in PM0/SHRSP. The distal MCA pattern was more complex in SP.MES (median 3, IQR 3-5) than PM0/SHRSP (median 2, IQR 1-3) (p = 0.001). Because more complex distal MCA is known to produce larger infarction after distal MCA occlusion in SHR, we adjusted for the branching pattern in an ANCOVA. The adjusted mean of infarct volume was significantly smaller in SP.MES compared with that in PM0/SHRSP (67 [95% CI 46 to 87] mm3 vs. 100 [95% CI 82 to 118] mm3, p = 0.032). Elimination of the P22PHOX expression induced complex distal MCA, which would suggest the presence of 'loss of complexity' induced by enhanced oxidative stress in SHRSP; infarct size in SP.MES--when adjusted for distal MCA complexity--was significantly attenuated compared with that in PM0/SHRSP. Therefore, the present results suggest that Nox is harmful for ischemic brain tissue.
通过将松本嗜酸性粒细胞信州(MES)大鼠p22phox基因的功能缺失突变导入易患中风的自发性高血压大鼠(SHRSP),我们构建了缺乏P22PHOX表达(即缺乏NADPH氧化酶[NOX]活性)的基于SHRSP的近交系(SHRSP.MES-Cyba(mes)/Izm;以下简称SP.MES)。为了研究Nox活性对局灶性缺血性损伤或中风的影响,我们在这个新的近交系中进行了大脑中动脉(MCA)闭塞;通过561纳米激光驱动的光血栓形成闭塞远端MCA。与对照PM0/SHRSP相比,SP.MES的静息平均动脉血压显著降低(150±11 mmHg对166±11 mmHg)。MCA闭塞10分钟后,SP.MES的脑血流量降至37±13%,PM0/SHRSP降至35±17%(无显著差异)。MCA闭塞24小时后测定的SP.MES梗死体积为89±39立方毫米,与PM0/SHRSP的83±35立方毫米无显著差异。SP.MES的远端MCA模式(中位数3,四分位距3 - 5)比PM0/SHRSP(中位数2,四分位距1 - 3)更复杂(p = 0.001)。因为已知在SHR中,更复杂的远端MCA在远端MCA闭塞后会产生更大的梗死,所以我们在协方差分析中对分支模式进行了校正。校正后的SP.MES梗死体积平均值显著小于PM0/SHRSP(67 [95%置信区间46至87]立方毫米对100 [95%置信区间82至118]立方毫米,p = 0.032)。P22PHOX表达的消除诱导了复杂的远端MCA,这表明在SHRSP中存在由增强的氧化应激诱导的“复杂性丧失”;与PM0/SHRSP相比,SP.MES中校正远端MCA复杂性后的梗死大小显著减小。因此,目前的结果表明Nox对缺血性脑组织有害。