1-3-dimethylthiourea has been researched along with silver-chloride* in 1 studies
1 other study(ies) available for 1-3-dimethylthiourea and silver-chloride
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In vitro biosynthesis and genotoxicity bioassay of silver nanoparticles using plants.
Silver nanoparticles (AgNP-P) from AgNO(3) were synthesized by using the broth prepared from the aromatic spath of male inflorescence of screw pine, Pandanus odorifer (Forssk.) Kuntze AgNP-P was then characterized by UV-visible spectroscopy, transmission electron microscopy (TEM) and energy-dispersive X-ray spectroscopy (EDS). Functional groups in the broth were analyzed by Fourier Transform infrared spectroscopy (FTIR). Genotoxicity of AgNP-P was assessed by utilizing our well-established Allium cepa assay system with biomarkers including the generation reactive oxygen species (ROS: O(2)(·-) and H(2)O(2)), cell death, mitotic index, micronucleus, mitotic aberrations; and DNA damage by Comet assay. Other chemical forms of silver such as Ag(+) ion, colloidal AgCl, and AgNP-S at doses 0-80 mg L(-1) were included for comparison with AgNP-P. The results revealed that AgNP-P and AgNP-S exhibited similar biological effects in causing lesser extent of cytotoxicity and greater extent of genotoxicity than that was exhibited by Ag(+) ion alone. Among different tested chemical forms of silver, colloidal AgCl was identified to be the least cytotoxic and genotoxic. Cell death and DNA-damage induced by AgNP-P were prevented by Tiron and dimethyl thiourea that scavenge O(2)(·-) and H(2)O(2), respectively. The present findings demonstrated the role of ROS in the AgNP-induced cell death and DNA damage. Topics: 1,2-Dihydroxybenzene-3,5-Disulfonic Acid Disodium Salt; Allium; Biomarkers; Cell Death; Comet Assay; DNA Damage; Hydrogen Peroxide; Metal Nanoparticles; Micronucleus Tests; Microscopy, Electron, Transmission; Oxidative Stress; Pandanaceae; Reactive Oxygen Species; Silver; Silver Compounds; Silver Nitrate; Spectrometry, X-Ray Emission; Thiourea; Toxicity Tests | 2011 |