Kruppel 样因子在介导纳米材料的不良血管效应中的潜在作用:综述。
Potential roles of Kruppel-like factors in mediating adverse vascular effects of nanomaterials: A review.
机构信息
Hunan Province Key Laboratory of Typical Environmental Pollution and Health Hazards, School of Public Health, University of South China, Hengyang, China.
出版信息
J Appl Toxicol. 2022 Jan;42(1):4-16. doi: 10.1002/jat.4172. Epub 2021 Apr 10.
The development of nanotechnology leads to the exposure of human beings to nanomaterials (NMs), and there is a health concern about the adverse vascular effects of NMs. Current data from epidemiology, controlled human exposure, and animal studies suggested that exposure to NMs could induce cardiopulmonary effects. In support of in vivo findings, in vitro studies showed that direct contact of vascular cells with NMs could induce endothelial cell (EC) activation and promote macrophage foam cell formation, although only limited studies showed that NMs could damage vascular smooth muscle cells and promote their phenotypic switch. It has been proposed that NMs induced adverse vascular effects via different mechanisms, but it is still necessary to understand the upstream events. Kruppel-like factors (KLFs) are a set of C2H2 zinc finger transcription factors (TFs) that can regulate various aspects of vascular biology, but currently, the roles of KLF2 in mediating the adverse vascular effects of NMs have gained little attention by toxicologists. This review summarized current knowledge about the adverse vascular effects of NMs and proposed the potential roles of KLFs in mediating these effects based on available data from toxicological studies as well as the current understanding about KLFs in vascular biology. Finally, the challenges in investigating the role of KLFs in vascular toxicology were also summarized. Considering the important roles of KLFs in vascular biology, further studies are needed to understand the influence of NMs on KLFs and the downstream events.
纳米技术的发展导致人类接触到纳米材料(NMs),人们对纳米材料的不良血管效应表示担忧。目前来自流行病学、人体受控暴露和动物研究的数据表明,接触纳米材料可能会引起心肺效应。为了支持体内研究结果,体外研究表明,血管细胞与纳米材料直接接触会诱导内皮细胞(EC)活化并促进巨噬细胞泡沫细胞形成,尽管只有有限的研究表明纳米材料会损伤血管平滑肌细胞并促进其表型转换。有人提出,纳米材料通过不同的机制引起不良的血管效应,但仍有必要了解上游事件。Krüppel 样因子(KLFs)是一组 C2H2 锌指转录因子(TFs),可以调节血管生物学的各个方面,但目前,毒理学家对 KLF2 在介导纳米材料的不良血管效应中的作用关注甚少。本综述总结了当前关于纳米材料不良血管效应的知识,并根据毒理学研究中可用的数据以及当前对 KLFs 在血管生物学中的理解,提出了 KLFs 在介导这些效应中的潜在作用。最后,还总结了研究 KLFs 在血管毒理学中的作用所面临的挑战。鉴于 KLFs 在血管生物学中的重要作用,需要进一步研究以了解纳米材料对 KLFs 的影响及其下游事件。