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磁驱动黏液惰性 Janus 纳载体用于增强黏液穿透和细胞摄取。

Magnetically Driven Muco-Inert Janus Nanovehicles for Enhanced Mucus Penetration and Cellular Uptake.

机构信息

Department of Biochemical Engineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300350, China.

Key Laboratory of Systems Bioengineering and Frontiers Science Center for Synthetic Biology (Ministry of Education), Tianjin University, Tianjin 300350, China.

出版信息

Molecules. 2022 Oct 27;27(21):7291. doi: 10.3390/molecules27217291.

Abstract

One of the main challenges of transmucosal drug delivery is that of enabling particles and molecules to move across the mucosal barrier of the mucosal epithelial surface. Inspired by nanovehicles and mucus-penetrating nanoparticles, a magnetically driven, mucus-inert Janus-type nanovehicle (Janus-MMSN-pCB) was fabricated by coating the zwitterionic polymer poly(carboxybetaine methacrylate) (pCB) on the mesoporous silica nanorod, which was grown on one side of superparamagnetic FeO nanoparticle using the sol-gel method. X-ray diffraction, transmission electron microscopy, vibrating sample magnetometry, and Fourier infrared spectroscopy were used to characterize the structure and morphology of the nanovehicles, proving the success of each synthesis step. The in vitro cell viability assessment of these composites using Calu-3 cell lines indicates that the nanovehicles are biocompatible in nature. Furthermore, the multiparticle tracking, Transwell system, and cell imaging experimental results demonstrate that both the modification of pCB and the application of a magnetic field effectively accelerated the diffusion of the nanovehicles in the mucus and improved the endocytosis through Calu-3. The favorable cell uptake performance of Janus-MMSN-pCB in mucus systems with/without magnetic driving proves its potential role in the diagnosis, treatment, and imaging of mucosal-related diseases.

摘要

跨黏膜药物递送的主要挑战之一是使颗粒和分子能够穿过黏膜上皮表面的黏膜屏障。受纳米载体和穿透黏液的纳米颗粒的启发,通过在介孔硅纳米棒上涂覆两性离子聚合物聚(羧基甜菜碱甲基丙烯酸酯)(pCB),制备了一种受磁场驱动的、黏液惰性的 Janus 型纳米载体(Janus-MMSN-pCB),该纳米棒是在超顺磁 FeO 纳米颗粒的一侧使用溶胶-凝胶法生长的。X 射线衍射、透射电子显微镜、振动样品磁强计和傅里叶变换红外光谱用于表征纳米载体的结构和形态,证明了每个合成步骤的成功。使用 Calu-3 细胞系对这些复合材料进行体外细胞活力评估表明,纳米载体本质上是生物相容的。此外,多颗粒跟踪、Transwell 系统和细胞成像实验结果表明,pCB 的修饰和磁场的应用都有效地加速了纳米载体在黏液中的扩散,并通过 Calu-3 增强了内吞作用。Janus-MMSN-pCB 在有/无磁场驱动的黏液系统中的良好细胞摄取性能证明了其在黏膜相关疾病的诊断、治疗和成像中的潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fd3/9654700/7eb9292e1033/molecules-27-07291-g001.jpg

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