Ladel Simone, Maigler Frank, Flamm Johannes, Schlossbauer Patrick, Handl Alina, Hermann Rebecca, Herzog Helena, Hummel Thomas, Mizaikoff Boris, Schindowski Katharina
Institute of Applied Biotechnology, University of Applied Science Biberach, Hubertus-Liebrecht Straße 35, 88400 Biberach, Germany.
Faculty of Natural Science, University of Ulm, Albert-Einstein-Allee 11, 89081 Ulm, Germany.
Pharmaceutics. 2020 Oct 23;12(11):1014. doi: 10.3390/pharmaceutics12111014.
Although we have recently reported the involvement of neonatal Fc receptor (FcRn) in intranasal transport, the transport mechanisms are far from being elucidated. Ex vivo porcine olfactory tissue, primary cells from porcine olfactory epithelium (OEPC) and the human cell line RPMI 2650 were used to evaluate the permeation of porcine and human IgG antibodies through the nasal mucosa. IgGs were used in their wild type and deglycosylated form to investigate the impact of glycosylation. Further, the expression of FcRn and Fc-gamma receptor (FCGR) and their interaction with IgG were analyzed. Comparable permeation rates for human and porcine IgG were observed in OEPC, which display the highest expression of FcRn. Only traces of porcine IgGs could be recovered at the basolateral compartment in ex vivo olfactory tissue, while human IgGs reached far higher levels. Deglycosylated human IgG showed significantly higher permeation in comparison to the wild type in RPMI 2650 and OEPC, but insignificantly elevated in the ex vivo model. An immunoprecipitation with porcine primary cells and tissue identified FCGR2 as a potential interaction partner in the nasal mucosa. Glycosylation sensitive receptors appear to be involved in the uptake, transport, but also degradation of therapeutic IgGs in the airway epithelial layer.
尽管我们最近报道了新生儿Fc受体(FcRn)参与鼻内转运,但转运机制仍远未阐明。使用离体猪嗅觉组织、猪嗅觉上皮原代细胞(OEPC)和人细胞系RPMI 2650来评估猪和人IgG抗体通过鼻黏膜的渗透情况。使用野生型和去糖基化形式的IgG来研究糖基化的影响。此外,分析了FcRn和Fc-γ受体(FCGR)的表达及其与IgG的相互作用。在FcRn表达最高的OEPC中观察到人和猪IgG具有可比的渗透速率。在离体嗅觉组织的基底外侧隔室中仅能回收微量的猪IgG,而人IgG达到的水平要高得多。与野生型相比,去糖基化的人IgG在RPMI 2650和OEPC中显示出明显更高的渗透性,但在离体模型中升高不显著。用猪原代细胞和组织进行的免疫沉淀鉴定出FCGR2是鼻黏膜中潜在的相互作用伙伴。糖基化敏感受体似乎参与了气道上皮层中治疗性IgG的摄取、转运以及降解。