TiO2纳米颗粒库毒性(紫外线和非紫外线暴露)——高通量体内转录组学揭示机制

IF 4.7 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Susana I.L. Gomes , Carlos P. Roca , Suman Pokhrel , Lutz Mädler , Janeck J. Scott-Fordsmand , Mónica J.B. Amorim
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引用次数: 0

摘要

纳米材料/纳米颗粒(NMs/NP)的危害大多使用单个NMs进行评估,需要使用许多NMs的更系统的方法来评估其在环境中的风险。NMs的库,具有一系列已识别的不同但相关的字符/描述符,允许对许多NMs的效果进行比较。在具有和不具有UV(标准荧光)辐射的土壤模型Enchytraeus crypticus(Oligochaeta)上评估了包含11种纳米材料的定制设计的Fe掺杂TiO2纳米材料库的影响。从生物体(表型、存活和繁殖)和基因表达水平(转录组学、高通量4x44K微阵列)分析影响,以了解潜在机制。总共进行了48个微阵列(20个测试条件)加上对照(紫外线和非紫外线)。TiO2 NPs暴露诱导的独特机制包括TiO2_10nm的RNA加工损伤,或2%FeTiO2_10 nm的细胞凋亡失调。引人注目的是尺寸依赖性效应,如通过较小的TiO2 NP(≤12 nm)-胚胎相互作用诱导生殖效应,而较大的颗粒(27 nm)通过不同的机制引起生殖效应。此外,吞噬作用受到12和27 nm NP的影响,但不受≤11 nm的影响。生物体水平的研究显示了综合反应,即一连串事件后的结果。虽然单细胞模型提供了关键的机制信息,但我们在这里提供了一个组合的生物系统水平(表型和基因型),很少可用,尤其是对于环境模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

TiO2 nanoparticles' library toxicity (UV and non-UV exposure) – High-throughput in vivo transcriptomics reveals mechanisms

TiO2 nanoparticles' library toxicity (UV and non-UV exposure) – High-throughput in vivo transcriptomics reveals mechanisms

The hazards of nanomaterials/nanoparticles (NMs/NPs) are mostly assessed using individual NMs, and a more systematic approach, using many NMs, is needed to evaluate its risks in the environment. Libraries of NMs, with a range of identified different but related characters/descriptors allow the comparison of effects across many NMs. The effects of a custom designed Fe-doped TiO2 NMs library containing 11 NMs was assessed on the soil model Enchytraeus crypticus (Oligochaeta), both with and without UV (standard fluorescent) radiation. Effects were analyzed at organism (phenotypic, survival and reproduction) and gene expression level (transcriptomics, high-throughput 4x44K microarray) to understand the underlying mechanisms. A total of 48 microarrays (20 test conditions) were done plus controls (UV and non-UV). Unique mechanisms induced by TiO2 NPs exposure included the impairment in RNA processing for TiO2_10nm, or deregulated apoptosis for 2%FeTiO2_10nm. Strikingly apparent was the size dependent effects such as induction of reproductive effects via smaller TiO2 NPs (≤12 nm) - embryo interaction, while larger particles (27 nm) caused reproductive effects through different mechanisms. Also, phagocytosis was affected by 12 and 27 nm NPs, but not by ≤11 nm. The organism level study shows the integrated response, i.e. the result after a cascade of events. While uni-cell models offer key mechanistic information, we here deliver a combined biological system level (phenotype and genotype), seldom available, especially for environmental models.

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来源期刊
NanoImpact
NanoImpact Social Sciences-Safety Research
CiteScore
11.00
自引率
6.10%
发文量
69
审稿时长
23 days
期刊介绍: NanoImpact is a multidisciplinary journal that focuses on nanosafety research and areas related to the impacts of manufactured nanomaterials on human and environmental systems and the behavior of nanomaterials in these systems.
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