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The Establishment and Application Studies on Precise Lysosome pH Indicator Based on Self-Decomposable Nanoparticles

机译:基于自我可分解纳米颗粒的精确溶酶体pH指标的建立与应用研究

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Acidic pH of lysosomes is closely related to autophagy; thus, well known of the precise lysosomes, pH changes will give more information on the autophagy process and status. So far, however, only pH changes in a relatively broad range could be indicated, the exact lysosomes pH detection has never arrived. In our study, we established an endo/lysosome pH indicator based on the self-decomposable SiO_(2)nanoparticle system with specific synthesis parameters. The central concentrated methylene blue (MB) in the central-hollow structural nanoparticles presented sensitive release as a function of pH values from pH?4.0–4.8, which is exactly the pH range of lysosomes. The linear correlation of the optical density (OD) values and the pH values has been built up, which has been used for the detection of lysosomes pH in 6 different cell lines. Moreover, by this system, we succeeded in precisely detecting the pH average changes of lysosomes before and after black mesoporous silicon (BPSi) NP endocytosis, clarifying the mechanism of the autophagy termination after BPSi endocytosis. So, the self-decomposable nanoparticle-based luminal pH indicator may provide a new methodology and strategy to know better of the lysosome pH, then indicate more details on the autophagy process or other important signaling about metabolisms.
机译:溶酶体的酸性pH与自噬密切相关;因此,众所周知的精确溶酶体,pH变化将提供有关自噬过程和状态的更多信息。然而,到目前为止,只有相对宽范围的pH变化可以表明,精确的溶酶体pH检测从未到达。在我们的研究中,我们在具有特定合成参数的自我分解的SiO_(2)纳米粒子系统的基础上建立了内诺/溶酶体pH指示器。中枢间隙结构纳米颗粒中的中央浓缩亚甲基蓝色(MB)呈现敏感释放作为来自pH值的pH值的函数,这正是溶酶体的pH范围。已经建立了光密度(OD)值和pH值的线性相关性,已经用于检测6种不同的细胞系中的溶酶体pH。此外,通过该系统,我们成功地精确地检测了黑中孔硅(BPSI)NP内吞作用前后溶酶体的pH平均变化,阐明了BPSI内吞作用后自噬终止的机制。因此,自我可分解的基于纳米粒子的腔室pH指示器可以提供新的方法和策略,以了解更好的溶酶体pH,然后指出关于自噬过程或关于代谢的其他重要信号传导的细节。

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