KMID : 1094720170220040489
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Biotechnology and Bioprocess Engineering 2017 Volume.22 No. 4 p.489 ~ p.496
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In vitro and in vivo investigation for biological activities of neoagarooligosaccharides prepared by hydrolyzing agar with ¥â-agarase
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Hong Sun-Joo
Lee Je-Hyeon Kim Eun-Joo Yang Hea-Jung Chang Yong-Keun Park Jae-Seon Hong Soon-Kwang
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Abstract
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Our study investigated the biological functions of three neoagarooligosaccharides (NAOs), neoagarobiose (NA2), neoagarotetraose (NA4), and neoagarohexaose (NA6). NAOs were prepared by hydrolyzing agar with the recombinant ¥â-agarases, DagA and DagB, from Streptomyces coelicolor A3(2). An in vitro DPPH (diphenyl-2,4,6-trinitrophenyliminoazanium) radical scavenging assay revealed that none of the NAOs had any significant antioxidative activity. We also assessed the antibacterial activity of each NAO against several gram-negative and gram-positive bacteria. This revealed weak effects against four of the seven tested strains. NAO treatment resulted in significant inhibition of ¥á-glucosidase, with the strongest effect observed in a NA4 and NA6 mixture, and a decreasing effect was observed in the order NA2>NA4>NA6. Little inhibition was observed against ¥á-amylase, with an effect significantly lower than that of acarbose. No observable cytotoxicity was found in immortalized Melan-a mouse melanocytes by NAO treatment up to a concentration of 2,000 ¥ìg/mL. However, melanin synthesis was significantly reduced by NAO treatment, with the strongest effect observed in a NA4 and NA6 mixture and decreasing effects observed in the order NA6>NA4>NA2. The tyrosinase activity of Melan-a cells was also consistently decreased by NAO treatment. Among the tested factors, treatment of NA4 and NA6 mixture showed the highest inhibition effects against ¥á-glucosidase and tyrosinase, and melanin biosynthesis. Further in vivo study to investigate the role of NAO in these biological functions will be necessary for future biotechnological applications.
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KEYWORD
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neoagarooligosaccharides, ¥á-glucosidase inhibition, melanin biosynthesis, tyrosinase inhibition, antibacterial activity, antioxidant activity
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