首页> 外文期刊>Nano letters >One-Step Synthesis of Ultrasmall and Ultrabright Organosilica Nanodots with 100% Photoluminescence Quantum Yield: Long-Term Lysosome Imaging in Living, Fixed, and Permeabilized Cells
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One-Step Synthesis of Ultrasmall and Ultrabright Organosilica Nanodots with 100% Photoluminescence Quantum Yield: Long-Term Lysosome Imaging in Living, Fixed, and Permeabilized Cells

机译:具有100%光致发光量子产率的超超容器和超大有机型纳米蛋白的一步合成:生活,固定和透氧细胞的长期溶酶体成像

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摘要

Water-dispersible nanomaterials with superbright photoluminescence (PL) emissions and narrow PL bandwidths are urgently desired for various imaging applications. Herein, for the first time, we prepared ultrasmall organosilica nanodots (OSiNDs) with an average size of ~2.0 nm and ~100% green-emitting PL quantum efficiency via a one-step hydrothermal treatment of two commercial reagents (a silane molecule and rose bengal). In particular, the structural reorganization and halide loss of rose bengal during the hydrothermal treatment contribute to the ultrahigh quantum yield and low phototoxicity of OSiNDs. Owing to their low pH-induced precipitation/aggregation property, the as-prepared OSiNDs can be used as excellent lysosomal trackers with many advantages: (1) They have superior lysosomal targeting ability with a Pearson’s coefficient of 0.98; (2) The lysosomal monitoring time of OSiNDs is up to 48 h, which is much longer than those of commercial lysosomal trackers (<2 h); (3) They do not disturb the pH environment of lysosomes and can be used to visualize lysosomes in living, fixed, and permeabilized cells; (4) They exhibit intrinsic lysosomal tracking ability without the introduction of lysosome-targeting ligands (such as morpholine) and superior photostability; (5) The easy, cost-effective, and scalable synthetic method further ensures that these OSiNDs can be readily used as exceptional lysosomal trackers. We expect that the ultrasmall OSiNDs with superior fluorescence properties and easily modifiable surfaces could be applied as fluorescent nanoprobes, light-emitting diode phosphor, and anticounterfeiting material, which should be able to promote the preparation and application of silicon-containing nanomaterials.
机译:与超高光致发光(PL)的排放,缩小PL带宽的水分散性纳米材料是迫切期望用于各种成像应用。这里,对于第一次,我们制备了超小有机二氧化硅纳米点(OSiNDs)以〜2.0纳米的平均尺寸和〜100%的绿色发光经由两个商业试剂的一步法水热处理PL量子效率(硅烷分子和玫瑰孟加拉)。特别是,在水热处理过程中的结构重组和玫瑰红的卤化物损失向超高量子产率和OSiNDs的低光毒性。由于它们的低pH诱导的沉淀/聚集性能,所制备的OSiNDs可以用作优异的溶酶体跟踪器具有许多优点:(1)它们具有优异的溶酶体靶向具有0.98皮尔森系数的能力; (2)监视溶酶体的OSiNDs时间长达48小时,这是比那些商业溶酶体跟踪器(<2小时)的更长的时间; (3)它们不干扰溶酶体的pH环境,并且可以被用于可视化在活溶酶体,固定,透化和细胞; (4)它们显示出不引入溶酶体靶向配体(如吗啉)和优异的耐光性的固有溶酶体跟踪能力; (5)容易,成本有效,且可扩展的合成方法进一步确保这些OSiNDs可以容易地用作特殊溶酶体跟踪器。我们预计,具有优越的荧光性能和易于修改表面超小OSiNDs可以作为荧光纳米探针,发光二极管的荧光体,和防伪材料,其应该能够促进制备和含硅纳米材料的应用来施加。

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