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用于评估银纳米颗粒毒性及其对人类健康影响的肺部模型

Lung Models to Evaluate Silver Nanoparticles' Toxicity and Their Impact on Human Health.

作者信息

González-Vega Jesús Gabriel, García-Ramos Juan Carlos, Chavez-Santoscoy Rocio Alejandra, Castillo-Quiñones Javier Emmanuel, Arellano-Garcia María Evarista, Toledano-Magaña Yanis

机构信息

Programa de Maestría y Doctorado en Ciencias e Ingeniería (MyDCI), Facultad de Ciencias, Universidad Autónoma de Baja California, Ensenada 22860, Baja California, Mexico.

Escuela de Ciencias de la Salud, Universidad Autónoma de Baja California, Blvd. Zertuche y Blvd., De los Lagos S/N Fracc, Valle Dorado, Ensenada 22890, Baja California, Mexico.

出版信息

Nanomaterials (Basel). 2022 Jul 5;12(13):2316. doi: 10.3390/nano12132316.

Abstract

Nanomaterials (NMs) solve specific problems with remarkable results in several industrial and scientific areas. Among NMs, silver nanoparticles (AgNPs) have been extensively employed as drug carriers, medical diagnostics, energy harvesting devices, sensors, lubricants, and bioremediation. Notably, they have shown excellent antimicrobial, anticancer, and antiviral properties in the biomedical field. The literature analysis shows a selective cytotoxic effect on cancer cells compared to healthy cells, making its potential application in cancer treatment evident, increasing the need to study the potential risk of their use to environmental and human health. A large battery of toxicity models, both in vitro and in vivo, have been established to predict the harmful effects of incorporating AgNPs in these numerous areas or those produced due to involuntary exposure. However, these models often report contradictory results due to their lack of standardization, generating controversy and slowing the advances in nanotoxicology research, fundamentally by generalizing the biological response produced by the AgNP formulations. This review summarizes the last ten years' reports concerning AgNPs' toxicity in cellular respiratory system models (e.g., mono-culture models, co-cultures, 3D cultures, ex vivo and in vivo). In turn, more complex cellular models represent in a better way the physical and chemical barriers of the body; however, results should be used carefully so as not to be misleading. The main objective of this work is to highlight current models with the highest physiological relevance, identifying the opportunity areas of lung nanotoxicology and contributing to the establishment and strengthening of specific regulations regarding health and the environment.

摘要

纳米材料(NMs)在多个工业和科学领域解决了特定问题,并取得了显著成果。在纳米材料中,银纳米颗粒(AgNPs)已被广泛用作药物载体、医学诊断、能量收集装置、传感器、润滑剂和生物修复材料。值得注意的是,它们在生物医学领域表现出优异的抗菌、抗癌和抗病毒特性。文献分析表明,与健康细胞相比,其对癌细胞具有选择性细胞毒性作用,这使得其在癌症治疗中的潜在应用显而易见,同时也增加了研究其使用对环境和人类健康潜在风险的必要性。已经建立了大量体外和体内毒性模型,以预测在这些众多领域中引入AgNPs或因非自愿接触而产生的有害影响。然而,由于缺乏标准化,这些模型往往报告相互矛盾的结果,引发了争议,并减缓了纳米毒理学研究的进展,主要是因为对AgNP制剂产生的生物学反应进行了概括。本综述总结了过去十年中关于AgNPs在细胞呼吸系统模型(如单培养模型、共培养模型、三维培养模型、离体和体内模型)中的毒性报告。反过来,更复杂的细胞模型能更好地代表身体的物理和化学屏障;然而,对结果的使用应谨慎,以免产生误导。这项工作的主要目的是突出当前具有最高生理相关性的模型,确定肺部纳米毒理学的机会领域,并为制定和加强有关健康和环境的具体法规做出贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/690a/9268743/f61b2b761dc4/nanomaterials-12-02316-g001.jpg

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