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A supramolecular protein chaperone for vaccine delivery

Rationale: Nanomaterials capable of specifically interacting with proteins are very important for protein storage and vaccine delivery. Supramolecular hydrogels based on peptides have emerged as promising vaccine adjuvants because of their good compatibility, ease of antigen incorporation and displa...

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Autores principales: Wang, Zhongyan, Shang, Yuna, Tan, Zhaoqi, Li, Xiaoyan, Li, Guoliang, Ren, Chunhua, Wang, Fuqiang, Yang, Zhimou, Liu, Jianfeng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6929975/
https://www.ncbi.nlm.nih.gov/pubmed/31903143
http://dx.doi.org/10.7150/thno.39132
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author Wang, Zhongyan
Shang, Yuna
Tan, Zhaoqi
Li, Xiaoyan
Li, Guoliang
Ren, Chunhua
Wang, Fuqiang
Yang, Zhimou
Liu, Jianfeng
author_facet Wang, Zhongyan
Shang, Yuna
Tan, Zhaoqi
Li, Xiaoyan
Li, Guoliang
Ren, Chunhua
Wang, Fuqiang
Yang, Zhimou
Liu, Jianfeng
author_sort Wang, Zhongyan
collection PubMed
description Rationale: Nanomaterials capable of specifically interacting with proteins are very important for protein storage and vaccine delivery. Supramolecular hydrogels based on peptides have emerged as promising vaccine adjuvants because of their good compatibility, ease of antigen incorporation and display, and efficiency in activating immune responses. Methods: We synthesized a self-assembling peptide (Fbp-G(D)F(D)F(D)Y(D)K(γE)(2)-NH(2), Comp. 1) serving as a supramolecular protein chaperone for protein antigen delivery. The gelation was triggered by simply mixing Comp. 1and proteins. The vaccine adjuvant potential of Comp. 1 was demonstrated by using two protein antigens, ovalbumin (OVA) and hepatitis B surface antigen (HBsAg). Results: The peptide derivative Comp. 1exhibited high protein binding capacity. Upon contacting proteins, Comp. 1rapidly formed coassembled nanofibers/hydrogels with the proteins, which greatly delayed the release of protein antigens. Our supramolecular protein chaperone significantly stimulated specific antibody titers by assisting protein delivery to antigen-presenting cells, promoting dendritic cell (DC) maturation, prolonging antigen accumulation and retention in the lymph nodes, and eliciting the secretion of cytokines. Most importantly, our supramolecular protein chaperone strongly stimulated the cellular immune response and significantly retarded tumor growth. Conclusion: Our study demonstrated the great potential of the supramolecular protein chaperone in protein storage and delivery, vaccine production and tumor immunotherapy.
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spelling pubmed-69299752020-01-04 A supramolecular protein chaperone for vaccine delivery Wang, Zhongyan Shang, Yuna Tan, Zhaoqi Li, Xiaoyan Li, Guoliang Ren, Chunhua Wang, Fuqiang Yang, Zhimou Liu, Jianfeng Theranostics Research Paper Rationale: Nanomaterials capable of specifically interacting with proteins are very important for protein storage and vaccine delivery. Supramolecular hydrogels based on peptides have emerged as promising vaccine adjuvants because of their good compatibility, ease of antigen incorporation and display, and efficiency in activating immune responses. Methods: We synthesized a self-assembling peptide (Fbp-G(D)F(D)F(D)Y(D)K(γE)(2)-NH(2), Comp. 1) serving as a supramolecular protein chaperone for protein antigen delivery. The gelation was triggered by simply mixing Comp. 1and proteins. The vaccine adjuvant potential of Comp. 1 was demonstrated by using two protein antigens, ovalbumin (OVA) and hepatitis B surface antigen (HBsAg). Results: The peptide derivative Comp. 1exhibited high protein binding capacity. Upon contacting proteins, Comp. 1rapidly formed coassembled nanofibers/hydrogels with the proteins, which greatly delayed the release of protein antigens. Our supramolecular protein chaperone significantly stimulated specific antibody titers by assisting protein delivery to antigen-presenting cells, promoting dendritic cell (DC) maturation, prolonging antigen accumulation and retention in the lymph nodes, and eliciting the secretion of cytokines. Most importantly, our supramolecular protein chaperone strongly stimulated the cellular immune response and significantly retarded tumor growth. Conclusion: Our study demonstrated the great potential of the supramolecular protein chaperone in protein storage and delivery, vaccine production and tumor immunotherapy. Ivyspring International Publisher 2020-01-01 /pmc/articles/PMC6929975/ /pubmed/31903143 http://dx.doi.org/10.7150/thno.39132 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Wang, Zhongyan
Shang, Yuna
Tan, Zhaoqi
Li, Xiaoyan
Li, Guoliang
Ren, Chunhua
Wang, Fuqiang
Yang, Zhimou
Liu, Jianfeng
A supramolecular protein chaperone for vaccine delivery
title A supramolecular protein chaperone for vaccine delivery
title_full A supramolecular protein chaperone for vaccine delivery
title_fullStr A supramolecular protein chaperone for vaccine delivery
title_full_unstemmed A supramolecular protein chaperone for vaccine delivery
title_short A supramolecular protein chaperone for vaccine delivery
title_sort supramolecular protein chaperone for vaccine delivery
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6929975/
https://www.ncbi.nlm.nih.gov/pubmed/31903143
http://dx.doi.org/10.7150/thno.39132
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