{"title":"Toxicological Aspects and Bioanalysis of Nanoparticles: Zebrafish Model","authors":"B. Yeşi̇lbudak","doi":"10.56171/ojn.1189800","DOIUrl":null,"url":null,"abstract":"Nanoparticles increase their availability and diversity in the environment day by day with the natural formation processes of the world geography and the development of advanced technological industry. Due to their intelligent and kaleidoscopic physico-chemical structural forms, they can cause toxic effects in various metabolic steps (in structural proteins, genetic structure, organelles, cells, tissues, organs, metabolic systems) in the organism. Despite these harmful situations some magnetite nanoparticles such as gold nanoparticles, silver nanoparticles, nanodiamonds, dendrimers, polymeric and liposomic smart nanoparticles can be used in medical studies, pharmaceutical industry, nanotheranostic studies and molecular methods. Zebrafish (Danio rerio), which is used a model species in many study disciplines, has been used in many studies to reveal the potential toxic effects and positive effects of the tested nanoparticles. Both in vivo and in vitro test systems and interdisciplinary studies conducted in recent years were analyzed and evaluated via the traditional review method in the current study. Besides, many studies were grouped in order to obtain fast and efficient results on the characterization of nanoparticles and understanding their mechanism of action. A systematic search was conducted based on the keywords of this study in databases such as PubMed, Google Scholar, Web of Science and Carrot², in May 2022. In addition to recognizing the toxic effects of nanoparticles, several studies were emphasized, in which the utilitarian status of nanoparticles in medical, pharmaceutical, molecular and genetic applied studies was understood more clearly day by day.","PeriodicalId":448411,"journal":{"name":"Open Journal of Nano","volume":"36 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"1900-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Open Journal of Nano","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.56171/ojn.1189800","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
Nanoparticles increase their availability and diversity in the environment day by day with the natural formation processes of the world geography and the development of advanced technological industry. Due to their intelligent and kaleidoscopic physico-chemical structural forms, they can cause toxic effects in various metabolic steps (in structural proteins, genetic structure, organelles, cells, tissues, organs, metabolic systems) in the organism. Despite these harmful situations some magnetite nanoparticles such as gold nanoparticles, silver nanoparticles, nanodiamonds, dendrimers, polymeric and liposomic smart nanoparticles can be used in medical studies, pharmaceutical industry, nanotheranostic studies and molecular methods. Zebrafish (Danio rerio), which is used a model species in many study disciplines, has been used in many studies to reveal the potential toxic effects and positive effects of the tested nanoparticles. Both in vivo and in vitro test systems and interdisciplinary studies conducted in recent years were analyzed and evaluated via the traditional review method in the current study. Besides, many studies were grouped in order to obtain fast and efficient results on the characterization of nanoparticles and understanding their mechanism of action. A systematic search was conducted based on the keywords of this study in databases such as PubMed, Google Scholar, Web of Science and Carrot², in May 2022. In addition to recognizing the toxic effects of nanoparticles, several studies were emphasized, in which the utilitarian status of nanoparticles in medical, pharmaceutical, molecular and genetic applied studies was understood more clearly day by day.
随着世界地理的自然形成过程和先进技术产业的发展,纳米粒子在环境中的可用性和多样性日益增加。由于其智能和千变万化的物理化学结构形式,它们可以在生物体的各个代谢步骤(结构蛋白、遗传结构、细胞器、细胞、组织、器官、代谢系统)中产生毒性作用。尽管存在这些有害的情况,一些磁铁矿纳米颗粒,如金纳米颗粒、银纳米颗粒、纳米钻石、树状大分子、聚合物和脂质体智能纳米颗粒可用于医学研究、制药工业、纳米治疗研究和分子方法。斑马鱼(Danio rerio)是许多研究学科中使用的模型物种,已在许多研究中使用斑马鱼来揭示被测纳米颗粒的潜在毒性和积极作用。本研究采用传统的综述方法,对近年来开展的体内和体外试验系统以及跨学科研究进行分析和评价。此外,为了获得快速有效的纳米颗粒表征结果和了解其作用机制,对研究进行了分组。以该研究的关键词为基础,于2022年5月在PubMed、Google Scholar、Web of Science、Carrot²等数据库中进行了系统检索。除了认识到纳米粒子的毒性作用外,还强调了几项研究,其中越来越清楚地认识到纳米粒子在医学、制药、分子和遗传应用研究中的实用地位。