Sakagami Masahiro, Omidi Yadollah, Campbell Lee, Kandalaft Lana E, Morris Christopher J, Barar Jaleh, Gumbleton Mark
Department of Pharmaceutics, School of Pharmacy, Virginia Commonwealth University, Richmond, 23298-0533, USA.
Pharm Res. 2006 Feb;23(2):270-9. doi: 10.1007/s11095-005-9226-0. Epub 2006 Jan 1.
The neonatal constant region fragment receptor (FcRn) binds and transports IgG. FcRn expression in the upper tracheobronchial airways of the lung is recognized. In this study, we sought to characterize the functional expression of FcRn within alveolar regions of lung tissue.
FcRn immunohistochemistry was performed on intact rat lung. FcRn expression [Western blot, reverse transcription-polymerase chain reaction (RT-PCR), and immunofluorescence microscopy] and IgG transport functionality were assessed in an in vitro rat alveolar epithelial primary cell culture model. An isolated perfused rat lung model was used to examine IgG transport across pulmonary epithelium from airspace to perfusate.
FcRn is expressed in intact alveolar epithelium, substantiated by expression and functionality in an in vitro alveolar epithelial model within which IgG transport was temperature sensitive, concentration dependent, and inhibited by excess unlabeled IgG and, to a disproportionate level, by anti-FcRn antibody. Saturable IgG transport across pulmonary epithelium was evident in an isolated perfused rat lung, inhibitable by competing IgG, and displayed a relatively low maximal net IgG absorptive rate of approximately 80 ng/h.
Pulmonary epithelium expresses functional FcRn providing an absorption pathway potentially important for highly potent Fcgamma-fusion proteins but unlikely to be of quantitative significance for the systemic delivery of inhaled therapeutic monoclonal IgGs.
新生儿恒定区片段受体(FcRn)可结合并转运IgG。肺上气管支气管气道中FcRn的表达已得到确认。在本研究中,我们试图描述FcRn在肺组织肺泡区域内的功能表达特征。
对完整的大鼠肺进行FcRn免疫组织化学检测。在体外大鼠肺泡上皮原代细胞培养模型中评估FcRn表达[蛋白质免疫印迹法、逆转录-聚合酶链反应(RT-PCR)和免疫荧光显微镜检查]以及IgG转运功能。使用离体灌注大鼠肺模型检查IgG从气腔到灌流液跨肺上皮的转运情况。
FcRn在完整的肺泡上皮中表达,这在体外肺泡上皮模型中的表达和功能中得到证实,在该模型中IgG转运对温度敏感、呈浓度依赖性,并受到过量未标记IgG以及抗FcRn抗体(程度不成比例)的抑制。在离体灌注大鼠肺中,可饱和的IgG跨肺上皮转运明显,可被竞争性IgG抑制,并且显示出相对较低的最大净IgG吸收率,约为80 ng/h。
肺上皮表达功能性FcRn,为高效Fcγ融合蛋白提供了一条潜在重要的吸收途径,但对于吸入治疗性单克隆IgG的全身递送而言,其定量意义不大。