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粘土矿物及其衍生纳米复合材料的毒理学评估:综述

Toxicological evaluation of clay minerals and derived nanocomposites: a review.

作者信息

Maisanaba Sara, Pichardo Silvia, Puerto María, Gutiérrez-Praena Daniel, Cameán Ana M, Jos Angeles

机构信息

Area of Toxicology, Faculty of Pharmacy, University of Sevilla, Profesor García González 2, 41012 Sevilla, Spain.

Area of Toxicology, Faculty of Pharmacy, University of Sevilla, Profesor García González 2, 41012 Sevilla, Spain.

出版信息

Environ Res. 2015 Apr;138:233-54. doi: 10.1016/j.envres.2014.12.024. Epub 2015 Feb 28.

Abstract

Clays and clay minerals are widely used in many facets of our society. This review addresses the main clays of each phyllosilicate groups, namely, kaolinite, montmorillonite (Mt) and sepiolite, placing special emphasis on Mt and kaolinite, which are the clays that are more frequently used in food packaging, one of the applications that are currently exhibiting higher development. The improvements in the composite materials obtained from clays and polymeric matrices are remarkable and well known, but the potential toxicological effects of unmodified or modified clay minerals and derived nanocomposites are currently being investigated with increased interest. In this sense, this work focused on a review of the published reports related to the analysis of the toxicological profile of commercial and novel modified clays and derived nanocomposites. An exhaustive review of the main in vitro and in vivo toxicological studies, antimicrobial activity assessments, and the human and environmental impacts of clays and derived nanocomposites was performed. From the analysis of the scientific literature different conclusions can be derived. Thus, in vitro studies suggest that clays in general induce cytotoxicity (with dependence on the clay, concentration, experimental system, etc.) with different underlying mechanisms such as necrosis/apoptosis, oxidative stress or genotoxicity. However, most of in vivo experiments performed in rodents showed no clear evidences of systemic toxicity even at doses of 5000mg/kg. Regarding to humans, pulmonary exposure is the most frequent, and although clays are usually mixed with other minerals, they have been reported to induce pneumoconiosis per se. Oral exposure is also common both intentionally and unintentionally. Although they do not show a high toxicity through this pathway, toxic effects could be induced due to the increased or reduced exposure to mineral elements. Finally, there are few studies about the effects of clay minerals on wildlife, with laboratory trials showing contradictory outcomes. Clay minerals have different applications in the environment, thus with a strict control of the concentrations used, they can provide beneficial uses. Despite the extensive number of reports available, there is also a need of systematic in vitro-in vivo extrapolation studies, with still scarce information on toxicity biomarkers such as inmunomodulatory effects or alteration of the genetic expression. In conclusion, a case by case toxicological evaluation is required taking into account that different clays have their own toxicological profiles, their modification can change this profile, and the potential increase of the human/environmental exposure to clay minerals due to their novel applications.

摘要

粘土和粘土矿物在我们社会的许多方面都有广泛应用。本综述探讨了各层状硅酸盐族的主要粘土,即高岭土、蒙脱石(Mt)和海泡石,特别强调了Mt和高岭土,它们是食品包装中使用频率较高的粘土,而食品包装是目前发展较快的应用领域之一。由粘土和聚合物基体获得的复合材料的改进显著且众所周知,但未改性或改性粘土矿物及衍生纳米复合材料的潜在毒理学效应目前正受到越来越多的关注。从这个意义上讲,这项工作着重于对已发表的有关商业和新型改性粘土及衍生纳米复合材料毒理学特征分析报告的综述。对主要的体外和体内毒理学研究、抗菌活性评估以及粘土和衍生纳米复合材料对人类和环境的影响进行了详尽综述。通过对科学文献的分析可以得出不同结论。因此,体外研究表明,一般来说粘土会诱导细胞毒性(取决于粘土、浓度、实验系统等),其潜在机制各不相同,如坏死/凋亡、氧化应激或遗传毒性。然而,大多数在啮齿动物身上进行的体内实验表明,即使剂量达到5000mg/kg,也没有明显的全身毒性证据。对于人类而言,肺部接触最为常见,尽管粘土通常与其他矿物质混合,但据报道其本身可导致尘肺病。口服接触无论是有意还是无意也很常见。虽然通过这条途径它们没有显示出高毒性,但由于矿物元素接触的增加或减少可能会诱导毒性作用。最后,关于粘土矿物对野生动物影响的研究很少,实验室试验结果相互矛盾。粘土矿物在环境中有不同的应用,因此通过严格控制使用浓度,它们可以带来有益用途。尽管有大量可用报告,但仍需要系统的体外-体内外推研究,关于免疫调节作用或基因表达改变等毒性生物标志物的信息仍然很少。总之,需要进行逐案毒理学评估,因为不同的粘土有其自身的毒理学特征,其改性可能会改变这一特征,并且由于其新应用,人类/环境接触粘土矿物的可能性可能会增加。

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