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硅纳米颗粒:安全性综述及克服生物屏障的当前策略。

Silica nanoparticles: A review of their safety and current strategies to overcome biological barriers.

机构信息

School of Pharmacy, The University of Queensland, Brisbane, QLD 4102, Australia.

School of Pharmacy, The University of Queensland, Brisbane, QLD 4102, Australia.

出版信息

Adv Drug Deliv Rev. 2023 Dec;203:115115. doi: 10.1016/j.addr.2023.115115. Epub 2023 Oct 14.

Abstract

Silica nanoparticles (SNP) have gained tremendous attention in the recent decades. They have been used in many different biomedical fields including diagnosis, biosensing and drug delivery. Medical uses of SNP for anti-cancer, anti-microbial and theranostic applications are especially prominent due to their exceptional performance to deliver many different small molecules and recently biologics (mRNA, siRNA, antigens, antibodies, proteins, and peptides) at targeted sites. The physical and chemical properties of SNP such as large specific surface area, tuneable particle size and porosity, excellent biodegradability and biocompatibility make them an ideal drug delivery and diagnostic platform. Based on the available data and the pre-clinical performance of SNP, recent interest has driven these innovative materials towards clinical application with many of the formulations already in Phase I and Phase II trials. Herein, the progress of SNP in biomedical field is reviewed, and their safety aspects are analysed. Importantly, we critically evaluate the key structural characteristics of SNP to overcome different biological barriers including the blood-brain barrier (BBB), skin, tumour barrier and mucosal barrier. Future directions, potential pathways, and target areas towards rapid clinical translation of SNP are also recommended.

摘要

硅纳米颗粒(SNP)在最近几十年受到了极大的关注。它们已被应用于许多不同的生物医学领域,包括诊断、生物传感和药物输送。由于 SNP 在靶向输送多种不同小分子和最近的生物制剂(mRNA、siRNA、抗原、抗体、蛋白质和肽)方面的卓越性能,SNP 在抗癌、抗菌和治疗应用方面的医学用途尤为突出。SNP 的物理和化学性质,如大的比表面积、可调的粒径和孔隙率、优异的生物降解性和生物相容性,使它们成为理想的药物输送和诊断平台。基于现有数据和 SNP 的临床前表现,最近的兴趣促使这些创新材料向临床应用发展,许多制剂已经进入 I 期和 II 期临床试验。本文综述了 SNP 在生物医学领域的进展,并分析了其安全性方面。重要的是,我们批判性地评估了 SNP 的关键结构特征,以克服包括血脑屏障(BBB)、皮肤、肿瘤屏障和黏膜屏障在内的不同生物学屏障。还建议了 SNP 快速临床转化的未来方向、潜在途径和目标领域。

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