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Silk Fibroin Coated Magnesium Oxide Nanospheres: A Biocompatible and Biodegradable Tool for Noninvasive Bioimaging Applications

机译:丝素蛋白涂覆氧化镁纳米球:一种用于非侵入性的生物分析应用的生物相容性和可生物降解的工具

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摘要

Fluorescent nanoparticles (NPs) have been increasingly studied as contrast agents for better understanding of biological processes at the cellular and molecular level. However, their use as bioimaging tools is strongly dependent on their optical emission as well as their biocompatibility. This work reports the fabrication and characterization of silk fibroin (SF) coated magnesium oxide (MgO) nanospheres, containing oxygen, Cr3+ and V2+ related optical defects, as a nontoxic and biodegradable hybrid platform for bioimaging applications. The MgO-SF spheres demonstrated enhanced emission efficiency compared to noncoated MgO NPs. Furthermore, SF sphere coating was found to overcome agglomeration limitations of the MgO NPs. The hybrid nanospheres were investigated as an in vitro bioimaging tool by recording their cellular uptake, trajectories, and mobility in human skin keratinocytes cells (HaCaT), human glioma cells (U87MG) and breast cancer cells (MCF7). Enhanced cellular uptake and improved intracellular mobilities of MgO-SF spheres compared to MgO NPs was demonstrated in three different cell lines. Validated infrared and bright emission of MgO-SF NP indicate their prospects for in vivo imaging. The results identify the potential of the hybrid MgO-SF nanospheres for bioimaging. This study may also open new avenues to optimize drug delivery through biodegradable silk and provide noninvasive functional imaging feedback on the therapeutic processes through fluorescent MgO.
机译:荧光纳米颗粒(NPS)已经越来越多地研究了造影剂,以便更好地理解细胞和分子水平的生物过程。然而,它们用作生物体验工具的用途强烈依赖于其光学发射以及它们的生物相容性。该工作报告了丝素蛋白(SF)涂覆的氧化镁(MgO)纳米球的制备和表征,含氧,Cr3 +和V2 +相关光学缺陷,作为用于生物分析应用的无毒和可生物降解的混合平台。与非涂覆的MgO NP相比,MgO-SF球体表现出增强的发射效率。此外,发现SF球形涂层克服MgO NP的聚集限制。通过在人体皮肤角质细胞细胞(HACAT),人胶瘤细胞(U87MG)和乳腺癌细胞(MCF7)中记录其细胞吸收,轨迹和移动性,通过记录其细胞吸收,轨迹和迁移率来研究杂化纳米球作为体外生物成像工具。与MgO NPS相比,增强了细胞摄取和改善了MgO-SF球体的细胞内迁移率,以三种不同的细胞系列。经过验证的红外线和明亮的MgO-SF NP发出,表明了他们在体内成像的前景。结果鉴定了杂交MgO-SF纳米球体用于生物成像的潜力。该研究还可以通过可生物降解的丝度开放新的途径,以优化药物递送,并通过荧光MgO提供对治疗过程的非冒效功能成像反馈。

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