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NTIS 바로가기Annals of dermatology, v.28 no.1, 2016년, pp.15 - 21
Shin, Hyoseung (Department of Dermatology, Dongguk University Ilsan Hospital, Goyang, Korea.) , Cho, A-Ri (Department of Dermatology, Institute of Human-Environmental Interface Biology, Medical Research Center, Seoul National University College of Medicine, Seoul, Korea.) , Kim, Dong Young (Department of Dermatology, Institute of Human-Environmental Interface Biology, Medical Research Center, Seoul National University College of Medicine, Seoul, Korea.) , Munkhbayer, Semchin (Department of Dermatology, Institute of Human-Environmental Interface Biology, Medical Research Center, Seoul National University College of Medicine, Seoul, Korea.) , Choi, Soon-Jin (Department of Dermatology, Institute of Human-Environmental Interface Biology, Medical Research Center, Seoul National University College of Medicine, Seoul, Korea.) , Jang, Sunhyae (Department of Dermatology, Institute of Human-Environmental Interface Biology, Medical Research Center, Seoul National University College of Medicine, Seoul, Korea.) , Kim, Seong Ho (Botamedi Inc., Jeju, Korea.) , Shin, Hyeon-Cheol (Botamedi Inc., Jeju, Korea.) , Kwon, Ohsang (Department of Dermatology,)
BackgroundEcklonia cava is a brown alga that contains various compounds, including carotenoids, fucoidans, and phlorotannins. E. cava polyphenols (ECPs) are known to increase fibroblast survival. The human dermal papilla cell (hDPC) has the properties of mesenchymal-origin fibroblasts.ObjectiveThis ...
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