内化
抗体
胃肠上皮
上皮
抗原
微熔池
免疫学
受体
肠上皮
病毒学
免疫系统
化学
生物
单域抗体
生物化学
遗传学
作者
Shruti Bakshi,Raquel Sanz García,Hans Van der Weken,Ashuwini Tharad,Shubham Pandey,Paloma Juárez,Vikram Virdi,Bert Devriendt,Eric Cox,Ann Depicker
标识
DOI:10.1016/j.jconrel.2020.01.033
摘要
Targeting a vaccine to the mucosal surface has recently been recognized as a promising approach to efficiently induce mucosal immune responses against enteric pathogens. However, poor uptake and inefficient transport of orally delivered subunit vaccines across the intestinal epithelium combined with weak immune responses still present important bottlenecks for mucosal vaccination. A possible strategy suggested to surmount these hurdles is to target the selected antigen to transcytotic receptors, such as aminopeptidase N (APN) present on enterocytes and antigen-presenting cells (APCs). Therefore, we aimed to identify potent and selective VHHs against porcine aminopeptidase N (pAPN), that were fused to the fragment crystallizable (Fc) domain of the murine IgG2a, resulting in dimeric VHH-MG fusions. Out of a library of 30 VHH-MG fusion candidates, two fusions displaying the best binding on pAPN-expressing cells were selected and showed in vivo internalization across the porcine gut epithelium. One of these fusions triggered systemic and intestinal IgA responses upon oral administration. Our results demonstrate the potential of bivalent VHH-MG fusions as delivery vehicles for vaccine antigens. VHH-mediated targeting of antigens to APN to generate protective immunity at the mucosal surface remains to be further validated.
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