Department of Analytical Chemistry, Faculty of Chemistry, University of Tabriz, 51666-16471, Tabriz, Iran.
Faculty of Chemical and Petroleum Engineering, University of Tabriz, 51666-16471, Tabriz, Iran.
Environ Res. 2022 Mar;204(Pt B):112082. doi: 10.1016/j.envres.2021.112082. Epub 2021 Sep 20.
Zearalenone (ZEN), a significant class of mycotoxin which is considered as a xenoestrogen, permits, similar to natural estrogens, it's binding to the receptors of estrogen resulting in various reproductive diseases especially, hormonal misbalance. ZEN has toxic effects on human and animal health as a result of its teratogenicity, carcinogenicity, mutagenicity, nephrotoxicity, genotoxicity, and immunotoxicity. To ensure water and environmental resources safety, precise, rapid, sensitive, and reliable analytical and conventional methods can be progressed for the determination of toxins such as ZEN. Different selective nanomaterial-based compounds are used in conjunction with different analytical detection approaches to achieve this goal. The current review demonstrates the state-of-the-art advances of nanomaterial-based electrochemical sensing assays including various sensing, apta-sensing and, immunosensing studies to the highly sensitive determination of various ZEN families. At first, a concise study of the occurrence, structure, toxicity, legislations, and distribution of ZEN in monitoring has been performed. Then, different conventional and clinical techniques and procedures to sensitive and selective sensing techniques have been reviewed and the efficient comparison of them has been thoroughly discussed. This study has also summarized the salient features and the requirements for applying various sensing and biosensing platforms and diverse immobilization techniques in ZEN detection. Finally, we have defined the performance of several electrochemical sensors applying diverse recognition elements couples with nanomaterials fabricated using various recognition elements coupled with nanomaterials (metal NPs, metal oxide nanoparticles (NPs), graphene, and CNT) the issues limiting development, and the forthcoming tasks in successful construction with the applied nanomaterials.
玉米赤霉烯酮(ZEN)是一种重要的真菌毒素,属于外源性雌激素,它可以像天然雌激素一样与雌激素受体结合,导致各种生殖疾病,特别是激素失衡。ZEN 具有致畸性、致癌性、致突变性、肾毒性、遗传毒性和免疫毒性等对人类和动物健康的毒性作用。为了确保水和环境资源的安全,可以采用精确、快速、灵敏、可靠的分析和常规方法来测定 ZEN 等毒素。不同的选择性纳米材料基化合物与不同的分析检测方法相结合,以实现这一目标。本综述展示了基于纳米材料的电化学传感分析方法的最新进展,包括各种传感、适配体传感和免疫传感研究,以实现对各种 ZEN 家族的高灵敏度测定。首先,简要研究了 ZEN 在监测中的发生、结构、毒性、法规和分布。然后,对敏感和选择性传感技术的不同常规和临床技术及程序进行了综述,并对它们进行了深入讨论。本研究还总结了应用各种传感和生物传感平台以及各种固定化技术在 ZEN 检测中的特点和要求。最后,我们定义了几种电化学传感器的性能,这些传感器应用了各种识别元件与纳米材料结合,这些纳米材料是使用各种识别元件与纳米材料(金属 NPs、金属氧化物纳米粒子(NPs)、石墨烯和 CNT)制造的,这些问题限制了发展,以及在成功构建应用纳米材料方面的未来任务。