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亚麻织物保护 V79 成纤维细胞免受活性氧的侵害。

V79 Fibroblasts Are Protected Against Reactive Oxygen Species by Flax Fabric.

机构信息

Angiology Department, Regional Specialist Hospital in Wroclaw, Research and Development Centre, Kamienskiego 73a St, 51-124, Wroclaw, Poland.

Faculty of Biotechnology, University of Wroclaw, Przybyszewskiego 63, 51-137, Wroclaw, Poland.

出版信息

Appl Biochem Biotechnol. 2018 Jan;184(1):366-385. doi: 10.1007/s12010-017-2552-y. Epub 2017 Jul 8.

Abstract

Chinese hamster pulmonary fibroblasts (V79 cells) pre-treated with flax fabrics derived from non-modified or genetically engineered flax fibres and treated with HO revealed a markedly lower level of intracellular reactive oxygen species (ROS) than control, non-pre-treated cells. The fabrics were prepared from fibres derived from two kinds of transgenic plants: W92 plants, which overproduce flavonoids, and M type plants, which produce hydroxybutyrate polymer in their vascular bundles and thus in fibres. Incubating the V79 cells with the flax fabrics prior to HO treatment also reduced the amount of DNA damage, as established using the comet assay (also known as alkaline single-cell gel electrophoresis) and pulsed-field electrophoresis of intact cellular DNA. Selected gene expression analysis revealed the activator impact of fabrics on the apoptotic (BCL2 family, caspases) gene expression. This promoting activity was also detected for histone acetyltransferase (HAT; MYST2) gene expression. The flax fabric derived from both GM flax plants exhibited a protective effect against oxidative stress and ROS-mediated genotoxic damage, but the W92 fabric was the strongest. It is thus suggested that these fabrics might be useful as a basis for new biomedical products (e.g. wound dressings) that actively protect cells against inflammation and degeneration.

摘要

经预处理的中国仓鼠肺成纤维细胞(V79 细胞)用未经修饰或基因工程改造的亚麻纤维或基因工程改造的亚麻纤维制成的织物处理 HO 后,细胞内活性氧(ROS)的水平明显低于对照、未经预处理的细胞。这些织物是由两种转基因植物的纤维制成的:W92 植物,其黄酮类化合物产量高;M 型植物,其在维管束中产生羟基丁酸聚合物,从而在纤维中产生。在用 HO 处理之前,将 V79 细胞与亚麻织物孵育也减少了使用彗星试验(也称为碱性单细胞凝胶电泳)和完整细胞 DNA 的脉冲场电泳建立的 DNA 损伤量。选择基因表达分析显示织物对凋亡(BCL2 家族,半胱天冬酶)基因表达的激活作用。还检测到组蛋白乙酰转移酶(HAT;MYST2)基因表达的这种促进活性。两种 GM 亚麻植物来源的亚麻织物均表现出对氧化应激和 ROS 介导的遗传毒性损伤的保护作用,但 W92 织物的作用最强。因此,这些织物可能可用作新的生物医学产品(例如伤口敷料)的基础,这些产品可积极保护细胞免受炎症和变性的侵害。

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