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B12 缀合纳米颗粒在气道上皮中的摄取和转运。

Uptake and transport of B12-conjugated nanoparticles in airway epithelium.

机构信息

Division of Drug Delivery and Tissue Engineering, School of Pharmacy, University of Nottingham, Nottingham NG7 2RD, UK.

Division of Molecular and Cellular Science, School of Pharmacy, University of Nottingham, Nottingham NG7 2RD, UK.

出版信息

J Control Release. 2013 Nov 28;172(1):374-381. doi: 10.1016/j.jconrel.2013.08.028. Epub 2013 Sep 2.

Abstract

Non-invasive delivery of biotherapeutics, as an attractive alternative to injections, could potentially be achieved through the mucosal surfaces, utilizing nanoscale therapeutic carriers. However, nanoparticles do not readily cross the mucosal barriers, with the epithelium presenting a major barrier to their translocation. The transcytotic pathway of vitamin B12 has previously been shown to 'ferry' B12-decorated nanoparticles across intestinal epithelial (Caco-2) cells. However, such studies have not been reported for the airway epithelium. Furthermore, the presence in the airways of the cell machinery responsible for transepithelial trafficking of B12 is not widely reported. Using a combination of molecular biology and immunostaining techniques, our work demonstrates that the bronchial cell line, Calu-3, expresses the B12-intrinsic factor receptor, the transcobalamin II receptor and the transcobalamin II carrier protein. Importantly, the work showed that sub-200 nm model nanoparticles chemically conjugated to B12 were internalised and transported across the Calu-3 cell layers, with B12 conjugation not only enhancing cell uptake and transepithelial transport, but also influencing intracellular trafficking. Our work therefore demonstrates that the B12 endocytotic apparatus is not only present in this airway model, but also transports ligand-conjugated nanoparticles across polarised epithelial cells, indicating potential for B12-mediated delivery of nanoscale carriers of biotherapeutics across the airways.

摘要

利用纳米级治疗载体,通过黏膜表面将生物治疗剂非侵入式递送至体内,这是一种有吸引力的替代注射的方法。然而,纳米颗粒不易穿过黏膜屏障,上皮组织是它们转移的主要障碍。维生素 B12 的转胞吞途径以前被证明可以“摆渡”B12 修饰的纳米颗粒穿过肠道上皮(Caco-2)细胞。然而,这种方法在气道上皮中尚未得到报道。此外,负责 B12 跨上皮转运的细胞机制在气道中的存在也没有得到广泛报道。我们的工作结合了分子生物学和免疫染色技术,证明了支气管细胞系 Calu-3 表达 B12 内因子受体、转钴胺素 II 受体和转钴胺素 II 载体蛋白。重要的是,这项工作表明,亚 200nm 的模型纳米颗粒通过化学方法与 B12 结合后被内化并穿过 Calu-3 细胞层运输,B12 的结合不仅增强了细胞摄取和跨上皮转运,还影响了细胞内转运。因此,我们的工作表明,B12 内吞装置不仅存在于这种气道模型中,而且还可以将配体结合的纳米颗粒转运穿过极化的上皮细胞,这表明 B12 介导的生物治疗剂纳米载体在气道中的递呈具有潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/08f5/3898795/c9fce93977d2/gr2.jpg

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