The Influence of Shuttle-Shape Emodin Nanoparticles on the Streptococcus suis Biofilm

Biofilm is one of the most important physiological protective barriers of the Streptococcus suis (S. suis), and it is also one of the primary causes of hindrance to drug infiltration, reduction of bactericidal effects, and the development of antibiotic resistance. In order to intervene or eliminate...

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Main Authors: Wenya Ding, Jin Sun, He Lian, Changgeng Xu, Xin Liu, Sidi Zheng, Dong Zhang, Xiaopeng Han, Yanyan Liu, Xueying Chen, Bello O. God′spower, Yanhua Li
Format: Article
Language:English
Published: Frontiers Media S.A. 2018-03-01
Series:Frontiers in Pharmacology
Subjects:
Online Access:http://journal.frontiersin.org/article/10.3389/fphar.2018.00227/full
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spelling doaj-32bd824d27fe4adba6faa1474a4a902a2020-11-25T00:04:56ZengFrontiers Media S.A.Frontiers in Pharmacology1663-98122018-03-01910.3389/fphar.2018.00227346912The Influence of Shuttle-Shape Emodin Nanoparticles on the Streptococcus suis BiofilmWenya Ding0Wenya Ding1Jin Sun2He Lian3Changgeng Xu4Changgeng Xu5Xin Liu6Xin Liu7Sidi Zheng8Sidi Zheng9Dong Zhang10Xiaopeng Han11Yanyan Liu12Yanyan Liu13Xueying Chen14Xueying Chen15Bello O. God′spower16Bello O. God′spower17Yanhua Li18Yanhua Li19Department of Veterinary Medicine, Northeast Agricultural University, Harbin, ChinaHeilongjiang Key Laboratory for Animal Disease Control and Pharmaceutical Development, Harbin, ChinaSchool of Pharmacy, Shenyang Pharmaceutical University, Shenyang, ChinaSchool of Pharmacy, Shenyang Pharmaceutical University, Shenyang, ChinaDepartment of Veterinary Medicine, Northeast Agricultural University, Harbin, ChinaHeilongjiang Key Laboratory for Animal Disease Control and Pharmaceutical Development, Harbin, ChinaDepartment of Veterinary Medicine, Northeast Agricultural University, Harbin, ChinaHeilongjiang Key Laboratory for Animal Disease Control and Pharmaceutical Development, Harbin, ChinaDepartment of Veterinary Medicine, Northeast Agricultural University, Harbin, ChinaHeilongjiang Key Laboratory for Animal Disease Control and Pharmaceutical Development, Harbin, ChinaSchool of Pharmacy, Shenyang Pharmaceutical University, Shenyang, ChinaSchool of Pharmacy, Shenyang Pharmaceutical University, Shenyang, ChinaDepartment of Veterinary Medicine, Northeast Agricultural University, Harbin, ChinaHeilongjiang Key Laboratory for Animal Disease Control and Pharmaceutical Development, Harbin, ChinaDepartment of Veterinary Medicine, Northeast Agricultural University, Harbin, ChinaHeilongjiang Key Laboratory for Animal Disease Control and Pharmaceutical Development, Harbin, ChinaDepartment of Veterinary Medicine, Northeast Agricultural University, Harbin, ChinaHeilongjiang Key Laboratory for Animal Disease Control and Pharmaceutical Development, Harbin, ChinaDepartment of Veterinary Medicine, Northeast Agricultural University, Harbin, ChinaHeilongjiang Key Laboratory for Animal Disease Control and Pharmaceutical Development, Harbin, ChinaBiofilm is one of the most important physiological protective barriers of the Streptococcus suis (S. suis), and it is also one of the primary causes of hindrance to drug infiltration, reduction of bactericidal effects, and the development of antibiotic resistance. In order to intervene or eliminate S. suis biofilm, shuttle-shape emodin-loaded nanoparticles were developed in our study. The emodin nanoparticles were prepared by emodin and gelatin–cyclodextrin which was synthesized as drug carrier, and the nanoparticles were 174 nm in size, -4.64 mv in zeta potential, and exhibited a sustained emodin release. Moreover, the delivery kinetics of nanoparticles were also explored in our study. The confocal laser scanning microscopy and colony forming unit enumeration experiment indicated that nanoparticles could increase drug infiltration and uptake by biofilm. The flow cytometry system analysis showed that nanoparticles could be up taken by 99% of the bacteria cells. TCP assay and scanning electron microscopy showed that the nanoparticles had better effect on biofilm inhibition and elimination when compared with emodin solution. These results revealed that the emodin nanoparticles had a better therapeutic effect on the S. suis biofilm in vitro.http://journal.frontiersin.org/article/10.3389/fphar.2018.00227/fullemodin nanoparticlesStreptococcus suis biofilmbiofilm inhibitionbiofilm eliminationdrug uptake
collection DOAJ
language English
format Article
sources DOAJ
author Wenya Ding
Wenya Ding
Jin Sun
He Lian
Changgeng Xu
Changgeng Xu
Xin Liu
Xin Liu
Sidi Zheng
Sidi Zheng
Dong Zhang
Xiaopeng Han
Yanyan Liu
Yanyan Liu
Xueying Chen
Xueying Chen
Bello O. God′spower
Bello O. God′spower
Yanhua Li
Yanhua Li
spellingShingle Wenya Ding
Wenya Ding
Jin Sun
He Lian
Changgeng Xu
Changgeng Xu
Xin Liu
Xin Liu
Sidi Zheng
Sidi Zheng
Dong Zhang
Xiaopeng Han
Yanyan Liu
Yanyan Liu
Xueying Chen
Xueying Chen
Bello O. God′spower
Bello O. God′spower
Yanhua Li
Yanhua Li
The Influence of Shuttle-Shape Emodin Nanoparticles on the Streptococcus suis Biofilm
Frontiers in Pharmacology
emodin nanoparticles
Streptococcus suis biofilm
biofilm inhibition
biofilm elimination
drug uptake
author_facet Wenya Ding
Wenya Ding
Jin Sun
He Lian
Changgeng Xu
Changgeng Xu
Xin Liu
Xin Liu
Sidi Zheng
Sidi Zheng
Dong Zhang
Xiaopeng Han
Yanyan Liu
Yanyan Liu
Xueying Chen
Xueying Chen
Bello O. God′spower
Bello O. God′spower
Yanhua Li
Yanhua Li
author_sort Wenya Ding
title The Influence of Shuttle-Shape Emodin Nanoparticles on the Streptococcus suis Biofilm
title_short The Influence of Shuttle-Shape Emodin Nanoparticles on the Streptococcus suis Biofilm
title_full The Influence of Shuttle-Shape Emodin Nanoparticles on the Streptococcus suis Biofilm
title_fullStr The Influence of Shuttle-Shape Emodin Nanoparticles on the Streptococcus suis Biofilm
title_full_unstemmed The Influence of Shuttle-Shape Emodin Nanoparticles on the Streptococcus suis Biofilm
title_sort influence of shuttle-shape emodin nanoparticles on the streptococcus suis biofilm
publisher Frontiers Media S.A.
series Frontiers in Pharmacology
issn 1663-9812
publishDate 2018-03-01
description Biofilm is one of the most important physiological protective barriers of the Streptococcus suis (S. suis), and it is also one of the primary causes of hindrance to drug infiltration, reduction of bactericidal effects, and the development of antibiotic resistance. In order to intervene or eliminate S. suis biofilm, shuttle-shape emodin-loaded nanoparticles were developed in our study. The emodin nanoparticles were prepared by emodin and gelatin–cyclodextrin which was synthesized as drug carrier, and the nanoparticles were 174 nm in size, -4.64 mv in zeta potential, and exhibited a sustained emodin release. Moreover, the delivery kinetics of nanoparticles were also explored in our study. The confocal laser scanning microscopy and colony forming unit enumeration experiment indicated that nanoparticles could increase drug infiltration and uptake by biofilm. The flow cytometry system analysis showed that nanoparticles could be up taken by 99% of the bacteria cells. TCP assay and scanning electron microscopy showed that the nanoparticles had better effect on biofilm inhibition and elimination when compared with emodin solution. These results revealed that the emodin nanoparticles had a better therapeutic effect on the S. suis biofilm in vitro.
topic emodin nanoparticles
Streptococcus suis biofilm
biofilm inhibition
biofilm elimination
drug uptake
url http://journal.frontiersin.org/article/10.3389/fphar.2018.00227/full
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