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dc.creatorFaisal,Mohammad
dc.creatorSaquib,Quaiser
dc.creatorAlatar,Abdulrahman A.
dc.creatorAl-Khedhairy,Abdulaziz A.
dc.creatorAhmed,Mukhtar
dc.creatorAnsari,Sabiha M.
dc.creatorAlwathnani,Hend A.
dc.creatorDwivedi,Sourabh
dc.creatorMusarrat,Javed
dc.creatorPraveen,Shelly
dc.date2016-01-01
dc.date.accessioned2019-05-02T21:22:33Z
dc.date.available2019-05-02T21:22:33Z
dc.identifierhttps://scielo.conicyt.cl/scielo.php?script=sci_arttext&pid=S0716-97602016000100020
dc.identifier.urihttp://revistaschilenas.uchile.cl/handle/2250/82625
dc.descriptionBACKGROUND: Despite manifold benefits of nanoparticles (NPs), less information on the risks of NPs to human health and environment has been studied. Cobalt oxide nanoparticles (Co3O4-NPs) have been reported to cause toxicity in several organisms. In this study, we have investigated the role of Co3O4-NPs in inducing phytotoxicity, cellular DNA damage and apoptosis in eggplant (Solanum melongena L. cv. Violetta lunga 2). To the best of our knowledge, this is the first report on Co3O4-NPs showing phytotoxicity in eggplant. RESULTS: The data revealed that eggplant seeds treated with Co3O4-NPs for 2 h at a concentration of 1.0 mg/ml retarded root length by 81.5 % upon 7 days incubation in a moist chamber. Ultrastructural analysis by transmission electron microscopy (TEM) demonstrated the uptake and translocation of Co3O4-NPs into the cytoplasm. Intracellular presence of Co3O4-NPs triggered subcellular changes such as degeneration of mitochondrial cristae, abundance of peroxisomes and excessive vacuolization. Flow cytometric analysis of Co3O4-NPs (1.0 mg/ml) treated root protoplasts revealed 157, 282 and 178 % increase in reactive oxygen species (ROS), membrane potential (APm) and nitric oxide (NO), respectively. Besides, the esterase activity in treated protoplasts was also found compromised. About 2.4-fold greater level of DNA damage, as compared to untreated control was observed in Comet assay, and 73.2 % of Co3O4-NPs treated cells appeared apoptotic in flow cytometry based cell cycle analysis. CONCLUSION: This study demonstrate the phytotoxic potential of Co3O4-NPs in terms of reduction in seed germination, root growth, greater level of DNA and mitochondrial damage, oxidative stress and cell death in eggplant. The data generated from this study will provide a strong background to draw attention on Co3O4-NPs environmental hazards to vegetable crops.
dc.formattext/html
dc.languageen
dc.publisherSociedad de Biología de Chile
dc.relation10.1186/s40659-016-0080-9
dc.rightsinfo:eu-repo/semantics/openAccess
dc.sourceBiological Research v.49 2016
dc.subjectCobalt oxide nanoparticles
dc.subjectNanotoxicity
dc.subjectDNA damage
dc.subjectApoptosis
dc.subjectOxidative stress
dc.titleCobalt oxide nanoparticles aggravate DNA damage and cell death in eggplant via mitochondrial swelling and NO signaling pathway


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