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低浓度的氧化石墨烯可以改变两种具有不同生活策略的无脊椎动物品系中线粒体的潜能、自噬和细胞凋亡途径。

Graphene oxide in low concentrations can change mitochondrial potential, autophagy, and apoptosis paths in two strains of invertebrates with different life strategies.

机构信息

Institute of Biology, Biotechnology and Environmental Protection, University of Silesia in Katowice, Poland.

Institute of Biology, Biotechnology and Environmental Protection, University of Silesia in Katowice, Poland.

出版信息

Biochem Biophys Res Commun. 2024 Dec 3;736:150898. doi: 10.1016/j.bbrc.2024.150898. Epub 2024 Oct 24.

DOI:10.1016/j.bbrc.2024.150898
PMID:39467354
Abstract

Nanoparticles, like graphene oxide (GO), are particles with unique physiochemical properties that enable their wide application in various areas of life. The effects of GO on individual cell organelles like mitochondria and the effects of interactions are worth investigating, as they can activate multiple cellular processes, such as autophagy or apoptosis. Mitochondrial injury plays an essential role in the majority of cell death routines. In the project, we investigated cell health status measured as mitochondrial inner membrane depolarization, autophagy, and apoptosis induction during long-term GO administration in food (0.02 μg g and 0.2 μg g of food). Two unique Acheta domesticus strains that differ in life strategy were used: wild-type and long-lived at three different life stages (larva, young adult, mature adult). The changes in mitochondrial trans-membrane potential were marked in the wild-type strain. The autophagy was lower in all GO-treated groups in both strains, and the apoptosis was lower in both strains in the mature adult crickets. Low GO concentrations treatment for the whole life, despite mitochondrial dysfunction, may lead to inhibition of autophagy and apoptosis by arresting the cell cycle for the duration of repair, and other repair tools are involved in the process of restoring homeostasis.

摘要

纳米粒子,如氧化石墨烯 (GO),具有独特的物理化学性质,使其能够广泛应用于生活的各个领域。GO 对线粒体等单个细胞细胞器的影响及其相互作用的影响值得研究,因为它们可以激活多种细胞过程,如自噬或细胞凋亡。线粒体损伤在大多数细胞死亡过程中起着至关重要的作用。在该项目中,我们研究了在食物中长期(0.02μg/g 和 0.2μg/g 食物)给予 GO 时,测量到的线粒体内膜去极化、自噬和细胞凋亡诱导的细胞健康状况。使用了两种在生活策略上不同的独特的家蟋蟀(Acheta domesticus)品系:野生型和在三个不同生命阶段(幼虫、年轻成虫、成熟成虫)具有长寿命的品系。在野生型品系中,线粒体跨膜电位的变化明显。在两种品系的所有 GO 处理组中,自噬都较低,在两种品系的成熟成虫蟋蟀中,细胞凋亡也较低。在整个生命周期中,低浓度的 GO 处理,尽管存在线粒体功能障碍,但可能通过在修复期间阻止细胞周期来抑制自噬和细胞凋亡,并且其他修复工具参与了恢复体内平衡的过程。

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