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吸入性纳米颗粒的毒理学危害——对药物递送的潜在影响

Toxicological hazards of inhaled nanoparticles--potential implications for drug delivery.

作者信息

Borm Paul J A, Kreyling Wolfgang

机构信息

Institut fur Umweltmedizinische Forschung at the University of Dusseldorf, Germany.

出版信息

J Nanosci Nanotechnol. 2004 May;4(5):521-31. doi: 10.1166/jnn.2004.081.

Abstract

Nanoparticles (NP), here defined as particles with a diameter smaller then 100 nm, are increasingly used in different applications, including drug carrier systems and to pass organ barriers such as the blood-brain barrier. On the other hand, a large body of know-how is available regarding toxicological effects of nanoparticle (NP) after inhalation. More specifically, a number of effects of inhaled NP are attributed to their (i) direct effects on the central nervous system, (ii) their translocation from the lung into the bloodstream, and (iii) their capacity to invoke inflammatory responses in the lung with subsequent systemic effects. This paper gives a brief review on the toxicology of inhaled NP, including general principles and current paradigms to explain the special case of NP in pulmonary toxicology. Since the evidence for health risks of NP after inhalation has been increasing over the last decade, this paper tries to extrapolate these findings and principles observed in inhalation toxicology into recommendations and methods for testing NP for nanocarrier purposes. A large gap is present between research on NP in inhalation toxicology and in nanoscaled drug carrying. This review recommends a closer interaction between both disciplines to gain insight in the role of NP size and properties and their mechanisms of acute and chronic interaction with biological systems.

摘要

纳米颗粒(NP),这里定义为直径小于100纳米的颗粒,在包括药物载体系统以及跨越血脑屏障等器官屏障等不同应用中越来越多地被使用。另一方面,关于吸入后纳米颗粒(NP)的毒理学效应已有大量专业知识。更具体地说,吸入NP的一些效应归因于它们:(i)对中枢神经系统的直接影响;(ii)从肺部转移到血液中;以及(iii)引发肺部炎症反应并随后产生全身效应的能力。本文简要综述了吸入NP的毒理学,包括解释NP在肺部毒理学中特殊情况的一般原则和当前范式。由于在过去十年中,吸入NP后对健康风险的证据不断增加,本文试图将这些在吸入毒理学中观察到的发现和原则外推到用于纳米载体目的的NP测试的建议和方法中。吸入毒理学中对NP的研究与纳米级药物载体研究之间存在很大差距。本综述建议这两个学科之间加强互动,以深入了解NP大小和性质的作用及其与生物系统急性和慢性相互作用的机制。

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