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In vitro cellular behaviors and toxicity assays of small-sized fluorescent silicon nanoparticles

机译:体外细胞的行为和毒性测定小型荧光硅纳米颗粒

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摘要

Extensive investigations have been carried out for evaluating the toxicology of various nanomaterials (e.g., carbon-and metal-based nanomaterials), which offer invaluable information for assessing the feasibility of nanomaterial-based wide-ranging applications. In recent years, sufficient efforts have been made to develop fluorescent small-sized silicon nanoparticles (SiNPs) as a novel optical material simultaneously featuring strong fluorescence and ultrahigh photostability, providing high promise for a myriad of biological, biomedical and electronic applications. It is worth pointing out that, despite the non-or low-toxicity of silicon, sufficient and objective toxicology evaluation of SiNPs is urgently required at both the in vitro and in vivo levels. However, there currently exists scanty information about the intracellular behaviors of the SiNPs, particularly the underlying mechanism of entry into cells and intracellular fate. Herein, we present a report aimed at determining the uptake and intracellular transport of SiNPs of ca. 4 nm diameter. Taking advantage of the strong and stable fluorescent signals of SiNPs, we reveal that these smallsized SiNPs accumulate in the plasma membrane prior to internalization, and are further internalized predominantly by clathrin-mediated and caveolae-dependent endocytosis. After endocytosis, the SiNPs are localized in early endosomes within a short time (similar to 1 h), while in up to 24 h of incubation the SiNPs are mainly transported to lysosomes in a microtubule-dependent way; and interestingly, to a smaller extent are sorted to the Golgi apparatus. Moreover, we demonstrate that there are no toxic effects of SiNPs on the cell metabolic activity and integrity of the plasma membrane.
机译:已经进行了广泛的调查评估不同的毒理学纳米材料(如碳和金属纳米材料),它提供了非常宝贵的信息评估的可行性nanomaterial-based广泛应用。最近几年,足够的努力了开发荧光小型硅纳米颗粒(SiNPs)作为一种新型光学材料同时具有强烈的荧光和超高耐光性,提供高的承诺各种各样的生物,生物医学和电子应用程序。尽管硅non-or低毒,足够的和客观的毒理学评价SiNPs迫切需要在体外和体内的水平。存在于细胞内的信息SiNPs的行为,特别是进入细胞的潜在机制细胞内的命运。旨在确定吸收和细胞内运输SiNPs ca。4纳米直径。强大和稳定的荧光的优势这些小型SiNPs信号,我们揭示SiNPs积聚在等离子体膜之前进一步内化,内化主要由clathrin-mediated和caveolae-dependent内吞作用。内吞作用,SiNPs本地化在早期核内体在很短的时间内(类似于1 h),而在24 h SiNPs孵化的主要是运送到溶酶体中microtubule-dependent方式;一个较小的程度排序高尔基仪器。没有有毒SiNPs对细胞的影响等离子体的代谢活动和完整性膜。

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