纳米氧化石墨烯颗粒通过改变参与卵母细胞成熟的基因表达诱发遗传异常。

IF 3.6 3区 医学 Q3 NANOSCIENCE & NANOTECHNOLOGY Nanotoxicology Pub Date : 2024-03-01 Epub Date: 2024-03-07 DOI:10.1080/17435390.2024.2325615
Sreelakshmi Krishnakumar, Raghunath Nair Malavika, Shantikumar V Nair, Deepthy Menon, Bindhu Paul-Prasanth
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引用次数: 0

摘要

在配子发育的关键窗口期,暴露于氧化石墨烯纳米颗粒(GO NPs)对脊椎动物生殖系的遗传影响至今仍未确定。在这里,我们分析了暴露于在室内合成的横向尺寸为 300-600 nm、表面电荷为 -36.8 mV 的纳米氧化石墨烯颗粒(nGO)对生殖细胞(GCs)不同发育阶段的遗传影响:(1)在生殖细胞早期发育和分化期间;(2)在生殖细胞成年期配子发生和成熟期间。对日本青鳉胚胎进行的生物相容性分析表明,当剂量超过 1 µg/ml 时,雌雄青鳉的致死率会升高;当剂量低于致死剂量时,雌雄青鳉的生殖细胞数量也会异常增加。不过,在高达 45 微克/毫升的剂量下,成体没有出现明显的致死或畸形现象。胚胎和成虫长期接触 21 天会导致繁殖力下降。这种影响会传给后代,即 F1 和 F2。重要的是,在 10 微克/毫升的高剂量下,nGO 对成体的遗传影响非常明显,而 1 微克/毫升的剂量对生殖系没有影响,这表明本研究中使用的较低剂量是安全的。此外,对卵母细胞成熟有不利影响的选定基因的表达在 F1 和 F2 个体中得到增强。有趣的是,遗传模式因鱼类接受暴露的阶段而异。
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Nano-graphene oxide particles induce inheritable anomalies through altered gene expressions involved in oocyte maturation.

The inheritable impact of exposure to graphene oxide nanoparticles (GO NPs) on vertebrate germline during critical windows of gamete development remain undetermined to date. Here, we analyzed the transgenerational effects of exposure to nano-graphene oxide particles (nGO) synthesized in house with lateral dimensions 300-600 nm and surface charge of -36.8 mV on different developmental stages of germ cells (GCs): (1) during GCs undergoing early development and differentiation, and (2) during GCs undergoing gametogenesis and maturation in adulthood. Biocompatibility analyses in Japanese medaka embryos showed lethality above 1 µg/ml and also an aberrant increase in germ cell count of both males and females at doses below the lethal dose. However, no lethality or anomalies were evident in adults up to 45 µg/ml. Long term exposure of embryos and adults for 21 days resulted in reduced fecundity. This effect was transmitted to subsequent generations, F1 and F2. Importantly, the inheritable effects of nGO in adults were pronounced at a high dose of 10 µg/ml, while 1 µg/ml showed no impact on the germline indicating lower doses used in this study to be safe. Further, expressions of selected genes that adversely affected oocyte maturation were enhanced in F1 and F2 individuals. Interestingly, the inheritance patterns differed corresponding to the stage at which the fish received the exposure.

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来源期刊
Nanotoxicology
Nanotoxicology 医学-毒理学
CiteScore
10.10
自引率
4.00%
发文量
45
审稿时长
3.5 months
期刊介绍: Nanotoxicology invites contributions addressing research relating to the potential for human and environmental exposure, hazard and risk associated with the use and development of nano-structured materials. In this context, the term nano-structured materials has a broad definition, including ‘materials with at least one dimension in the nanometer size range’. These nanomaterials range from nanoparticles and nanomedicines, to nano-surfaces of larger materials and composite materials. The range of nanomaterials in use and under development is extremely diverse, so this journal includes a range of materials generated for purposeful delivery into the body (food, medicines, diagnostics and prosthetics), to consumer products (e.g. paints, cosmetics, electronics and clothing), and particles designed for environmental applications (e.g. remediation). It is the nano-size range if these materials which unifies them and defines the scope of Nanotoxicology . While the term ‘toxicology’ indicates risk, the journal Nanotoxicology also aims to encompass studies that enhance safety during the production, use and disposal of nanomaterials. Well-controlled studies demonstrating a lack of exposure, hazard or risk associated with nanomaterials, or studies aiming to improve biocompatibility are welcomed and encouraged, as such studies will lead to an advancement of nanotechnology. Furthermore, many nanoparticles are developed with the intention to improve human health (e.g. antimicrobial agents), and again, such articles are encouraged. In order to promote quality, Nanotoxicology will prioritise publications that have demonstrated characterisation of the nanomaterials investigated.
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