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阳离子聚苯乙烯纳米颗粒(PS-NH)对地中海贻贝早期胚胎发育的影响:对贝壳形成的作用

Impact of cationic polystyrene nanoparticles (PS-NH) on early embryo development of Mytilus galloprovincialis: Effects on shell formation.

作者信息

Balbi Teresa, Camisassi Giulia, Montagna Michele, Fabbri Rita, Franzellitti Silvia, Carbone Cristina, Dawson Kenneth, Canesi Laura

机构信息

Department of Earth, Environment and Life Sciences (DISTAV), University of Genova, Genova, Italy.

Department of Biological, Geological and Environmental Sciences, University of Bologna, Campus of Ravenna, Ravenna, Italy.

出版信息

Chemosphere. 2017 Nov;186:1-9. doi: 10.1016/j.chemosphere.2017.07.120. Epub 2017 Jul 25.

Abstract

The potential release of nanoparticles (NPs) into aquatic environments represents a growing concern for their possible impact on aquatic organisms. In this light, exposure studies during early life stages, which can be highly sensitive to environmental perturbations, would greatly help identifying potential adverse effects of NPs. Although in the marine bivalve Mytilus spp. the effects of different types of NPs have been widely investigated, little is known on the effects of NPs on the developing embryo. In M. galloprovincialis, emerging contaminants were shown to affect gene expression profiles during early embryo development (from trocophorae-24 hpf to D-veligers-48 hpf). In this work, the effects of amino-modified polystyrene NPs (PS-NH) on mussel embryos were investigated. PS-NH affected the development of normal D-shaped larvae at 48 hpf (EC = 0.142 mg/L). Higher concentrations (5-20 mg/L) resulted in high embryotoxicity/developmental arrest. At concentrations ≅ EC, PS-NH affected shell formation, as shown by optical and polarized light microscopy. In these conditions, transcription of 12 genes involved in different biological processes were evaluated. PS-NH induced dysregulation of transcription of genes involved in early shell formation (Chitin synthase, Carbonic anhydrase, Extrapallial Protein) at both 24 and 48 hpf. Decreased mRNA levels for ABC transporter p-glycoprotein-ABCB and Lysozyme were also observed at 48 hpf. SEM observations confirmed developmental toxicity at higher concentrations (5 mg/L). These data underline the sensitivity of Mytilus early embryos to PS-NH and support the hypothesis that calcifying larvae of marine species are particularly vulnerable to abiotic stressors, including exposure to selected types of NPs.

摘要

纳米颗粒(NPs)向水生环境中的潜在释放引发了人们对其可能对水生生物产生影响的日益关注。鉴于此,在对环境扰动高度敏感的生命早期阶段进行暴露研究,将极大有助于确定纳米颗粒的潜在不利影响。尽管在海洋双壳贝类紫贻贝属中,已对不同类型纳米颗粒的影响进行了广泛研究,但对于纳米颗粒对发育中胚胎的影响却知之甚少。在加利福尼亚贻贝中,已表明新兴污染物会影响胚胎早期发育(从担轮幼虫 - 受精后24小时到D形幼虫 - 受精后48小时)期间的基因表达谱。在这项工作中,研究了氨基修饰的聚苯乙烯纳米颗粒(PS - NH)对贻贝胚胎的影响。PS - NH在48小时胚胎期影响正常D形幼虫的发育(半数效应浓度EC = 0.142毫克/升)。更高浓度(5 - 20毫克/升)导致高胚胎毒性/发育停滞。在约EC浓度下,光学和偏光显微镜显示PS - NH影响贝壳形成。在这些条件下,评估了参与不同生物学过程的12个基因的转录情况。PS - NH在24小时和48小时胚胎期均诱导参与早期贝壳形成的基因(几丁质合酶、碳酸酐酶、外套膜外蛋白)转录失调。在48小时胚胎期还观察到ABC转运蛋白p - 糖蛋白 - ABCB和溶菌酶的mRNA水平降低。扫描电子显微镜观察证实了较高浓度(5毫克/升)下的发育毒性。这些数据强调了紫贻贝早期胚胎对PS - NH的敏感性,并支持以下假设:海洋物种的钙化幼虫特别容易受到非生物应激源的影响,包括接触特定类型的纳米颗粒。

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