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钛酸钡颗粒的尺寸依赖性生态毒性:以普通小球藻绿藻为例。

Size-dependent ecotoxicity of barium titanate particles: the case of Chlorella vulgaris green algae.

作者信息

Polonini Hudson C, Brandão Humberto M, Raposo Nádia R B, Brandão Marcos Antônio F, Mouton Ludovic, Couté Alain, Yéprémian Claude, Sivry Yann, Brayner Roberta

机构信息

Núcleo de Pesquisa e Inovação em Ciências da Saúde (NUPICS), Universidade Federal de Juiz de Fora, Juiz de Fora, Brazil.

出版信息

Ecotoxicology. 2015 May;24(4):938-48. doi: 10.1007/s10646-015-1436-6. Epub 2015 Mar 13.

Abstract

Studies have been demonstrating that smaller particles can lead to unexpected and diverse ecotoxicological effects when compared to those caused by the bulk material. In this study, the chemical composition, size and shape, state of dispersion, and surface's charge, area and physicochemistry of micro (BT MP) and nano barium titanate (BT NP) were determined. Green algae Chlorella vulgaris grown in Bold's Basal (BB) medium or Seine River water (SRW) was used as biological indicator to assess their aquatic toxicology. Responses such as growth inhibition, cell viability, superoxide dismutase (SOD) activity, adenosine-5-triphosphate (ATP) content and photosynthetic activity were evaluated. Tetragonal BT (170 nm, 3.24 m(2) g(-1) surface area) and cubic BT (60 nm, 16.60 m(2) g(-1)) particles were negative, poorly dispersed, and readily aggregated. BT has a statistically significant effect on C. vulgaris growth since the lower concentration tested (1 ppm), what seems to be mediated by induced oxidative stress caused by the particles (increased SOD activity and decreased photosynthetic efficiency and intracellular ATP content). The toxic effects were more pronounced when the algae was grown in SRW. Size does not seem to be an issue influencing the toxicity in BT particles toxicity since micro- and nano-particles produced significant effects on algae growth.

摘要

研究表明,与大块材料相比,较小的颗粒可能会导致意想不到的多种生态毒理学效应。在本研究中,测定了微米级钛酸钡(BT MP)和纳米级钛酸钡(BT NP)的化学成分、尺寸和形状、分散状态以及表面电荷、面积和物理化学性质。以在Bold基础培养基(BB)或塞纳河水(SRW)中生长的普通小球藻作为生物指示剂,评估它们的水生毒理学。评估了生长抑制、细胞活力、超氧化物歧化酶(SOD)活性、三磷酸腺苷(ATP)含量和光合活性等反应。四方相BT(170 nm,比表面积3.24 m² g⁻¹)和立方相BT(60 nm,比表面积16.60 m² g⁻¹)颗粒呈负电性,分散性差,容易聚集。BT对普通小球藻的生长具有统计学显著影响,因为在测试的最低浓度(1 ppm)下,这种影响似乎是由颗粒诱导的氧化应激介导的(SOD活性增加,光合效率和细胞内ATP含量降低)。当藻类在SRW中生长时,毒性作用更为明显。尺寸似乎不是影响BT颗粒毒性的一个因素,因为微米级和纳米级颗粒对藻类生长都产生了显著影响。

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