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Please use this identifier to cite or link to this item: http://ntour.ntou.edu.tw:8080/ir/handle/987654321/37268

Title: Antivirus and prebiotic properties of seaweed-oligosaccharide lysates derived from agarase AS-II
Authors: Shao-Chi Wu;Sheen-Kye Kang;Bartosz Kazłowski;Chang-Jer Wu;Chorng-Liang Pan
Contributors: 國立臺灣海洋大學:食品科學系
Keywords: β-agarase;Antivirus;Prebiotic
Date: 2012-01
Issue Date: 2016-01-18T02:20:33Z
Publisher: Journal of the Fisheries Society of Taiwan
Abstract: Abstract:The seaweed-oligosaccharide-lysates (SwOSLys) Gra-C108, Mon-C108, Gra-AS-II, or Mon-AS-II are seaweed polysaccharide extracts (SwPSExts) Gra (Gracilariasp.) or Mon (Monostroma nitidum), as digested by either crude MAEF108-agarases or Agarase AS-II produced from marine bacteria Aeromonas salmonicida MAEF108. Different concentrations of Gra, Mon, Gra-C108, Mon-C108, Gra-AS-II, or Mon-AS-II were cultured with different cell densities of BHK-21 kidney cells, in which the SwPSExts or SwOSLys samples showed no cytotoxicity, and the cell viability was higher than 78%. The six seaweed samples displayed an ability to decrease the effects caused by Japanese encephalitis virus (JEV, Beijing-1 strain) infection. The six seaweed samples were tested as a carbon source for bifidobacteria growth to evaluate the prebiotic potentials. Viable bacteria counts of Bifidobacterium (B.) pseudolongum subsp. pseudolongum BCRC 14673 could increase more than 3 log CFU/ml in 24 h incubation, when Gra-C108 is utilized. Mon and its agarase lysates can be used by bifidobacteria as a carbon source. B. adolescentis BCRC 14608 and B. pseudolongumsubsp. pseudolongumBCRC 14673 could utilize the six seaweed samples to lower pH. B. longumBCRC 11847 displayed an increased pH-lowering ability when utilizing the Gracilaria sp. (red algae) than Mon. nitidum (green algae) as based samples.
Relation: 39,pp.11-21
URI: http://ntour.ntou.edu.tw:8080/ir/handle/987654321/37268
Appears in Collections:[食品科學系] 期刊論文

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