Metalloproteins and phytochelatin synthase may confer protection against zinc oxide nanoparticle induced toxicity in Caenorhabditis elegans.
第一作者:
Natasa,Polak
第一单位:
MRC-HPA Centre for Environment & Health, School of Biomedical Sciences, King's College London, London, UK.
作者:
关键词
C. elegansCARSCdCoherent anti-Stokes Raman spectroscopyDCFH-DADLSEDXMTMetallothioneinNGMPBSPCPCAPhytochelatin synthaseROSRaman spectroscopyReactive oxygen speciesTEMZinc oxide nanoparticlesZnZnONPcadmiumdichlorodihydrofluoroscein diacetatedynamic light spectroscopyenergy-dispersive X-ray spectroscopymetallothioneinnematode growth mediumphosphate buffered salinephytochelatinprinciple component analysisqRT-PCRquantitative Real-Time polymerase chain reactionreactive oxygen speciestransmission electron microscopyzinczinc oxide nanoparticles
医学主题词
氨酰转移酶类(Aminoacyltransferases);动物(Animals);动物, 基因修饰(Animals, Genetically Modified);秀丽新小杆线虫(Caenorhabditis elegans);漂亮新小杆线虫蛋白质类(Caenorhabditis elegans Proteins);长寿(Longevity);金属纳米粒子(Metal Nanoparticles);金属蛋白质类(Metalloproteins);突变(Mutation);活性氧(Reactive Oxygen Species);氧化锌(Zinc Oxide)
DOI
10.1016/j.cbpc.2013.12.001
PMID
24333255
发布时间
2025-05-29
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