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支气管化生及发育异常上皮中抗氧化酶的表达

Expression of antioxidant enzymes in bronchial metaplastic and dysplastic epithelium.

作者信息

Soini Y, Kaarteenaho-Wiik R, Pääkkö P, Kinnula V

机构信息

Department of Pathology, Oulu University Hospital, University of Oulu, PO Box 5000 (Aapistie 5), 00014, Oulu, Finland.

出版信息

Lung Cancer. 2003 Jan;39(1):15-22. doi: 10.1016/s0169-5002(02)00392-6.

Abstract

We investigated immunohistochemical expression of manganese superoxide dismutase (MnSOD) and three hydrogen peroxide (H(2)O(2)) scavenging pathways, i.e. catalase (CAT), gamma-glutamyl cysteine synthetase (gammaGCS) and thioredoxin (Trx) system in normal bronchial epithelium, bronchial metaplasia and dysplasia and correlated their expression with NF-kappaB activation (p50) and proliferation (Ki67). Normal bronchial epithelium was positive for MnSOD, heavy and light subunits of gammaGCS, CAT and Trx and TrxR. Metaplastic epithelium showed strongest expression of gammaGCSh and Trx, whereas dysplastic epithelium expressed most prominently MnSOD and CAT. There was a significant correlation between expression of gammaGCSh and gammaGCSl (P=0.034) and Trx and TrxR (P=0.037). Trx expression also correlated with gammaGCSh (P<0.001) and gammaGCSl (P=0.012) and TrxR with gammaGCSh (P<0.001) but not with gammaGCSl immunoreactivity (P=0.744). Expression of p50 was highest in metaplastic epithelium while Ki67 was highest in dysplastic lesions. Expression of Trx and gammaGCSh correlated inversely with age of the patients (R=-0.6038, P<0.001 for Trx and R=-0.6162, P<0.001 for gammaGCSh). Changes in the expression of these enzymes in bronchial lesions might be due to alterations of antioxidative mechanisms due to irritation via exogenous toxins and activation of reactive oxygen species (ROS) known to be associated with induction of metaplasia and dysplasia in the bronchial tree.

摘要

我们研究了锰超氧化物歧化酶(MnSOD)和三种过氧化氢(H₂O₂)清除途径,即过氧化氢酶(CAT)、γ-谷氨酰半胱氨酸合成酶(γGCS)和硫氧还蛋白(Trx)系统在正常支气管上皮、支气管化生和发育异常中的免疫组化表达,并将它们的表达与核因子κB激活(p50)和增殖(Ki67)相关联。正常支气管上皮对MnSOD、γGCS的重链和轻链亚基、CAT以及Trx和TrxR呈阳性反应。化生上皮显示γGCS重链和Trx的表达最强,而发育异常上皮最显著表达的是MnSOD和CAT。γGCS重链和γGCS轻链的表达之间(P = 0.034)以及Trx和TrxR的表达之间(P = 0.037)存在显著相关性。Trx表达也与γGCS重链(P < 0.001)和γGCS轻链(P = 0.012)相关,TrxR与γGCS重链(P < 0.001)相关,但与γGCS轻链免疫反应性无关(P = 0.744)。p50的表达在化生上皮中最高,而Ki67在发育异常病变中最高。Trx和γGCS重链的表达与患者年龄呈负相关(Trx的R = -0.6038,P < 0.001;γGCS重链的R = -0.6162,P < 0.001)。支气管病变中这些酶表达的变化可能是由于外源性毒素刺激导致抗氧化机制改变以及已知与支气管树化生和发育异常诱导相关的活性氧(ROS)激活所致。

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