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一种用于定量评估核DNA中8-氧代鸟嘌呤作为氧化应激标志物的新技术。应用于肌营养不良蛋白缺乏的杜氏肌营养不良症骨骼肌。

A new technique for the quantitative assessment of 8-oxoguanine in nuclear DNA as a marker of oxidative stress. Application to dystrophin-deficient DMD skeletal muscles.

作者信息

Nakae Yoshiko, Stoward Peter J, Bespalov Ivan A, Melamede Robert J, Wallace Susan S

机构信息

Department of Oral and Maxillofacial Anatomy, Institute of Health Biosciences, The University of Tokushima Graduate School, Tokushima 770-8504, Japan.

出版信息

Histochem Cell Biol. 2005 Sep;124(3-4):335-45. doi: 10.1007/s00418-005-0037-5. Epub 2005 Oct 28.

Abstract

This is the first report on the development of an immunohistochemical technique, combined with quantitative image analysis, for the assessment of oxidative stress quantitatively in nuclear DNA in situ, and its application to measure DNA damage in Duchenne muscular dystrophic (DMD) muscles. Three sequential staining procedures for cell nuclei, a cell marker, and a product of oxidative DNA damage, 8-oxoguanine (8-oxoG), were performed. First, the nuclei in muscle sections were stained with Neutral Red followed by the capture of their images with an image analysis system used for absorbance measurements. Second, the same sections were then immunostained for laminin in basement membranes as the cell marker. Next, the sections were treated with 2 N HCl to remove the bound Neutral Red and to denature tissue DNA. Third, the sections were immunostained for 8-oxoG in DNA, using diaminobenzidine (DAB) to reveal the antibody complex. This was followed by capture of the images of the immunostained sections as previously. The absorbances at 451.2 nm of bound Neutral Red and DAB polymer oxides, the final product of 8-oxoG immunostaining, were measured in the same myonuclei in the sections. Analysis of these absorbances permitted indices of the 8-oxoG content, independent of the nuclear densities, to be determined in nuclear DNA in single myofibres and myosatellite cells surrounded by basement membranes. We found that the mean index for the myonuclei in biceps brachii muscles of 2- to 7-year-old patients was 14% higher than that in age-matched normal controls. This finding of the increased oxidative stress in the myonuclei in young DMD muscles agrees with the previous reports of increased oxidative stress in the cytoplasm in the DMD myofibres and myosatellite cells. The present technique for the quantitative assessment of oxidative stress in nuclear DNA in situ is applicable not only in biomedical research but also in the development of effective drugs for degenerative diseases related to oxidative stress.

摘要

这是关于一种免疫组织化学技术开发的首次报告,该技术结合了定量图像分析,用于原位定量评估核DNA中的氧化应激,并将其应用于测量杜氏肌营养不良症(DMD)肌肉中的DNA损伤。对细胞核、细胞标记物以及氧化DNA损伤产物8-氧代鸟嘌呤(8-oxoG)进行了三个连续的染色程序。首先,用中性红对肌肉切片中的细胞核进行染色,然后用用于吸光度测量的图像分析系统捕获其图像。其次,对同一切片进行免疫染色,以检测基底膜中的层粘连蛋白作为细胞标记物。接下来,用2N盐酸处理切片,以去除结合的中性红并使组织DNA变性。第三,用二氨基联苯胺(DAB)对DNA中的8-oxoG进行免疫染色,以显示抗体复合物。随后如前所述捕获免疫染色切片的图像。在切片中相同的肌细胞核中测量结合的中性红和8-oxoG免疫染色的最终产物DAB聚合物氧化物在451.2nm处的吸光度。对这些吸光度的分析允许在单个肌纤维和基底膜包围的肌卫星细胞的核DNA中确定与核密度无关的8-oxoG含量指数。我们发现,2至7岁患者肱二头肌中肌细胞核的平均指数比年龄匹配的正常对照高14%。年轻DMD肌肉中肌细胞核氧化应激增加的这一发现与先前关于DMD肌纤维和肌卫星细胞细胞质中氧化应激增加的报道一致。本原位定量评估核DNA中氧化应激的技术不仅适用于生物医学研究,也适用于开发与氧化应激相关的退行性疾病有效药物。

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