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In vitro toxicity assessment of fungal-synthesized cadmium sulfide quantum dots using bacteria and seed germination models

机译:使用细菌和种子萌发模型对真菌合成的硫化镉量子点的体外毒性评估

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There is currently controversy over the use of quantum dots (QDs) in biological applications due to their toxic effects. Therefore, the purpose of the present study was to evaluate the toxic effect of chemical and biogenic (synthesized by Fusarium oxysporum f. sp. lycopersici) cadmium sulfide quantum dots (CdSQDs) using a bacterial model of Escherichia coli and sprouts of Lactuca sativa L. with the aim to foresee its use in the near future in biological systems. Physicochemical properties of both types of CdSQDs were determined by TEM, XRD, zeta potential and fluorescence spectroscopy. Both biogenic and chemical CdSQDs showed agglomerates of spherical CdSQDs with diameters of 4.14 nm and 3.2 nm, respectively. The fluorescence analysis showed a band around 361 nm in both CdSQDs, the zeta potential was -1.81 mV for the biogenic CdSQDs and -5.85 mv for the chemical CdSQDs. Results showed that chemical CdSQDs, presented inhibition in the proliferation of E. coli cell in a dose-dependent manner, unlike biogenic CdSQDs, that only at its highest concentration showed an antibacterial activity. Also, it was observed that after incubation with chemical and biogenic CdSQDs of L. sativa L. seeds, only the biogenic CdSQDs showed no inhibition on seed germination. In summary, our results suggest that the production route has a significant effect on the toxicity of QDs; in addition, it seems that the biological coating of the CdSQDs from F. oxysporum f. sp. lycopersici inhibit their toxic effect on bacterial strains and plant seeds.
机译:目前在生物应用中使用量子点(QDS)的争议因其毒性效应而争议。因此,本研究的目的是评估化学和生物生成的毒性效果(由富疮氧血管孢子素合成。Lycopersici)硫化镉量子点(CDSQDS)使用乳酸乳酸菌和乳酸芽孢杆菌的细菌模型。旨在预见到生物系统不久的将来的使用。通过TEM,XRD,Zeta电位和荧光光谱法测定两种类型CDSQDS的物理化学性质。生物和化学CDSQDS均分别显示出直径为4.14nm和3.2nm的球形CDSQDS的凝聚。荧光分析在CDSQDS中显示出约361nm的带,Zeta电位为-1.81mV,用于生物CDSQDS,化学CDSQDS -5.85mV。结果表明,化学CDSQDS,以剂量依赖性方式呈现在大肠杆菌细胞的增殖中的抑制作用,与​​生物结核病,其最高浓度仅显示出抗菌活性。而且,观察到孵育与L.Sativa L.种子的化学和生物成Cdsqds孵育后,只有生物CDSQDS对种子萌发没有抑制。总之,我们的结果表明生产路线对QDS的毒性有显着影响;此外,似乎CDSQDS来自F. Oxysporum F的生物涂层。 SP。 Lycopersici抑制它们对细菌菌株和植物种子的毒性作用。

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