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Biological impact assessment of nanomaterial used in nanomedicine. introduction to the NanoTEST project.

机译:纳米药物中使用的纳米材料的生物影响评估。 NanoTEST项目的简介。

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摘要

Therapeutic nanoparticles (NPs) are used in nanomedicine as drug carriers or imaging agents, providing increased selectivity/specificity for diseased tissues. The first NPs in nanomedicine were developed for increasing the efficacy of known drugs displaying dose-limiting toxicity and poor bioavailability and for enhancing disease detection. Nanotechnologies have gained much interest owing to their huge potential for applications in industry and medicine. It is necessary to ensure and control the biocompatibility of the components of therapeutic NPs to guarantee that intrinsic toxicity does not overtake the benefits. In addition to monitoring their toxicity in vitro, in vivo and in silico, it is also necessary to understand their distribution in the human body, their biodegradation and excretion routes and dispersion in the environment. Therefore, a deep understanding of their interactions with living tissues and of their possible effects in the human (and animal) body is required for the safe use of nanoparticulate formulations. Obtaining this information was the main aim of the NanoTEST project, and the goals of the reports collected together in this special issue are to summarise the observations and results obtained by the participating research teams and to provide methodological tools for evaluating the biological impact of NPs.
机译:治疗性纳米颗粒(NPs)在纳米医学中用作药物载体或显像剂,从而提高了对患病组织的选择性/特异性。纳米药物中的第一个NP被开发用于提高已知药物的功效,这些药物显示出剂量限制性毒性和不良生物利用度,并用于增强疾病检测能力。纳米技术因其在工业和医学领域的巨大潜力而​​引起了人们的极大兴趣。有必要确保和控制治疗性NP组分的生物相容性,以确保内在毒性不会超过其益处。除了在体外,体内和计算机上监测其毒性外,还必须了解它们在人体中的分布,其生物降解和排泄途径以及在环境中的分散性。因此,对于安全使用纳米微粒制剂,需要深入了解它们与活组织的相互作用以及它们在人体(和动物)体内的可能作用。获得此信息是NanoTEST项目的主要目的,在本期特刊中共同收集的报告的目的是总结参与研究团队的观察结果和结果,并提供评估NP的生物学影响的方法学工具。

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