BIO-IT Foundry Technology Institute, Pusan National University, Busan 46241, South Korea.
Daan Korea Corporation, Seoul 06252, South Korea.
J Hazard Mater. 2021 May 5;409:124915. doi: 10.1016/j.jhazmat.2020.124915. Epub 2020 Dec 30.
Low dimensional nanomaterials (LDNMs) have earned attention among researchers as they exhibit a larger surface area to volume and quantum confinement effect compared to high dimensional nanomaterials. LDNMs, including 0-D and 1-D, possess several beneficial biomedical properties such as bioimaging, sensor, cosmetic, drug delivery, and cancer tumors ablation. However, they threaten human beings with the adverse effects of cytotoxicity, carcinogenicity, and genotoxicity when exposed for a prolonged time in industry or laboratory. Among different toxicities, genotoxicity must be taken into consideration with utmost importance as they inherit DNA related disorders causing congenital disabilities and malignancy to human beings. Many researchers have performed NMs' genotoxicity using various cell lines and animal models and reported the effect on various physicochemical and biological factors. In the present work, we have compiled a comparative study on the genotoxicity of the same or different kinds of NMs. Notwithstanding, we have included the classification of genotoxicity, mechanism, assessment, and affecting factors. Further, we have highlighted the importance of studying the genotoxicity of LDNMs and signified the perceptions, future challenges, and possible directives in the field.
低维纳米材料 (LDNMs) 因其具有较大的表面积与体积比和量子限域效应,而受到研究人员的关注。与高维纳米材料相比,LDNMs(包括 0-D 和 1-D)具有多种有益的生物医学特性,如生物成像、传感器、化妆品、药物输送和癌症肿瘤消融。然而,当它们在工业或实验室中长时间暴露时,会产生细胞毒性、致癌性和遗传毒性等不良影响,从而对人类构成威胁。在不同的毒性中,遗传毒性必须被高度重视,因为它们会遗传与 DNA 相关的疾病,导致人类先天残疾和恶性肿瘤。许多研究人员使用不同的细胞系和动物模型进行了纳米材料的遗传毒性研究,并报告了对各种物理化学和生物学因素的影响。在本工作中,我们对同种或不同种纳米材料的遗传毒性进行了比较研究。然而,我们还包括了遗传毒性的分类、机制、评估和影响因素。此外,我们强调了研究 LDNMs 遗传毒性的重要性,并指出了该领域的认识、未来挑战和可能的指导方向。