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Problems and challenges in the development and validation of human cell-based assays to determine nanoparticle-induced immunomodulatory effects

机译:在开发和验证基于人细胞的测定以确定纳米颗粒诱导的免疫调节作用的问题和挑战

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Background With the increasing use of nanomaterials, the need for methods and assays to examine their immunosafety is becoming urgent, in particular for nanomaterials that are deliberately administered to human subjects (as in the case of nanomedicines). To obtain reliable results, standardised in vitro immunotoxicological tests should be used to determine the effects of engineered nanoparticles on human immune responses. However, before assays can be standardised, it is important that suitable methods are established and validated. Results In a collaborative work between European laboratories, existing immunological and toxicological in vitro assays were tested and compared for their suitability to test effects of nanoparticles on immune responses. The prototypical nanoparticles used were metal (oxide) particles, either custom-generated by wet synthesis or commercially available as powders. Several problems and challenges were encountered during assay validation, ranging from particle agglomeration in biological media and optical interference with assay systems, to chemical immunotoxicity of solvents and contamination with endotoxin. Conclusion The problems that were encountered in the immunological assay systems used in this study, such as chemical or endotoxin contamination and optical interference caused by the dense material, significantly affected the data obtained. These problems have to be solved to enable the development of reliable assays for the assessment of nano-immunosafety.
机译:背景技术随着纳米材料的越来越多的使用,迫切需要检查其免疫安全性的方法和测定法,特别是对于故意施用于人类受试者的纳米材料(如纳米药物的情况)。为了获得可靠的结果,应该使用标准化的体外免疫毒理学测试来确定工程化纳米粒子对人类免疫应答的影响。但是,在将测定标准化之前,建立和验证合适的方法很重要。结果在欧洲实验室之间的合作研究中,对现有的免疫学和毒理学体外测定法进行了测试,并比较了它们是否适合测试纳米粒子对免疫应答的影响。所用的原型纳米颗粒是金属(氧化物)颗粒,可以通过湿法合成来定制生成,也可以粉末形式商购获得。在测定验证期间遇到了一些问题和挑战,从生物介质中的颗粒团聚和对测定系统的光学干扰到溶剂的化学免疫毒性和内毒素污染。结论在本研究中使用的免疫分析系统中遇到的问题,例如化学或内毒素污染以及致密材料引起的光学干扰,都极大地影响了获得的数据。必须解决这些问题,以开发用于评估纳米免疫安全性的可靠测定方法。

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