Efficacy of thiolated eudragit microspheres as an oral vaccine delivery system to induce mucosal immunity against enterotoxigenic Escherichia coli in mice

To investigate the efficay of thiolated eudragit microspheres (TEMS) as an oral vaccine delivery system, F4 and F18 in E.coli were loaded in TEMS and orally immunized to mice. Induced immune responses such as IgG an IgA levels were investigated with sera, saliva, feces, splenocyte, peyer’s patch, la...

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Published inEuropean journal of pharmaceutics and biopharmaceutics Vol. 81; no. 1; pp. 43 - 48
Main Authors Lee, Won-Jung, Cha, Seungbin, Shin, Minkyoung, Jung, Myunghwan, Islam, Mohammad Ariful, Cho, Chong-su, Yoo, Han Sang
Format Journal Article
LanguageEnglish
Published Amsterdam Elsevier B.V 01.05.2012
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Abstract To investigate the efficay of thiolated eudragit microspheres (TEMS) as an oral vaccine delivery system, F4 and F18 in E.coli were loaded in TEMS and orally immunized to mice. Induced immune responses such as IgG an IgA levels were investigated with sera, saliva, feces, splenocyte, peyer’s patch, lamina propria cells in mice. A vaccine delivery system based on thiolated eudragit microsphere (TEMS) was studied in vivo for its ability to elicit mucosal immunity against enterotoxigenic Escherichia coli (ETEC). Groups of mice were orally immunized with F4 or F18 fimbriae of ETEC and F4 or F18 loaded in TEMS. Mice that were orally administered with F4 or F18 loaded TEMS showed higher antigen-specific IgG antibody responses in serum and antigen-specific IgA in saliva and feces than mice that were immunized with antigens only. In addition, oral vaccination of F4 or F18 loaded TEMS resulted in higher numbers of IgG and IgA antigen-specific antibody secreting cells in the spleen, lamina propria, and Peyer’s patches of immunized mice than other groups. Moreover, TEMS administration loaded with F4 or F18 induced mixed Th1 and Th2 type responses based on similarly increased levels of IgG1 and IgG2a. These results suggest that F4 or F18 loaded TEMS may be a promising candidate for an oral vaccine delivery system to elicit systemic and mucosal immunity against ETEC.
AbstractList A vaccine delivery system based on thiolated eudragit microsphere (TEMS) was studied in vivo for its ability to elicit mucosal immunity against enterotoxigenic Escherichia coli (ETEC). Groups of mice were orally immunized with F4 or F18 fimbriae of ETEC and F4 or F18 loaded in TEMS. Mice that were orally administered with F4 or F18 loaded TEMS showed higher antigen-specific IgG antibody responses in serum and antigen-specific IgA in saliva and feces than mice that were immunized with antigens only. In addition, oral vaccination of F4 or F18 loaded TEMS resulted in higher numbers of IgG and IgA antigen-specific antibody secreting cells in the spleen, lamina propria, and Peyer's patches of immunized mice than other groups. Moreover, TEMS administration loaded with F4 or F18 induced mixed Th1 and Th2 type responses based on similarly increased levels of IgG1 and IgG2a. These results suggest that F4 or F18 loaded TEMS may be a promising candidate for an oral vaccine delivery system to elicit systemic and mucosal immunity against ETEC.
To investigate the efficay of thiolated eudragit microspheres (TEMS) as an oral vaccine delivery system, F4 and F18 in E.coli were loaded in TEMS and orally immunized to mice. Induced immune responses such as IgG an IgA levels were investigated with sera, saliva, feces, splenocyte, peyer’s patch, lamina propria cells in mice. A vaccine delivery system based on thiolated eudragit microsphere (TEMS) was studied in vivo for its ability to elicit mucosal immunity against enterotoxigenic Escherichia coli (ETEC). Groups of mice were orally immunized with F4 or F18 fimbriae of ETEC and F4 or F18 loaded in TEMS. Mice that were orally administered with F4 or F18 loaded TEMS showed higher antigen-specific IgG antibody responses in serum and antigen-specific IgA in saliva and feces than mice that were immunized with antigens only. In addition, oral vaccination of F4 or F18 loaded TEMS resulted in higher numbers of IgG and IgA antigen-specific antibody secreting cells in the spleen, lamina propria, and Peyer’s patches of immunized mice than other groups. Moreover, TEMS administration loaded with F4 or F18 induced mixed Th1 and Th2 type responses based on similarly increased levels of IgG1 and IgG2a. These results suggest that F4 or F18 loaded TEMS may be a promising candidate for an oral vaccine delivery system to elicit systemic and mucosal immunity against ETEC.
A vaccine delivery system based on thiolated eudragit microsphere (TEMS) was studied in vivo for its ability to elicit mucosal immunity against enterotoxigenic Escherichia coli (ETEC). Groups of mice were orally immunized with F4 or F18 fimbriae of ETEC and F4 or F18 loaded in TEMS. Mice that were orally administered with F4 or F18 loaded TEMS showed higher antigen-specific IgG antibody responses in serum and antigen-specific IgA in saliva and feces than mice that were immunized with antigens only. In addition, oral vaccination of F4 or F18 loaded TEMS resulted in higher numbers of IgG and IgA antigen-specific antibody secreting cells in the spleen, lamina propria, and Peyeras patches of immunized mice than other groups. Moreover, TEMS administration loaded with F4 or F18 induced mixed Th1 and Th2 type responses based on similarly increased levels of IgG1 and IgG2a. These results suggest that F4 or F18 loaded TEMS may be a promising candidate for an oral vaccine delivery system to elicit systemic and mucosal immunity against ETEC.
Author Cho, Chong-su
Yoo, Han Sang
Islam, Mohammad Ariful
Lee, Won-Jung
Cha, Seungbin
Jung, Myunghwan
Shin, Minkyoung
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Issue 1
Keywords Delivery system
Mice
Microsphere
Immune response
In vivo test
Pharmaceutical technology
Escherichia coli
Thiolate
Rodentia
Oral administration
Vaccine
Immunity
In vivo
Vertebrata
Mammalia
Mouse
Efficiency
Animal
Bacteria
Microparticle
Enterobacteriaceae
Language English
License CC BY 4.0
Copyright © 2012 Elsevier B.V. All rights reserved.
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SSID ssj0004758
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Snippet To investigate the efficay of thiolated eudragit microspheres (TEMS) as an oral vaccine delivery system, F4 and F18 in E.coli were loaded in TEMS and orally...
A vaccine delivery system based on thiolated eudragit microsphere (TEMS) was studied in vivo for its ability to elicit mucosal immunity against enterotoxigenic...
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StartPage 43
SubjectTerms Administration, Oral
Animals
Antigens, Bacterial - administration & dosage
Antigens, Bacterial - immunology
Biological and medical sciences
Delivery system
Enterotoxigenic Escherichia coli - immunology
Escherichia coli
Escherichia coli Infections - immunology
Escherichia coli Proteins - administration & dosage
Escherichia coli Proteins - immunology
Female
Fimbriae Proteins - administration & dosage
Fimbriae Proteins - immunology
General pharmacology
Immune response
Immunity, Mucosal
Immunoglobulin A - immunology
Immunoglobulin G - immunology
In vivo test
Medical sciences
Mice
Mice, Inbred ICR
Microsphere
Microspheres
Pharmaceutical technology. Pharmaceutical industry
Pharmacology. Drug treatments
Polymethacrylic Acids - chemistry
Sulfhydryl Compounds - chemistry
Vaccines - administration & dosage
Vaccines - immunology
Title Efficacy of thiolated eudragit microspheres as an oral vaccine delivery system to induce mucosal immunity against enterotoxigenic Escherichia coli in mice
URI https://dx.doi.org/10.1016/j.ejpb.2012.01.010
https://www.ncbi.nlm.nih.gov/pubmed/22306699
https://search.proquest.com/docview/1013760407
https://search.proquest.com/docview/1038611158
Volume 81
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