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Evaluation of the effects of titanium dioxide nanoparticles on cultured Rana catesbeiana tailfin tissue

机译:评价二氧化钛纳米颗粒对培养的蛙蛙尾鳍组织的影响

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摘要

Nanoparticles (NPs), materials that have one dimension less than 100 nm, are used in manufacturing, health, and food products, and consumer products including cosmetics, clothing, and household appliances. Their utility to industry is derived from their high surface-area-to-volume ratios and physico-chemical properties distinct from their bulk counterparts, but the near-certainty that NPs will be released into the environment raises the possibility that they could present health risks to humans and wildlife. The thyroid hormones (THs), thyroxine, and 3,3′,5-triiodothyronine (T3), are involved in development and metabolism in vertebrates including humans and frogs. Many of the processes of anuran metamorphosis are analogous to human post-embryonic development and disruption of TH action can have drastic effects. These shared features make the metamorphosis of anurans an excellent model for screening for endocrine disrupting chemicals (EDCs). We used the cultured tailfin (C-fin) assay to examine the exposure effects of 0.1–10 nM (~8–800 ng/L) of three types of ~20 nm TiO2 NPs (P25, M212, M262) and micron-sized TiO2 (μ TiO2) ±10 nM T3. The actual Ti levels were 40.9–64.7% of the nominal value. Real-time quantitative polymerase chain reaction (QPCR) was used to measure the relative amounts of mRNA transcripts encoding TH-responsive THs receptors (thra and thrb) and Rana larval keratin type I (rlk1), as well as the cellular stress-responsive heat shock protein 30 kDa (hsp30), superoxide dismutase (sod), and catalase (cat). The levels of the TH-responsive transcripts were largely unaffected by any form of TiO2. Some significant effects on stress-related transcripts were observed upon exposure to micron-sized TiO2, P25, and M212 while no effect was observed with M262 exposure. Therefore, the risk of adversely affecting amphibian tissue by disrupting TH-signaling or inducing cellular stress is low for these compounds relative to other previously-tested NPs.
机译:纳米粒子(NPs)是一种尺寸小于100 nm的材料,用于制造,保健和食品以及包括化妆品,服装和家用电器在内的消费产品。它们在工业上的实用性是由于它们的高表面积与体积之比和理化性质不同于其同类物质,但是几乎确定了NP会释放到环境中,这增加了它们可能带来健康风险的可能性。对人类和野生生物。甲状腺激素(THs),甲状腺素和3,3',5-triiodothyronine(T3)参与包括人类和青蛙在内的脊椎动物的发育和代谢。紫罗兰变态的许多过程都类似于人类胚胎后的发育,TH作用的破坏会产生巨大影响。这些共有的特征使无色变态成为筛选内分泌干扰物(EDC)的绝佳模型。我们使用培养的尾鳍(C-fin)测定法检查了三种类型的〜20 nm TiO2 NP(P25,M212,M262)和微米大小的0.1–10 nM(〜8–800 ng / L)的曝光效果TiO2(μTiO2)±10 nM T3。实际的钛含量为标称值的40.9–64.7%。实时定量聚合酶链反应(QPCR)用于测量编码TH反应THs受体(thra和thrb)和Rana幼虫角蛋白I(rlk1)的mRNA转录物的相对量,以及细胞应激反应的热量休克蛋白30 kDa(hsp30),超氧化物歧化酶(sod)和过氧化氢酶(cat)。 TH响应转录本的水平在很大程度上不受任何形式的TiO2的影响。暴露于微米级TiO2,P25和M212后,观察到了与应激相关的转录本的一些显着影响,而暴露于M262则未观察到任何影响。因此,相对于其他先前测试的NP,这些化合物通过破坏TH信号或诱导细胞应激而不利地影响两栖动物组织的风险较低。

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