Suppr超能文献

8-氧鸟嘌呤 DNA 糖基化酶-1 可作为机械性窒息的生物标志物。

8-oxoguanine DNA glycosylase-1 may serve as biomarker of mechanical asphyxia.

机构信息

Department of Forensic Medicine, School of Basic Medicine, Anhui Medical University, Hefei, China.

Hefei Public Security Bureau of Anhui Province, Hefei, China.

出版信息

Forensic Sci Int. 2024 Aug;361:112071. doi: 10.1016/j.forsciint.2024.112071. Epub 2024 May 30.

Abstract

AIM

To identify mtDNA and OGG1 as potential biomarker candidates for mechanical asphyxia.

METHOD

The human tissues are divided into experimental group (hanging and strangulation) and control groups (hemorrhagic shock, brain injury group, and poisoning group). Detected the expression of OGG1 and integrity of mtDNA in cardiac tissue of each group. We used over-OGG1 vector and siRNA-OGG1 transfecting H9C2 cell line to observe the function of OGG1 in hypoxic cells.

RESULTS

  1. mtDNA integrity decreased in the mechanical asphyxia group, OGG1 expression increased in mechanical asphyxia groups. They can be biomarkers for mechanical asphyxia. 2. OGG1 increased first and decreased in hypoxia-induced H9C2 cells. OGG1 upregulated the TFAM, NRF1, and Bcl2 in hypoxia-induced H9C2. OGG1 downregulated cleaved-Caspase3 in hypoxia-induced H9C2 cells. 3. In the normoxia condition, NAC maintained mtDNA integrity and decreased the mitochondrial membrane potential and amount of ATP.

CONCLUSION

mtDNA integrity and OGG1 expression can be biomarkers for mechanical asphyxia. OGG1 can maintain mtDNA integrity and maintain the stability of the mitochondrial membrane.

摘要

目的

鉴定 mtDNA 和 OGG1 作为机械性窒息的潜在生物标志物候选物。

方法

将人体组织分为实验组(绞缢和悬吊)和对照组(失血性休克组、脑损伤组和中毒组)。检测各组心脏组织中 OGG1 的表达和 mtDNA 的完整性。我们使用过表达 OGG1 载体和 siRNA-OGG1 转染 H9C2 细胞系,观察 OGG1 在缺氧细胞中的功能。

结果

  1. mtDNA 完整性在机械性窒息组中降低,OGG1 表达在机械性窒息组中增加。它们可以作为机械性窒息的生物标志物。2. OGG1 在缺氧诱导的 H9C2 细胞中先增加后减少。OGG1 上调了缺氧诱导的 H9C2 中的 TFAM、NRF1 和 Bcl2。OGG1 下调了缺氧诱导的 H9C2 细胞中的 cleaved-Caspase3。3. 在常氧条件下,NAC 维持 mtDNA 完整性,降低线粒体膜电位和 ATP 含量。

结论

mtDNA 完整性和 OGG1 表达可以作为机械性窒息的生物标志物。OGG1 可以维持 mtDNA 完整性,维持线粒体膜的稳定性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验