掺杂铽的铝酸锶纳米磷:植物细胞中的细胞毒性、植物毒性和生物成像

Neenu Mary Thomas , Naijil George , M.O. Viji , E.I Anila
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引用次数: 0

摘要

本研究探讨了掺铽铝酸锶纳米粒子在植物细胞荧光成像中的新应用。研究内容包括微波辅助固态合成、掺铽铝酸锶纳米磷酸盐的结构和光学表征、其在植物和动物细胞中的毒性研究,以及将其用作植物成像的荧光染料。X 射线衍射图样分析和里特维尔德细化研究表明,SrAl2O4 是主要的结晶相。光致发光研究表明,Tb3+过渡层发出绿色荧光。利用 L929 成纤维细胞研究了掺铽铝酸锶纳米磷酸盐的体外生物相容性。此外,还利用蕨类植物研究了植物毒性。我们还进一步研究了样品在生物成像方面的潜力。我们的研究结果表明,这些纳米颗粒改善了幼苗的生长,是植物相关研究中很有前途的工具。这项研究加深了我们对纳米粒子与植物相互作用的理解,并有望在农业领域实现变革性应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tb-doped strontium aluminate nanophosphor: Cytotoxicity, phytotoxicity, and bioimaging in plant cells

This study explores the novel application of terbium-doped strontium aluminate nanoparticles for fluorescence imaging in plant cells. The study encompasses microwave assisted solid state synthesis as well as the structural and optical characterization of terbium-doped strontium aluminate nanophosphors, their toxicity studies in plant and animal cells and their use as a fluorescent dye for plant imaging. The X-ray diffraction pattern analysis, along with Rietveld refinement studies, show the formation of SrAl2O4 as a dominant crystalline phase. Photoluminescence investigations demonstrate green emission from Tb3+ transition levels. In vitro biocompatibility of terbium-doped strontium aluminate nanophosphors was studied using L929 fibroblast cells. The plant Clitoria ternatea was used to examine phytotoxicity. The samples' potential for bioimaging was further investigated. Our findings reveal improved growth of seedlings, positioning these nanoparticles as promising tools in plant-related research. This study advances our understanding of nanoparticle-plant interactions and holds potential for transformative applications in agriculture.

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