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Development of nanotoxicology: implications for drug delivery and medical devices

机译:纳米毒理学的发展:对药物输送和医疗器械的影响

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摘要

Current nanotoxicology research suffers from suboptimal in vitro models, lack of in vitro–in vivo correlations, variability within in vitro protocols, deficits in both material purity and physicochemical characterization. Reliable nanomaterial toxicity and mechanistic insights are required for health and toxicity risk assessments. Much in vitro toxicological data is inconclusive in designating whether nanomaterials for drug delivery and medical device implants are truly safe. A critique is presented to analyze the interface between toxicology and nanopharmaceuticals. Deficiencies of existing practices in toxicology are reviewed and useful emerging techniques (e.g., lab-on-a-chip, tissue engineering, atomic force microscopy, high-content analysis) are highlighted. Cross-fertilization between disciplines will aid development of biocompatible delivery and implant platforms while improvements are being suggested for better translation of nanotoxicology.
机译:当前的纳米毒理学研究存在体外模型欠佳,缺乏体内外相关性,体外方案内的变异性,材料纯度和理化特性方面的缺陷等问题。健康和毒性风险评估需要可靠的纳米材料毒性和机理见解。在确定用于药物输送和医疗器械植入的纳米材料是否真正安全方面,许多体外毒理学数据尚无定论。提出了一种批评,以分析毒理学和纳米药物之间的接口。综述了毒理学中现有实践的不足,并重点介绍了有用的新兴技术(例如,芯片实验室,组织工程,原子力显微镜,高含量分析)。学科之间的交叉受精将有助于生物相容性传递和植入平台的发展,同时有人建议进行改进以更好地翻译纳米毒理学。

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