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烟草花叶病毒功能化介孔硅纳米粒子,一种用于药物输送的羊毛球状纳米结构。

Tobacco Mosaic Virus-Functionalized Mesoporous Silica Nanoparticles, a Wool-Ball-like Nanostructure for Drug Delivery.

机构信息

Department of Physical Chemistry, Biomedical Research Center (CINBIO), Southern Galicia Institute of Health Research (IISGS), and Biomedical Research Networking Center for Mental Health (CIBERSAM) , Universidade de Vigo , 36310 Vigo , Spain.

Department of Biomedical Engineering , Case Western Reserve University Schools of Medicine and Engineering , Cleveland , Ohio 44106 , United States.

出版信息

Langmuir. 2019 Jan 8;35(1):203-211. doi: 10.1021/acs.langmuir.8b03337. Epub 2018 Dec 21.

Abstract

The design of versatile tools to improve cell targeting and drug delivery in medicine has become increasingly pertinent to nanobiotechnology. Biological and inorganic nanocarrier drug delivery systems are being explored, showing advantages and disadvantages in terms of cell targeting and specificity, cell internalization, efficient payload delivery, and safety profiles. Combining the properties of a biological coating on top of an inorganic nanocarrier, we hypothesize that this hybrid system would improve nanoparticle-cell interactions, resulting in enhanced cell targeting and uptake properties compared to the bare inorganic nanocarrier. Toward this goal, we engineered a hierarchical assembly featuring the functionalization of cargo-loaded mesoporous silica nanoparticles (MSNPs) with tobacco mosaic virus (TMV) as a biological coating. The MSNP functions as a delivery system because the porous structure enables high therapeutic payload capacity, and TMV serves as a biocompatible coating to enhance cell interactions. The resulting MSNP@TMV nanohybrids have a wool-ball-like appearance and demonstrate enhanced cell uptake, hence cargo delivery properties. The MSNP@TMV have potential for medical applications such as drug delivery, contrast agent imaging, and immunotherapy.

摘要

多功能工具的设计在医学领域中用于提高细胞靶向性和药物递送已成为纳米生物技术的一个重要研究方向。目前正在探索生物和无机纳米载体药物递送系统,这些系统在细胞靶向性和特异性、细胞内化、有效载荷递送以及安全性方面都具有各自的优缺点。我们假设,将生物涂层与无机纳米载体结合起来,可以改善纳米颗粒与细胞的相互作用,从而与裸无机纳米载体相比,提高纳米颗粒的细胞靶向性和摄取特性。为了实现这一目标,我们设计了一种分层组装结构,即用烟草花叶病毒(TMV)对载药介孔硅纳米颗粒(MSNPs)进行功能化,作为生物涂层。MSNP 作为一种递送系统,因为其多孔结构可以实现高治疗性载药能力,而 TMV 作为一种生物相容性涂层,可以增强细胞相互作用。所得的 MSNP@TMV 纳米杂化物具有羊毛球样的外观,并表现出增强的细胞摄取能力,从而提高了载药性能。MSNP@TMV 在药物递送、对比剂成像和免疫治疗等医学应用方面具有潜在用途。

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