Cargando…

Rapid and Highly Efficient Genetic Transformation and Application of Interleukin-17B Expressed in Duckweed as Mucosal Vaccine Adjuvant

Molecular farming utilizes plants as a platform for producing recombinant biopharmaceuticals. Duckweed, the smallest and fastest growing aquatic plant, is a promising candidate for molecular farming. However, the efficiency of current transformation methods is generally not high in duckweed. Here, w...

Descripción completa

Detalles Bibliográficos
Autores principales: Tan, Xiao, Chen, Shuang, Fang, Yang, Liu, Penghui, Hu, Zhubin, Jin, Yanling, Yi, Zhuolin, He, Kaize, Li, Xing, Zhao, Leyi, Wang, Hongning, Zhao, Hai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9775668/
https://www.ncbi.nlm.nih.gov/pubmed/36551310
http://dx.doi.org/10.3390/biom12121881
_version_ 1784855701066088448
author Tan, Xiao
Chen, Shuang
Fang, Yang
Liu, Penghui
Hu, Zhubin
Jin, Yanling
Yi, Zhuolin
He, Kaize
Li, Xing
Zhao, Leyi
Wang, Hongning
Zhao, Hai
author_facet Tan, Xiao
Chen, Shuang
Fang, Yang
Liu, Penghui
Hu, Zhubin
Jin, Yanling
Yi, Zhuolin
He, Kaize
Li, Xing
Zhao, Leyi
Wang, Hongning
Zhao, Hai
author_sort Tan, Xiao
collection PubMed
description Molecular farming utilizes plants as a platform for producing recombinant biopharmaceuticals. Duckweed, the smallest and fastest growing aquatic plant, is a promising candidate for molecular farming. However, the efficiency of current transformation methods is generally not high in duckweed. Here, we developed a fast and efficient transformation procedure in Lemna minor ZH0403, requiring 7–8 weeks from screening calluses to transgenic plants with a stable transformation efficiency of 88% at the DNA level and 86% at the protein level. We then used this transformation system to produce chicken interleukin-17B (chIL-17B). The plant-produced chIL-17B activated the NF-κB pathway, JAK-STAT pathway, and their downstream cytokines in DF-1 cells. Furthermore, we administrated chIL-17B transgenic duckweed orally as an immunoadjuvant with mucosal vaccine against infectious bronchitis virus (IBV) in chickens. Both IBV-specific antibody titer and the concentration of secretory immunoglobulin A (sIgA) were significantly higher in the group fed with chIL-17B transgenic plant. This indicates that the duckweed-produced chIL-17B enhanced the humoral and mucosal immune responses. Moreover, chickens fed with chIL-17B transgenic plant demonstrated the lowest viral loads in different tissues among all groups. Our work suggests that cytokines are a promising adjuvant for mucosal vaccination through the oral route. Our work also demonstrates the potential of duckweed in molecular farming.
format Online
Article
Text
id pubmed-9775668
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-97756682022-12-23 Rapid and Highly Efficient Genetic Transformation and Application of Interleukin-17B Expressed in Duckweed as Mucosal Vaccine Adjuvant Tan, Xiao Chen, Shuang Fang, Yang Liu, Penghui Hu, Zhubin Jin, Yanling Yi, Zhuolin He, Kaize Li, Xing Zhao, Leyi Wang, Hongning Zhao, Hai Biomolecules Article Molecular farming utilizes plants as a platform for producing recombinant biopharmaceuticals. Duckweed, the smallest and fastest growing aquatic plant, is a promising candidate for molecular farming. However, the efficiency of current transformation methods is generally not high in duckweed. Here, we developed a fast and efficient transformation procedure in Lemna minor ZH0403, requiring 7–8 weeks from screening calluses to transgenic plants with a stable transformation efficiency of 88% at the DNA level and 86% at the protein level. We then used this transformation system to produce chicken interleukin-17B (chIL-17B). The plant-produced chIL-17B activated the NF-κB pathway, JAK-STAT pathway, and their downstream cytokines in DF-1 cells. Furthermore, we administrated chIL-17B transgenic duckweed orally as an immunoadjuvant with mucosal vaccine against infectious bronchitis virus (IBV) in chickens. Both IBV-specific antibody titer and the concentration of secretory immunoglobulin A (sIgA) were significantly higher in the group fed with chIL-17B transgenic plant. This indicates that the duckweed-produced chIL-17B enhanced the humoral and mucosal immune responses. Moreover, chickens fed with chIL-17B transgenic plant demonstrated the lowest viral loads in different tissues among all groups. Our work suggests that cytokines are a promising adjuvant for mucosal vaccination through the oral route. Our work also demonstrates the potential of duckweed in molecular farming. MDPI 2022-12-15 /pmc/articles/PMC9775668/ /pubmed/36551310 http://dx.doi.org/10.3390/biom12121881 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tan, Xiao
Chen, Shuang
Fang, Yang
Liu, Penghui
Hu, Zhubin
Jin, Yanling
Yi, Zhuolin
He, Kaize
Li, Xing
Zhao, Leyi
Wang, Hongning
Zhao, Hai
Rapid and Highly Efficient Genetic Transformation and Application of Interleukin-17B Expressed in Duckweed as Mucosal Vaccine Adjuvant
title Rapid and Highly Efficient Genetic Transformation and Application of Interleukin-17B Expressed in Duckweed as Mucosal Vaccine Adjuvant
title_full Rapid and Highly Efficient Genetic Transformation and Application of Interleukin-17B Expressed in Duckweed as Mucosal Vaccine Adjuvant
title_fullStr Rapid and Highly Efficient Genetic Transformation and Application of Interleukin-17B Expressed in Duckweed as Mucosal Vaccine Adjuvant
title_full_unstemmed Rapid and Highly Efficient Genetic Transformation and Application of Interleukin-17B Expressed in Duckweed as Mucosal Vaccine Adjuvant
title_short Rapid and Highly Efficient Genetic Transformation and Application of Interleukin-17B Expressed in Duckweed as Mucosal Vaccine Adjuvant
title_sort rapid and highly efficient genetic transformation and application of interleukin-17b expressed in duckweed as mucosal vaccine adjuvant
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9775668/
https://www.ncbi.nlm.nih.gov/pubmed/36551310
http://dx.doi.org/10.3390/biom12121881
work_keys_str_mv AT tanxiao rapidandhighlyefficientgenetictransformationandapplicationofinterleukin17bexpressedinduckweedasmucosalvaccineadjuvant
AT chenshuang rapidandhighlyefficientgenetictransformationandapplicationofinterleukin17bexpressedinduckweedasmucosalvaccineadjuvant
AT fangyang rapidandhighlyefficientgenetictransformationandapplicationofinterleukin17bexpressedinduckweedasmucosalvaccineadjuvant
AT liupenghui rapidandhighlyefficientgenetictransformationandapplicationofinterleukin17bexpressedinduckweedasmucosalvaccineadjuvant
AT huzhubin rapidandhighlyefficientgenetictransformationandapplicationofinterleukin17bexpressedinduckweedasmucosalvaccineadjuvant
AT jinyanling rapidandhighlyefficientgenetictransformationandapplicationofinterleukin17bexpressedinduckweedasmucosalvaccineadjuvant
AT yizhuolin rapidandhighlyefficientgenetictransformationandapplicationofinterleukin17bexpressedinduckweedasmucosalvaccineadjuvant
AT hekaize rapidandhighlyefficientgenetictransformationandapplicationofinterleukin17bexpressedinduckweedasmucosalvaccineadjuvant
AT lixing rapidandhighlyefficientgenetictransformationandapplicationofinterleukin17bexpressedinduckweedasmucosalvaccineadjuvant
AT zhaoleyi rapidandhighlyefficientgenetictransformationandapplicationofinterleukin17bexpressedinduckweedasmucosalvaccineadjuvant
AT wanghongning rapidandhighlyefficientgenetictransformationandapplicationofinterleukin17bexpressedinduckweedasmucosalvaccineadjuvant
AT zhaohai rapidandhighlyefficientgenetictransformationandapplicationofinterleukin17bexpressedinduckweedasmucosalvaccineadjuvant