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Systematic Degradation Rate Analysis of Surface-Functionalized Porous Silicon Nanoparticles

机译:表面功能化多孔硅纳米粒子的系统降解速率分析

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摘要

Porous silicon nanoparticles (pSiNPs) have been utilized within a wide spectrum of biological studies, as well as in chemistry, chemical biology, and biomedical fields. Recently, pSiNPs have been constantly coming under the spotlight, mostly in biomedical applications, due to their advantages, such as controlled-release drug delivery in vivo by hydrolysis-induced degradation, self-reporting property through long life-time photoluminescence, high loading efficiency of substrate into pore, and the homing to specific cells/organ/bacteria by surface functionalization. However, the systematic degradation rate analysis of surface-functionalized pSiNPs in different biological media has not been conducted yet. In this paper, we prepared four different surface-functionalized pSiNPs samples and analyzed the degradation rate in six different media (DI H2O (deionized water), PBS (phosphate-buffered saline), HS (human serum), DMEM (Dulbecco’s modified Eagle’s medium), LB (lysogeny broth), and BHI (brain heart infusion)). The obtained results will now contribute to understanding the correlation between surface functionalization in the pSiNPs and the degradation rate in different biological media. The characterized data with the author’s suggestions will provide useful insights in designing the new pSiNPs formulation for biomedical applications.
机译:多孔硅纳米颗粒(pSiNPs)已被广泛用于生物学研究以及化学,化学生物学和生物医学领域。最近,pSiNPs的优势,例如水解诱导的降解在体内控制释放的药物递送,长寿命的光致发光的自我报告特性,高的装载效率等,一直在聚光灯下,主要在生物医学应用中受到关注。将底物进入孔中,并通过表面功能化归巢到特定的细胞/器官/细菌。但是,尚未对不同生物介质中的表面官能化pSiNPs进行系统的降解速率分析。在本文中,我们制备了四种不同的表面官能化pSiNPs样品,并分析了六种不同介质(去离子水,去离子水,PBS(磷酸盐缓冲盐水),HS(人血清),DMEM(Dulbecco改良的Eagle介质) ),LB(溶原性肉汤)和BHI(脑心浸液))。现在获得的结果将有助于理解pSiNPs中的表面功能化与不同生物介质中降解速率之间的相关性。具有作者建议的特征数据将为设计用于生物医学应用的新型pSiNPs配方提供有用的见识。

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