Gulumian Mary, Andraos Charlene
1 National Institute for Occupational Health (NIOH), Johannesburg, South Africa.
2 Haematology and Molecular Medicine Department, School of Pathology, University of the Witwatersrand, Johannesburg, South Africa.
Toxicol Pathol. 2018 Jan;46(1):4-13. doi: 10.1177/0192623317735776. Epub 2017 Oct 15.
Multiple applications of nanomaterials have raised concern with regard to their toxicity. With increasing research into nanomaterial safety, mechanisms involved in the toxic effects of nanomaterials have begun to emerge. The importance of nanomaterial-induced lysosomal membrane permeabilization through overloading or direct damage of the lysosomal compartment, resulting in the blockade of autophagosome-lysosome fusion and autophagy dysfunction, as well as inflammasome activation were cited as emerging mechanisms of nanomaterial toxicity. It has recently been proposed that these very mechanisms leading to nanomaterial toxicity may be utilized in nanotherapeutics. This review discusses these nanomaterial-induced mechanisms in detail and how it has been exploited in cancer research. This review also addresses certain considerations that need to be kept in mind when using nanomaterials in therapeutics.
纳米材料的多种应用引发了人们对其毒性的关注。随着对纳米材料安全性研究的不断深入,纳米材料毒性作用所涉及的机制已开始显现。纳米材料通过使溶酶体区室过载或直接损伤导致溶酶体膜通透性增加,进而导致自噬体 - 溶酶体融合受阻和自噬功能障碍,以及炎性小体激活,这些被认为是纳米材料毒性的新出现机制。最近有人提出,这些导致纳米材料毒性的机制可能会被用于纳米治疗。本综述详细讨论了这些纳米材料诱导的机制,以及它们在癌症研究中的应用。本综述还讨论了在治疗中使用纳米材料时需要考虑的某些事项。