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請用此 Handle URI 來引用此文件: http://scholars.ntou.edu.tw/handle/123456789/20632
標題: Surfactin-Loaded kappa-Carrageenan Oligosaccharides Entangled Cellulose Nanofibers as a Versatile Vehicle Against Periodontal Pathogens
作者: Johnson, Athira
He, Jia-Ling
Kong, Fanbin
Huang, Yi-Cheng 
Thomas, Sabu
Lin, Hong-Ting Victor 
Kong, Zwe-Ling 
關鍵字: ANTIMICROBIAL ACTIVITY;BACILLUS-SUBTILIS;STRUCTURAL-CHARACTERIZATION;SOYBEAN RESIDUE;IN-VITRO;NANOCELLULOSE;EXTRACTION;NANOPARTICLES;BEHAVIOR;OKARA
公開日期: 30-八月-2020
出版社: DOVE MEDICAL PRESS LTD
卷: 15
起(迄)頁: 4021-4047
來源出版物: INT J NANOMED
摘要: 
Purpose: Periodontitis is a chronic inflammatory disease associated with microbial accumulation. The purpose of this study was to reuse the agricultural waste to produce cellulose nanofibers (CNF) and further modification of the CNF with kappa-carrageenan oligosaccharides (CO) for drug delivery. In addition, this study is focused on the antimicrobial activity of surfactin-loaded CO-CNF towards periodontal pathogens. Materials and Methods: A chemo-mechanical method was used to extract the CNF and the modification was done by using CO. The studies were further proceeded by adding different quantities of surfactin [50 mg (50 SNPs), 100 mg (100 SNPs), 200 mg (200 SNPs)] into the carrier (CO-CNF). The obtained materials were characterized, and the antimicrobial activity of surfactin-loaded CO-CNF was evaluated. Results: The obtained average size of CNF and CO-CNF after ultrasonication was 263 nm and 330 nm, respectively. Microscopic studies suggested that the CNF has a short diameter with long length and CO became cross-linked to form as beads within the CNF network. The addition of CO improved the degradation temperature, crystallinity, and swelling property of CNF. The material has a controlled drug release, and the entrapment efficiency and loading capacity of the drug were 53.15 +/- 2.36% and 36.72 +/- 1.24%, respectively. It has antioxidant activity and inhibited the growth of periodontal pathogens such as Streptococcus mutans and Porphyromonas gingivalis by preventing the biofilm formation, reducing the metabolic activity, and promoting the oxidative stress. Conclusion: The study showed the successful extraction of CNF and modification with CO improved the physical parameters of the CNF. In addition, surfactin-loaded CO-CNF has potential antimicrobial activity against periodontal pathogens. The obtained biomaterial is economically valuable and has great potential for biomedical applications.
URI: http://scholars.ntou.edu.tw/handle/123456789/20632
ISSN: 1178-2013
DOI: 10.2147/IJN.S238476
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