首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Pulmonary delivery of an erythropoietin Fc fusion protein in non-human primates through an immunoglobulin transport pathway
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Pulmonary delivery of an erythropoietin Fc fusion protein in non-human primates through an immunoglobulin transport pathway

机译:通过免疫球蛋白转运途径在非人灵长类动物中肺促红细胞生成素Fc融合蛋白的肺部递送

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摘要

Administration of therapeutic proteins by methods other than injection is limited, in part, by inefficient penetration of epithelial barriers. Therefore, unique approaches to breaching these barriers are needed. The neonatal constant region fragment (Fc) receptor (FcRn), which is responsible for IgG transport across the intestinal epithelium in newborn rodents, is expressed in epithelial cells in adult humans and non-human primates. Here we show that FcRn-mediated transport is functional in the lung of non-human primates and that this transport system can be used to deliver erythropoietin (Epo) when it is conjugated to the Fc domain of IgG1. FcRn-dependent absorption was more efficient when the EpoFc fusion protein was deposited predominantly in the upper and central airways of the lung, where epithelial expression of FcRn was most prominently detected. To optimize fusion protein absorption in the lung, we created a recombinant “monomeric-Epo” Fc fusion protein comprised of a single molecule of Epo conjugated to a dimeric Fc. This fusion protein exhibited enhanced pharmacokinetic and pharmacodynamic properties. The bioavailability of the EpoFc monomer when delivered through the lung was approximately equal to that reported for unconjugated Epo delivered s.c. in humans. These studies show that FcRn can be harnessed to noninvasively deliver bioactive proteins into the systemic circulation in therapeutic quantities.
机译:通过注射以外的方法施用治疗性蛋白质,部分地受到上皮屏障穿透效率的限制。因此,需要独特的方法来突破这些障碍。新生恒区片段(Fc)受体(FcRn),负责IgG在新生啮齿类动物中穿过肠道上皮的运输,在成年人类和非人类灵长类动物的上皮细胞中表达。在这里,我们显示FcRn介导的转运在非人灵长类动物的肺中起作用,并且当该转运系统与IgG1的Fc结构域缀合时,可用于递送促红细胞生成素(Epo)。当EpoFc融合蛋白主要沉积在肺的上呼吸道和中央气道中时,FcRn依赖的吸收更有效,在肺中最明显地检测到FcRn的上皮表达。为了优化融合蛋白在肺中的吸收,我们创建了重组“单体-Epo” Fc融合蛋白,该蛋白由与二聚体Fc缀合的单分子Epo组成。该融合蛋白表现出增强的药代动力学和药效学性质。当通过肺递送时,EpoFc单体的生物利用度大约等于报道的未结合的Epo s.c的生物利用度。在人类中。这些研究表明,可以利用FcRn以治疗量将生物活性蛋白无创地输送到全身循环中。

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