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磁性沸石复合材料对 (Straus,1820)的细胞毒性和遗传毒性作用。

Cytotoxicity and Genotoxicity Effects of a Magnetic Zeolite Composite in (Straus, 1820).

机构信息

Grupo de Investigación de Nanotecnología Aplicada para Biorremediación Ambiental, Energía, Biomedicina y Agricultura (NANOTECH), Facultad de Ciencias Físicas, Universidad Nacional Mayor de San Marcos, Av. Venezuela Cdra 34 S/n, Ciudad Universitaria, Lima 15081, Peru.

出版信息

Int J Mol Sci. 2024 Jul 9;25(14):7542. doi: 10.3390/ijms25147542.

Abstract

Zeolite type 5A combined with the magnetic properties of maghemite nanoparticles facilitate the rapid absorption of heavy metals, which makes them an interesting proposal for the remediation of water contaminated with lead and arsenic. However, the physicochemical analysis related to concentration and size for the use of this magnetic zeolite composite (MZ0) in water bodies and the possible toxicological effects on aquatic fauna has not yet been carried out. The main objective of the research work is to determine lethal concentrations that cause damage to based on tests, morphology, reproductive rate, and quantification of the expression of three genes closely involved in the morphological development of vital structures (, , ). To achieve this objective, populations of neonates and young individuals were used, and results showed that the for neonates was 11,314 mg L, while for young individuals, it was 0.0310 mg L. Damage to morphological development was evidenced by a decrease in eye size in neonates, an increase in eye size in young individuals, variations in the size of the caudal spine for both age groups, and slight increases in the heart size, body, and antenna for both age groups. The reproductive rate of neonates was not affected by the lower concentrations of MZ0, while in young individuals, the reproductive rate decreased by more than 50% from the minimum exposure concentration of MZ0. And for both ages, gene expression levels decreased as the MZ0 concentration increased. Also, the MZ0 evidenced its affinity for the exoskeleton of , which was observed using both light microscopy and electron microscopy. It is concluded that MZ0 did not generate significant damage in the mortality, morphology, reproductive rate, or gene expression in at lower concentrations, demonstrating the importance of evaluating the possible impacts on different life stages of the cladoceran.

摘要

5A 型沸石与磁铁矿纳米粒子的磁性相结合,促进了重金属的快速吸收,这使得它们成为修复受铅和砷污染的水的一种有趣的方法。然而,关于这种磁性沸石复合材料(MZ0)在水体中的浓度和大小的理化分析,以及对水生动物群可能产生的毒理学影响尚未进行。本研究工作的主要目的是确定基于急性毒性试验、形态学、繁殖率和三个密切参与生命结构形态发育的基因表达的定量分析,导致损伤的致死浓度(LC50)。为了实现这一目标,使用了幼体和幼体个体的种群,结果表明,幼体的 LC50 为 11,314mg/L,而幼体的 LC50 为 0.0310mg/L。形态发育损伤的证据是幼体眼睛大小减小,幼体眼睛大小增大,两个年龄组的尾刺大小变化,以及两个年龄组的心脏大小、身体和触角略有增大。幼体的繁殖率不受 MZ0 较低浓度的影响,而在幼体中,MZ0 的最低暴露浓度使繁殖率下降了 50%以上。对于两个年龄组,随着 MZ0 浓度的增加,基因表达水平降低。此外,使用光学显微镜和电子显微镜观察到 MZ0 对的外骨骼具有亲和力。研究结果表明,在较低浓度下,MZ0 不会导致死亡率、形态、繁殖率或基因表达在(水蚤)中产生显著损伤,这表明评估对桡足类不同生命阶段的可能影响的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6937/11277251/c30521110a48/ijms-25-07542-g001.jpg

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