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硅纳米颗粒的研究现状:生物分布和临床前毒性研究概述。

State of the Art of Silica Nanoparticles: An Overview on Biodistribution and Preclinical Toxicity Studies.

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy, University of Connecticut, Storrs, Connecticut, USA.

出版信息

AAPS J. 2024 Mar 21;26(3):35. doi: 10.1208/s12248-024-00906-w.

Abstract

Over the past few years, nanoparticles have drawn particular attention in designing and developing drug delivery systems due to their distinctive advantages like improved pharmacokinetics, reduced toxicity, and specificity. Along with other successful nanosystems, silica nanoparticles (SNPs) have shown promising effects for therapeutic and diagnostic purposes. These nanoparticles are of great significance owing to their modifiable surface with various ligands, tunable particle size, and large surface area. The rate and extent of degradation and clearance of SNPs depend on factors such as size, shape, porosity, and surface modification, which directly lead to varying toxic mechanisms. Despite SNPs' enormous potential for clinical and pharmaceutical applications, safety concerns have hindered their translation into the clinic. This review discusses the biodistribution, toxicity, and clearance of SNPs and the formulation-related factors that ultimately influence clinical efficacy and safety for treatment. A holistic view of SNP safety will be beneficial for developing an enabling SNP-based drug product.

摘要

在过去的几年中,由于纳米粒子具有改善药代动力学、降低毒性和提高特异性等独特优势,因此在设计和开发药物传递系统方面引起了特别关注。与其他成功的纳米系统一样,硅纳米粒子(SNPs)在治疗和诊断方面显示出了有前景的效果。这些纳米粒子具有重要意义,因为它们具有可修饰的表面,可带有各种配体、可调的粒径和大的表面积。SNPs 的降解和清除速度和程度取决于大小、形状、孔隙率和表面修饰等因素,这些因素直接导致不同的毒性机制。尽管 SNPs 在临床和药物应用方面具有巨大的潜力,但安全问题阻碍了它们向临床的转化。本综述讨论了 SNPs 的生物分布、毒性和清除以及与制剂相关的因素,这些因素最终会影响治疗的临床疗效和安全性。对 SNP 安全性的全面了解将有助于开发基于 SNP 的药物产品。

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