Cui Bei, Ren Long, Xu Qin-Han, Yin Li-Yan, Zhou Xin-Ying, Liu Jing-Xia
College of Fisheries, Key Laboratory of Freshwater Animal Breeding, Ministry of Agriculture, Huazhong Agricultural University, Wuhan, 430070, China.
Hainan Key Laboratory for Sustainable Utilization of Tropical Bioresources, Hainan University, HaiKou, 570228, China.
Aquat Toxicol. 2016 Aug;177:295-305. doi: 10.1016/j.aquatox.2016.06.005. Epub 2016 Jun 9.
Silver_ nanoparticles (AgNPs), for their attractive antimicrobial properties, have become one of the most commercial nanomaterials used recently. AgNPs are reported to be toxic to blood cells of aquatic organisms and humans, however, few studies related to toxic effects of AgNPs in hematopoiesis using an in vivo model were available. Firstly, microarrays were applied to reveal transcriptional responses of zebrafish embryos to AgNPs at 24h post-fertilization (hpf)in this study, and hemoglobin genes were found to be down-regulated by AgNPs and to be enriched in the top 10 categories by Gene Ontology (GO) analysis. The reduced expressions of hemoglobin were further demonstrated by qRT-PCR detection, whole-mount in situ hybridization, and O-dianisidine staining at transcriptional and translational level. Next, the commitment of mesoderm, specification of hematopoietic progenitor cells and differentiation of erythroids were detected at different developmental stages in AgNPs-exposed embryos, and erythrogenesis were found to be inhibited by AgNPs in developmental-stage-specific and cell-specific manners. Finally, it was pointed out that AgNPs affected erythrogenesis mostly by their particles other than their releasing ions.
银纳米颗粒(AgNPs)因其具有吸引人的抗菌特性,已成为近来使用最为广泛的商业纳米材料之一。据报道,AgNPs对水生生物和人类的血细胞有毒性,然而,利用体内模型研究AgNPs在造血过程中的毒性作用的研究却很少。首先,在本研究中应用微阵列来揭示斑马鱼胚胎在受精后24小时(hpf)对AgNPs的转录反应,发现血红蛋白基因被AgNPs下调,并且通过基因本体论(GO)分析在前十类别中富集。通过qRT-PCR检测、整体原位杂交以及在转录和翻译水平上的邻联茴香胺染色进一步证实了血红蛋白表达的降低。接下来,在暴露于AgNPs的胚胎的不同发育阶段检测中胚层的定向、造血祖细胞的特化以及红细胞的分化,发现AgNPs以发育阶段特异性和细胞特异性方式抑制红细胞生成。最后,指出AgNPs主要通过其颗粒而非释放的离子影响红细胞生成。