Bioderived Polyelectrolyte Nanogels for Robust Antigen Loading and Vaccine Adjuvant Effects

An easy but robust strategy for the synthesis of bioderived polyelectrolyte nanogels for protein antigen loading and vaccine adjuvant systems that can improve both humoral (Th2) and cellular immunity (Th1) is presented. The synthesized polyelectrolyte nanogels promote the uptake of antigens into ant...

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Published in:Small (Weinheim an der Bergstrasse, Germany) Vol. 7; no. 23; pp. 3281 - 3286
Main Authors: Lim, Yong Taik, Shim, Sang-Mu, Noh, Young-Woock, Lee, Kyung-Soon, Choi, Doo-Yeol, Uyama, Hiroshi, Bae, Hee Ho, Kim, Ji Hyun, Hong, Kwan Soo, Sung, Moon-Hee, Poo, Haryoung
Format: Journal Article
Language:English
Published: Weinheim WILEY-VCH Verlag 02-12-2011
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Abstract An easy but robust strategy for the synthesis of bioderived polyelectrolyte nanogels for protein antigen loading and vaccine adjuvant systems that can improve both humoral (Th2) and cellular immunity (Th1) is presented. The synthesized polyelectrolyte nanogels promote the uptake of antigens into antigen‐presenting cells and strongly induce ovalbumin‐specific INF‐γ producing cells, cytotoxic T cell activity, and antibody production.
AbstractList An easy but robust strategy for the synthesis of bioderived polyelectrolyte nanogels for protein antigen loading and vaccine adjuvant systems that can improve both humoral (Th2) and cellular immunity (Th1) is presented. The synthesized polyelectrolyte nanogels promote the uptake of antigens into antigen-presenting cells and strongly induce ovalbumin-specific INF- gamma producing cells, cytotoxic T cell activity, and antibody production.
An easy but robust strategy for the synthesis of bioderived polyelectrolyte nanogels for protein antigen loading and vaccine adjuvant systems that can improve both humoral (Th2) and cellular immunity (Th1) is presented. The synthesized polyelectrolyte nanogels promote the uptake of antigens into antigen‐presenting cells and strongly induce ovalbumin‐specific INF‐γ producing cells, cytotoxic T cell activity, and antibody production.
Author Lim, Yong Taik
Lee, Kyung-Soon
Poo, Haryoung
Bae, Hee Ho
Uyama, Hiroshi
Sung, Moon-Hee
Hong, Kwan Soo
Shim, Sang-Mu
Noh, Young-Woock
Choi, Doo-Yeol
Kim, Ji Hyun
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  givenname: Young-Woock
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  givenname: Doo-Yeol
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  fullname: Choi, Doo-Yeol
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  givenname: Hiroshi
  surname: Uyama
  fullname: Uyama, Hiroshi
  organization: Department of Applied Chemistry, Graduate School of Engineering, Osaka University, Osaka 565-0871, Japan
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  givenname: Hee Ho
  surname: Bae
  fullname: Bae, Hee Ho
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  givenname: Ji Hyun
  surname: Kim
  fullname: Kim, Ji Hyun
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  givenname: Kwan Soo
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  givenname: Haryoung
  surname: Poo
  fullname: Poo, Haryoung
  email: haryoung@kribb.re.kr
  organization: Viral Infectious Disease Research Centre, Korea Research Institute of Bioscience and Biotechnology, 111 Gwahangno, Yuseong-gu, Daejeon 305-806, South Korea
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Snippet An easy but robust strategy for the synthesis of bioderived polyelectrolyte nanogels for protein antigen loading and vaccine adjuvant systems that can improve...
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SubjectTerms Adjuvants
Adjuvants, Immunologic - pharmacology
Animals
Antibodies
Antigen Presentation - drug effects
Antigens
Antigens - immunology
Biocompatible Materials - pharmacology
Bone Marrow Cells - cytology
Bone Marrow Cells - drug effects
dendritic cells
Dendritic Cells - cytology
Dendritic Cells - drug effects
drug delivery
Electrolytes - pharmacology
Immunity, Cellular - drug effects
Immunity, Humoral - drug effects
Mice
Microscopy, Electron, Scanning
Microscopy, Fluorescence
Nanostructure
Nanotechnology
Ovalbumin - immunology
Particle Size
polyelectrolyte nanogels
Polyelectrolytes
Polyethylene Glycols - pharmacology
Polyethyleneimine - pharmacology
Static Electricity
Strategy
T cell receptors
Uptakes
vaccine adjuvant
Vaccines
Vaccines - immunology
Title Bioderived Polyelectrolyte Nanogels for Robust Antigen Loading and Vaccine Adjuvant Effects
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https://onlinelibrary.wiley.com/doi/abs/10.1002%2Fsmll.201101836
https://www.ncbi.nlm.nih.gov/pubmed/22009658
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Volume 7
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